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Biomedical subjects

M R Bristow

Publications and source records attributed to M R Bristow.

At least 19 recordsLinked to original sources

A controlled trial of ganciclovir to prevent cytomegalovirus disease after heart transplantation.

BACKGROUND: Because of the immunosuppression required, heart-transplant recipients frequently have complications caused by cytomegalovirus (CMV), including pneumonia, esophagitis, gastritis, and a syndrome of fever, hepatitis, and leukopenia. We undertook a controlled trial to evaluate the prophylactic administration of ganciclovir to prevent CMV-induced disease after heart transplantation. METHODS: This randomized, double-blind, placebo-controlled trial was conducted at four centers. Before randomization, the patients were stratified into two groups: those who were seropositive for CMV before transplantation and those who were seronegative but who received hearts from seropositive donors. Ganciclovir was given intravenously at a dose of 5 mg per kilogram of body weight every 12 hours from postoperative day 1 through day 14, then at a dose of 6 mg per kilogram each day for 5 days per week until day 28. RESULTS: Among the seropositive patients, CMV illness occurred during the first 120 days after heart transplantation in 26 of 56 patients given placebo (46 percent), as compared with 5 of 56 patients treated with ganciclovir (9 percent) (P less than 0.001). Among 37 seronegative patients, CMV illness was frequent in both groups (placebo, 29 percent; ganciclovir, 35 percent; P not significant). From day 15 through day 60, the patients who took ganciclovir had significantly fewer urine cultures positive for CMV, but by day 90 there was no difference. More of the ganciclovir-treated patients had serum creatinine concentrations greater than or equal to 221 mumol per liter (2.5 mg per deciliter) (18 percent vs. 4 percent in the placebo group), but those elevations were transient. CONCLUSIONS: The prophylactic administration of ganciclovir after heart transplantation is safe, and in CMV-seropositive patients it reduces the incidence of CMV-induced illness.

Adolescent

Changes in the receptor-G protein-adenylyl cyclase system in heart failure from various types of heart muscle disease.

The abnormalities of the receptor-G protein-adenylyl cyclase (RCG) system in failing human myocardium as the result of 1) idiopathic dilated cardiomyopathy (IDC), 2) ischemic dilated cardiomyopathy (ISCDC), and 3) primary pulmonary hypertension (PPH) were investigated. Depending on the etiology of heart failure, abnormalities of the RCG system result from a reduced number of beta 1 receptors, uncoupling of beta 1 or beta 2 receptors, alteration of G protein function, or decreased catalytic subunit activity of adenylyl cyclase. Compared to IDC, beta 1 receptor down-regulation is less pronounced in ISCDC, and slightly more pronounced in PPH. Preliminary data suggest that beta 1 receptor down-regulation results from alteration in steady-state receptor mRNA levels. Increased functional activity of Gi protein, which seems to result from posttranslational modification, is observed in IDC and ISCDC. Altered Gi protein function may be the basis for beta-receptor uncoupling in IDC and ISCDC, whereas in PPH, this phenomenon may result from altered adenylyl cyclase function. Catalytic subunit activity of adenylyl cyclase is decreased in order of increasing pulmonary hypertension in right-ventricular preparations from PPH greater than IDC greater than ISCDC. However, catalytic subunit activity is similar in LV preparations from all three groups. The decrease in adenylyl cyclase catalytic subunit activity may be the result of the marked cellular injury produced by pressure overload. In summary, numerous desensitization phenomena occur in the failing human heart that are etiology- or model-dependent. To a certain extent, these changes are teleologically beneficial, as they are able to partially protect the failing heart from potentially toxic adrenergic stimuli.

Adenylyl Cyclases

Effects of carvedilol on adrenergic receptor pharmacology in human ventricular myocardium and lymphocytes.

Carvedilol, a new beta-blocker with vasodilating properties due to alpha 1-blockade, was investigated in preparations of human ventricular myocardium. Carvedilol demonstrated a high affinity and is a slightly beta 1-selective competitive beta-blocking agent, with a KD for beta 1-receptors of approximately 4-5 nM and a mild selectivity for beta 1 vs. beta 2 receptors of 6- to 39-fold, depending on the method employed to assess subtype potency. In addition, carvedilol was also a potent alpha 1-blocking agent, with a beta 1:alpha 1 blocking relative potency of 1.7-fold. In human lymphocytes containing beta 2-receptors and in human myocardial membranes containing both beta 1- and beta 2-receptors carvedilol exhibited the unique property of guanine nucleotide modulatable binding. Despite this, no intrinsic sympathomimetic activity of carvedilol was detected in preparations of isolated human heart or in myocardial membranes. Vasodilation related to alpha 1-blockade and the lack of intrinsic activity should translate into improved tolerability and good efficacy in the treatment of heart failure.

Adrenergic beta-Antagonists

Receptor pharmacology of carvedilol in the human heart.

The beta-blocker and vasodilator carvedilol was examined in preparations of human ventricular myocardium. Carvedilol is a high-affinity, slightly beta 1-selective competitive beta-blocking agent, with a KD for beta 1-receptors of approximately 4-5 nM and a selectivity of sixfold to 39-fold for beta 1-receptors rather than beta 2-receptors, depending on the method used to assess subtype potency. Carvedilol also is a potent alpha 1-blocking agent, with a beta 1: alpha 1-blocking relative potency of 1.7-fold. In human lymphocytes containing beta 2-receptors and human myocardial membranes containing both beta 1- and beta 2-receptors, carvedilol exhibited the unique property of guanine nucleotide-modulatable binding. This is a property shared with bucindolol, another beta-blocker and vasodilator that is structurally similar to carvedilol. Despite the presence of guanine nucleotide-modulatable binding, no intrinsic activity of carvedilol was detected in preparations of isolated human heart or in myocardial membranes.

Adrenergic beta-Antagonists

Outcome of cardiac transplant recipients with a positive donor-specific crossmatch--preliminary results with plasmapheresis.

To assess the influence of a positive T or B cell IgG crossmatch on the development of rejection and mortality following cardiac transplantation, we reviewed all cardiac transplants performed in Utah between March 1985 and October 1990. Of the 328 cardiac allograft recipients, 11 (3.4%) had an IgG positive crossmatch. Actuarial survival at 24 months in the positive crossmatch group was 57.3% +/- 0.02 while that of the controls was 86.1% +/- 2.1 (P < 0.05). Allograft rejection occurred earlier in recipients with a positive crossmatch (10.0 +/- 5.8 days versus 34.0 +/- 2.3 days, P < 0.001). The first allograft rejection episode in patients with a positive crossmatch was characterized by immunoglobulin and complement deposition in small blood vessels and interstitial edema and endothelial cell activation in the absence of a lymphocytic infiltrate. Furthermore, the allograft rejection in the positive crossmatch group was accompanied by hemodynamic compromise in a large proportion of the patients (73%). In addition to augmentation of immunosuppression, plasma exchange therapy was performed within the first week following transplantation in 8 of the 11 positive crossmatch patients. Survival in the patients treated with plasma exchange (75%) appears to be better than in those not receiving plasma exchange (33%) within one week of transplantation. While immunosuppressive therapy aimed at the humoral arm of the immune system and plasma exchange therapy may improve survival in recipients with a positive donor-specific crossmatch, survival is worse in patients with a positive crossmatch than in patients with a negative crossmatch. Thus, it would appear prudent to prospectively crossmatch cardiac transplant candidates with a greater risk of developing a positive crossmatch, such as those potential recipients with an elevated level of panel-reactive antibodies.

B-Lymphocytes

Myocardial catecholamine and neuropeptide Y depletion in failing ventricles of patients with idiopathic dilated cardiomyopathy. Correlation with beta-adrenergic receptor downregulation.

BACKGROUND: Myocardial adrenergic neurotransmitters and beta-adrenergic receptor levels were measured in left and right ventricular myocardial specimens obtained from 30 patients with biventricular failure resulting from idiopathic dilated cardiomyopathy. METHODS AND RESULTS: Nonfailing myocardium obtained from 12 organ donors provided control data. Norepinephrine, dopamine, and neuropeptide Y concentrations were significantly decreased in failing compared with nonfailing control hearts. The mean ratio of dopamine to norepinephrine and of dopamine to neuropeptide Y in failing hearts was also significantly decreased compared with nonfailing control hearts. Compared with nonfailing control hearts, Bmax and beta 1-receptor density were significantly decreased in failing hearts and there were weak but significantly positive correlations of Bmax and beta 1-adrenergic receptors with norepinephrine, dopamine, and neuropeptide Y. CONCLUSIONS: Norepinephrine and its cotransmitter neuropeptide Y are depleted in failing human ventricular myocardium. Decreased norepinephrine stores correlate weakly with beta 1-adrenergic receptor downregulation consistent with the hypothesis that norepinephrine depletion occurs in response to increased adrenergic drive. Decreased dopamine relative to norepinephrine implies that an abnormality of dopamine conversion to norepinephrine is not present in failing human heart.

Adult

Beta-adrenergic neuroeffector abnormalities in the failing human heart are produced by local rather than systemic mechanisms.

In order to investigate the general cause of beta-adrenergic receptor neuroeffector abnormalities in the failing human heart, we measured ventricular myocardial adrenergic receptors, adrenergic neurotransmitters, and beta-adrenergic receptor-effector responses in nonfailing and failing hearts taken from nonfailing organ donors, subjects with endstage biventricular failure due to idiopathic dilated cardiomyopathy (IDC), and subjects with primary pulmonary hypertension (PPH) who exhibited isolated right ventricular failure. Relative to nonfailing PPH left ventricles, failing PPH right ventricles exhibited (a) markedly decreased beta 1-adrenergic receptor density, (b) marked depletion of tissue norepinephrine and neuropeptide Y, (c) decreased adenylate cyclase stimulation in response to the beta agonists isoproterenol and zinterol, and (d) decreased adenylate cyclase stimulation in response to Gpp(NH)p and forskolin. These abnormalities were directionally similar to, but generally more pronounced than, corresponding findings in failing IDC right ventricles, whereas values for these parameters in nonfailing left ventricles of PPH subjects were similar to values in the nonfailing left ventricles of organ donors. Additionally, relative to paired nonfailing PPH left ventricles and nonfailing right ventricles from organ donors, failing right ventricles from PPH subjects exhibited decreased adenylate cyclase stimulation by MnCl2. These data indicate that: (a) Adrenergic neuroeffector abnormalities present in the failing human heart are due to local mechanisms; systemic processes do not produce beta-adrenergic neuroeffector abnormalities. (b) Pressure-overloaded failing right ventricles of PPH subjects exhibit decreased activity of the catalytic subunit of adenylate cyclase, an abnormality not previously described in the failing human heart.

Adenylyl Cyclases

Effect of therapeutic dopamine administration on myocardial catecholamine and neuropeptide Y concentrations in the failing ventricles of patients with idiopathic dilated cardiomyopathy.

The purpose of this study was to investigate the relationship between dopamine (DA) exposure and myocardial catecholamine and neuropeptide Y (NPY) concentrations in patients with severe congestive heart failure due to idiopathic dilated cardiomyopathy (IDC). Both nonfailing (NF) and failing (F) hearts were obtained in collaboration with the Utah Cardiac Transplantation Program and the Intermountain Organ Recovery System. The patients were stratified into five groups according to their preoperative exposure to dobutamine (DBT) and/or DA. Compared to 12 untreated, NF control hearts, norepinephrine (NE) concentrations were significantly decreased in 30 untreated F hearts obtained from patients with IDC. Norepinephrine concentrations were also significantly decreased in DA-treated NF hearts and in DA-treated F hearts compared to untreated NF and untreated or DBT-treated failing hearts, respectively. NPY concentrations were significantly decreased in untreated F hearts and were further decreased in dopamine-treated NF and DA-treated F hearts compared to untreated NF and untreated or DBT-treated F hearts. Thus, NE and NPY depletion related to DA administration was evident in both NF and F myocardium and was specific for DA in that it was not evident in patients who received the direct-acting beta-agonist inotrope DBT. These data suggest that the major inotropic mechanism of action of DA is through cardiac adrenergic neurotransmitter release. The data also provide further support for the concept that indirect acting inotropes such as DA may have limited inotropic potential in F hearts where neuronal NE has been depleted.

Adult

Pharmacological characterization of chick and frog beta adrenergic receptors in primary cultures of myocardial cells.

In membrane preparations derived from primary cultures of chick myocardial cells, beta adrenergic receptors modeled for a single low-affinity site for both betaxolol (beta-1-selective) and ICI 118551 (beta-2-selective) displacement of [125I]iodocyanopindolol (ICYP), indicating that the chick beta receptor is pharmacologically distinct from both mammalian beta-1 and beta-2 adrenergic receptors with respect to these antagonists. However, the highly beta-1-selective compound CGP 20712A was able to distinguish two binding sites on ICYP competition curves, a high-affinity "beta-1 site" (75%) and a low-affinity "beta-2 site" (25%). Also, in chick heart cell membranes the relative ability of agonists to displace ICYP produced a profile typical of beta-1 adrenergic receptors with a rank order of potency or efficacy of: isoproterenol greater than epinephrine = norephinephrine. When agonist-mediated adenylyl cyclase stimulation was assessed the order of potency was slightly different, isoproterenol greater than epinephrine greater than or equal to norepinephrine. Additionally, antagonism of isoproterenol stimulation of adenylyl cyclase by CGP 20712A yielded a Kb value (1.16 +/- 0.35 x 10(-7) M) intermediate between the high and low-affinity binding sites of CGP 20712A, suggesting that the low-affinity site is coupled to adenylyl cyclase. In membrane preparations of frog myocardial cells, ICYP/antagonist competition curves modeled for a mixed population of receptors, with subtype percentages varying from 50:50 beta-1:beta-2 to 100% beta-2 depending on the specific antagonist used and the individual cell preparation. For ICYP/agonist competition binding experiments the relative ability to displace ICYP was isoproterenol greater than epinephrine = norepinephrine, a profile typical of beta-1 adrenergic receptors.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenylyl Cyclases

Therapy of idiopathic dilated cardiomyopathy with chronic beta-adrenergic blockade.

Conventional therapy of patients with idiopathic dilated cardiomyopathy is currently directed at the control of heart failure. However, the morbidity and mortality of idiopathic dilated cardiomyopathy remains very high despite such interventions. One promising new approach to therapy of idiopathic dilated cardiomyopathy is beta-blockade. The potential mechanisms for benefit from beta-blockade include protection from catecholamine cardiotoxicity, upregulation of myocardial beta-adrenergic receptors, reduction in sudden death, reduction in heart rate, improved ventricular diastolic function, and reduction in afterload. Several reports have suggested that long-term beta-blockade may improve hemodynamic function, clinical symptoms, and survival in patients with idiopathic dilated cardiomyopathy. However, data from controlled trials are limited and some reports have been negative. This paper will summarize the rationale for the use of beta-blocker therapy in idiopathic dilated cardiomyopathy and review the clinical experience with this therapy.

Adrenergic beta-Antagonists

Immunodetectable levels of the inhibitory guanine nucleotide-binding regulatory proteins in failing human heart: discordance with measurements of adenylate cyclase activity and levels of pertussis toxin substrate.

Human hearts with idiopathic dilated cardiomyopathy have diminished adenylate cyclase activity and increased amounts of the alpha-subunit of the inhibitory guanine nucleotide-binding regulatory protein (alpha Gi) as measured by pertussis toxin catalyzed ADP-ribosylation. We utilized specific antisera against synthetic peptides corresponding to amino sequences deduced from cDNA's encoding the three alpha Gi subspecies to compare the immunologic and bioactivity levels of Gi in failing and non-failing human hearts. The various antisera detected three peptides with Mr 42,000, 38,000, and 37,000. Only the Mr 42,000 peptide co-migrated with the pertussis toxin substrate. Although functional activity of alpha Gi was increased in the particulate fractions of the failing heart as measured by inhibition of guanine nucleotide-stimulated adenylate cyclase activity and the quantity of pertussis toxin substrate was also increased, there were not associated changes in the levels of immunodetectable Gi. Therefore, the increased functional activity of Gi in the failing human heart as assessed by adenylate cyclase measurements cannot be explained by a relative increase in the among of Gi protein.

Adenylate Cyclase Toxin

Expression of alpha-subunits of G proteins in failing human heart: a reappraisal utilizing quantitative polymerase chain reaction.

A decrease in the density of the beta 1-adrenergic receptor and an increase in the functional activity of the G inhibitory protein Gi accompany human heart failure; however, the molecular and biochemical mechanisms responsible for these changes are unclear. We previously reported that the steady-state levels of the mRNAs encoding both alpha Gi-3 and alpha Gs were significantly increased in failing human heart. However, these results are not consistent with recent studies demonstrating that immunodetectable levels of alpha G proteins are not different in failing human hearts when compared with non-failing controls. In addition, analysis of the 5' flanking regions of alpha Gi and alpha Gs suggests that these two genes are unlikely to be co-regulated as their regulatory domains are quite different. Therefore, we hypothesized that the disparity between the measurements of alpha G protein gene expression and assessment of the actual levels of alpha G proteins might be due to technical limitations of the Northern blot technique utilized in previous studies for assessment of the mRNA levels; (i) cytoskeletal beta-actin mRNA was used as a standard for normalization; and (ii) only relative levels of alpha G mRNAs were measured. The recent application of the polymerase chain reaction to quantification of mRNA levels in small quantities of human heart provided the tool with which to test this hypothesis. When expressed in molecules of mRNA per microgram of total RNA, there were no differences in the levels of alpha Gi and alpha Gs mRNAs in failing human heart when compared with non-failing controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Base Sequence

Mr 40,000 and Mr 39,000 pertussis toxin substrates are increased in surgically denervated dog ventricular myocardium.

To test the general hypothesis that cardiac innervation may participate in myocardial G protein regulation, we examined the effects of complete intrapericardial surgical denervation or sham operation in dogs. In particulate fractions of dog left ventricular (LV) myocardium harvested 28-33 days after denervation or sham operation, Mr 40,000 and Mr 39,000 pertussis toxin-sensitive substrates (G proteins) were increased by 31% (1.31 +/- 0.084 vs 1.00 +/- 0.058 OD, arbitrary units, p less than 0.01) and 40% (1.40 +/- 0.117 vs. 1.000 +/- 0.084 OD, arbitrary units, p less than 0.02), respectively, as compared with sham-operated controls. The Mr 40,000 pertussis toxin-sensitive band comigrated with a pertussis toxin-sensitive substrate in human erythrocyte membranes known to contain an alpha Gi species. In these same preparations basal, GTP and GppNHp stimulated adenylate cyclase activities were decreased in denervated heart by 20, 26, and 19%, respectively, consistent with increased activity of an inhibitory G protein. In contrast, Gs function was not altered, because cyc(-) membranes reconstituted with membrane extracts and fluoride and beta-receptor-stimulated adenylate cyclase activity were not different between groups. Furthermore, adenylate cyclase catalytic subunit function as assessed with forskolin and manganese stimulation was not different between preparations of control and denervated heart. We conclude that in preparations of surgically denervated dog myocardium Mr 40,000 and Mr 39,000 pertussis toxin-sensitive G proteins are increased by 31 and 40%, respectively, and that functional alterations in adenylate cyclase activity exist, consistent with increased inhibitory G-protein function.

5'-Nucleotidase

Detection of allograft endothelial cells of recipient origin following ABO-compatible, nonidentical cardiac transplantation.

Endothelial cells serve an important role in augmenting immune responses through enhanced expression of MHC class II antigens. Immune-mediated vascular injury associated with rejection requires reendothelialization to restore vascular integrity. The origin of the reparative endothelial cells can be determined when ABO antigens expressed on these cells differ in the donor and recipient. To assess the frequency and significance of reendothelialization by recipient endothelial cells, we stained serial endomyocardial biopsies for ABO antigens in 34 (13%) compatible, nonidentical cardiac allograft recipients of 268 cardiac transplant procedures. In ten (30%) the allograft endothelial cells expressed the characteristics of the recipient (five partial and five complete) within 7.5 +/- 1.0 months (mean +/- SEM) after transplantation. Over 26.3 +/- 2.5 months follow-up no differences could be detected in pretransplant characteristics, allograft survival, survivor rejection morbidity, long-term allograft function, and presence of coronary vasculopathy between those whose endothelial cells expressed recipient blood group antigens and those who did not, which may merely be a reflection of the small sample size. This study indicates that recipient reendothelialization occurs frequently following cardiac transplantation and may result from immune-mediated vascular injury. The effect of recipient reendothelialization on allograft tolerance requires further investigation.

ABO Blood-Group System

A1-adenosine receptor inhibition of adenylate cyclase in failing and nonfailing human ventricular myocardium.

BACKGROUND: Receptors that couple via the stimulatory G protein, Gs, to adenylate cyclase and to a positive inotropic response have been extensively investigated in falling human heart. In contrast, much less is known about receptors, such as the A1-adenosine receptor, that couple to adenylate cyclase via the inhibitory G protein, Gi, to give a negative inotropic response. Activation of such Gi-coupled receptors might worsen heart failure. Furthermore, alpha Gi is increased in failing human ventricular myocardium, which may enhance inhibitory receptor coupling to adenylate cyclase. METHODS AND RESULTS: A1-Adenosine receptor inhibition of adenylate cyclase was examined in crude particulate preparations derived from 12 nonfailing and 12 failing human left ventricles. Experimental conditions were designed for maximal inhibitory responses. Dose-response curves were performed with the selective A1-adenosine receptor agonist R-phenylisopropyl-adenosine (R-PIA). No differences in nonfailing versus failing heart were observed for basal adenylate cyclase activity (49.0 +/- 4.1 versus 45.7 +/- 2.6 pmol cyclic AMP/min/mg), maximal R-PIA-mediated inhibition (31.1 +/- 2.6 versus 30.2 +/- 1.6 pmol cyclic AMP/min/mg), ED50 (R-PIA x 10(-7) 1.28 +/- 0.10 versus 1.36 +/- 0.08), or slope (1.06 +/- 0.06 versus 1.03 +/- 0.10), respectively. Furthermore, fluoride, forskolin, and manganese adenylate cyclase activation were not different in failing heart, which is consistent with no change in the catalytic unit of adenylate cyclase. The inhibitory G protein alpha Gi, as quantitated by pertussis toxin-catalyzed ADP-ribosylation, was increased in failing heart (105.7 +/- 5.8 versus 132.7 +/- 3.4 optical density units, p less than 0.003). Basal adenylate cyclase activity was reduced in failing heart (7.8 +/- 0.8 versus 4.5 +/- 0.4 pmol cyclic AMP/min/mg, p less than 0.005) with assay conditions designed to assess G protein effects. CONCLUSIONS: The A1-adenosine receptor pathway exerts a major inhibitory effect on human myocardial adenylate cyclase activity. Although alpha Gi was increased in failing heart, A1-adenosine receptor inhibition of adenylate cyclase was not altered in preparations of failing versus nonfailing human ventricular myocardium.

Adenosine

Selective gene expression in failing human heart. Quantification of steady-state levels of messenger RNA in endomyocardial biopsies using the polymerase chain reaction.

BACKGROUND: Evaluation of gene expression in failing human heart has been limited by the availability of cardiac tissue. METHODS AND RESULTS: We used the polymerase chain reaction (PCR) to assess gene expression in small quantities of failing and nonfailing human heart. PCR is a powerful new molecular biological tool that allows a small quantity of DNA to be amplified as much as 1 million-fold. Total RNA was extracted from 3-5 mg samples of human heart and reverse-transcribed to complementary DNA (cDNA). With selected oligonucleotide primers, we used PCR to amplify cDNAs encoding atrial natriuretic peptide, beta-myosin heavy chain, phospholamban, and cytoskeletal beta-actin. To quantify the relative levels of messenger RNA (mRNA) in human heart, a known amount of a control RNA was present in the reverse transcription and PCR reactions. The amount of mRNA in the sample could therefore be assessed in relation to the amount of control product. The control RNA was transcribed from a synthetic DNA template containing primers complementary to those used to amplify the cDNAs of interest. Atrial natriuretic factor mRNA could not be detected in nonfailing human heart but was abundant in ventricular myocardium from failing human heart. In contrast, steady-state levels of phospholamban mRNA decreased, whereas levels of beta-myosin heavy-chain mRNA were unchanged with heart failure. CONCLUSIONS: Alterations in gene expression in the failing human heart appear to be selective. In addition, the present study suggests that PCR provides a rapid and economical way to quantify the expression of multiple genes of interest in endomyocardial biopsy specimens and may therefore be used to advance our understanding of heart muscle disease.

Biopsy

Differences in beta-adrenergic neuroeffector mechanisms in ischemic versus idiopathic dilated cardiomyopathy.

BACKGROUND: We measured the content and activities of components of the beta-adrenergic receptor-G protein-adenylate cyclase complex and adrenergic neurotransmitter levels in left and right ventricular myocardial preparations derived from 77 end-stage failing human hearts from patients with idiopathic dilated cardiomyopathy (IDC) or ischemic dilated cardiomyopathy (ISCDC). METHODS AND RESULTS: The results were compared with data obtained in 21 nonfailing hearts removed from organ donors. Compared with ISCDC ventricles, IDC left and right ventricles exhibited a greater degree of total beta- or beta 1-receptor downregulation. In contrast, compared with IDC right ventricles, isolated tissue preparations of ISCDC right ventricles exhibited a greater degree of subsensitivity to the inotropic effect of isoproterenol, indicating a relatively greater degree of functional uncoupling of right ventricular ISCDC beta-receptors from mechanical response. In addition, relative to IDC left ventricles, preparations of ISCDC left ventricle exhibited greater subsensitivity to beta-agonist-mediated adenylate cyclase stimulation, indicating functional uncoupling of left ventricular ISCDC beta-receptors from cyclic AMP generation. The uncoupling of beta-receptors in ISCDC left and right ventricles may have been a result of abnormalities in G protein activation of adenylate cyclase; compared with age- and cardiac function-matched respective left or right IDC ventricles, ISCDC left ventricles exhibited less stimulation of adenylate cyclase by NaF or forskolin but no change in Mn2+ stimulation, whereas ISCDC right ventricles exhibited less stimulation by the nonhydrolyzable guanine nucleotide Gpp (NH)p. Also, IDC right ventricles exhibited a "selective" (not present in IDC left ventricles or ISCDC ventricles) decrease in stimulation of adenylate cyclase by Mn2+. Tissue neurotransmitter levels and pertussis toxin-catalyzed ADP ribosylation were altered to similar extents in IDC and ISCDC: CONCLUSIONS: These data indicate that potentially important differences exist in the regulatory behavior of components of the beta-adrenergic receptor-G protein-adenylate cyclase complex in IDC versus ISCDC, differences that presumably relate to the distinct pathophysiologies of these two types of heart muscle disease.

Adenylyl Cyclases