PubMed Health⌕ Search

Biomedical subjects

J W Cheng

Publications and source records attributed to J W Cheng.

At least 19 recordsLinked to original sources

Long-term donor health and its relationship with outcome of allogeneic hematopoietic stem cell transplantation.

Data on long-term follow-up of donors for hematopoietic stem cell transplantation (HSCT) are limited. Donors of 612 adult allogeneic HSCT were studied, at a median of 81 (14-181) months post-HSC donation. Nine donors had severe health problems. Five donors died from aggressive malignancies or terminal illness, at a median of 41 (16-57) months post-donation. Notably, all their recipients had leukemic relapses. In contrast, donors of recipients in remission were all living. This observation might be due to an inherent depressed immunosurveillance in the donors, or selection of donors with suboptimal health for desperate patients with poor risks pre-HSCT.

Adolescent↗

PTPN11 mutations in pediatric patients with acute myeloid leukemia: results from the Children's Cancer Group.

The PTPN11 gene encodes SHP-2, a nonreceptor protein tyrosine phosphatase that relays signals from activated growth factor receptors to p21(ras) (Ras) and other signaling molecules. Somatic PTPN11 mutations are common in patients with juvenile myelomonocytic leukemia (JMML) and have been reported in some other hematologic malignancies. We analyzed specimens from 278 pediatric patients with acute myelogenous leukemia (AML) who were enrolled on Children's Cancer Group trials 2941 and 2961 for PTPN11 mutations. Missense mutations of PTPN11 were detected in 11 (4%) of these samples. None of these patients had mutations in NRAS; however, one patient had evidence of a FLT3 alteration. Four of the patients with PTPN11 mutations (36%) were boys with French-American-British (FAB) morphology M5 AML (P=0.012). Patients with mutations also presented with elevated white blood cell counts. There was no difference in clinical outcome for patients with and without PTPN11 mutations. These characteristics identify a subset of pediatric AML with PTPN11 mutations that share clinical and biologic features with JMML.

Acute Disease↗

Embryonic expression of pituitary adenylyl cyclase-activating polypeptide and its selective type I receptor gene in the frog Xenopus laevis neural tube.

The genes encoding pituitary adenylyl cyclase-activating peptide (PACAP) and its selective type I receptor (PAC1) are expressed in the embryonic mouse neural tube, where they may be involved in neurogenesis and neural tube development. We examined here the early expression and potential actions of PACAP and PAC1 in the vertebrate developmental model Xenopus laevis. PACAP and PAC1 mRNAs were first detected by RT-PCR in stage 16-18 embryos (18 hours after fertilization). Two distinct PACAP precursor mRNAs were identified. One encoded both growth hormone-releasing hormone and PACAP, whereas the other encoded only full-length PACAP. Unlike that in the adult, the latter represented the predominant embryonic PACAP mRNA species. In situ hybridization revealed that PACAP and PAC1 mRNAs were restricted to neural cells. PAC1 gene expression was observed mainly in the ventricular zone in the ventral parts of the prosencephalon, mensencephalon, rhombencephalon, and anterior spinal cord. In contrast, PACAP mRNA was localized exclusively in postmitotic cells in the dorsolateral parts of the rhombencephalon and entire spinal cord. Most PACAP mRNA-containing cells were characterized as Rohon-Beard neurons. Exposure of early embryos to UV irradiation, which ventralizes embryos and inhibits neural induction, reduced the expression of PACAP and PAC1 genes. These results suggest that PACAP may be involved in the early development of the embryonic Xenopus neural tube.

Animals↗

Recognition, pathophysiology, and management of acute myocardial infarction.

New insights into the pathophysiology of atherosclerotic plaques leading to acute myocardial infarction (MI) are discussed, along with new diagnostic and treatment strategies. Ischemic heart disease represents a continuum from stable angina to unstable angina to non-Q-wave MI to Q-wave MI. Patients whose angina becomes unstable are classified as having acute coronary syndrome (ACS). It was formerly believed that thrombosis leading to critical occlusion of coronary arteries at the site of atherosclerotic plaque rupture was the common cause of ischemic heart disease. It is now thought that even lesions that do not critically occlude coronary arteries can cause MI. ACS can be caused by the rupture of an unstable atherosclerotic plaque. Vulnerable plaques are usually those causing only mild to moderate stenosis and having a lipid-rich core and a thin, macrophage-dense, collagen-poor fibrous cap. Factors affecting plaque rupture include mechanical injury, circadian rhythm, inflammation, and infection. Progressive thrombosis and vasospasm may follow plaque rupture. The diagnosis of MI starts with the recognition of symptoms of myocardial ischemia that are new or different from the usual pattern. Agents used to prevent or treat plaque rupture and its complications include thrombolytics, antiplatelet agents, antithrombotics, beta-blockers, angiotensin-converting-enzyme (ACE) inhibitors, and nitrates. Once patients survive the acute phase of MI, long-term therapy for prevention of future events begins. Post-MI patients should receive aspirin, beta-blockers, and an ACE inhibitor indefinitely; modification of cardiovascular risk factors is also important. Greater understanding of the pathophysiology of ACS has led to strategies to limit the progression of atherosclerosis and to improve survival and function after an acute event.

Adrenergic beta-Antagonists↗

Tenecteplase: a review.

BACKGROUND: Certain shortcomings of the available thrombolytic agents have prompted the search for a more fibrin specific fibrinolytic agent with a longer half-life. Such properties would allow bolus administration, possibly leading to faster reperfusion of occluded arteries. OBJECTIVE: This article focuses on the new thrombolytic agent tenecteplase, reviewing its mechanism of action, pharmacokinetic characteristics, clinical efficacy, tolerability, and potential for drug interactions in the management of acute myocardial infarction. METHODS: English-language articles for inclusion in this review were identified through searches of MEDLINE, EMBASE, and International Pharmaceutical Abstracts from 1966 to April 2001. The search terms used included tenecteplase, myocardial infarction, TNK, and TNK-tPA. Abstracts from recent conferences and symposia were also consulted. RESULTS: Tenecteplase is a variant of the native tissue-type plasminogen activator (tPA) molecule that has 14-fold greater fibrin specificity than alteplase, a longer half-life, slower plasma clearance, and 80-fold greater resistance to inhibition by plasminogen activator inhibitor type 1. Its half-life of approximately 18 minutes allows single-bolus administration. In comparative clinical trials, tenecteplase was found to have equivalent efficacy to recombinant tPA (alteplase). The rate of intracranial hemorrhage with tenecteplase was similar to that with alteplase, and tenecteplase was associated with fewer noncerebral complications and less need for blood transfusions. CONCLUSIONS: Tenecteplase appears to be as effective and well tolerated as alteplase in the management of acute myocardial infarction and offers the convenience of single-bolus administration.

Animals↗

The solution structure of [d(CGC)r(amamam)d(TTTGCG)]2.

The solution structure and hydration of a DNA.RNA hybrid chimeric duplex [d(CGC)r(amamam)d(TTTGCG)]2 in which the RNA adenines were substituted by 2'-O-methylated riboadenines was determined using two-dimensional NMR, simulated annealing, and restrained molecular dynamics. Only DNA residue 7T in the 2'-OMe-RNA.DNA junction adopted an O4'-endo sugar conformation, while the other DNA residues including 3C in the DNA.2'-OMe-RNA junction, adopted C1'-exo or C2'-endo conformations. The observed NOE intensity of 2'-O-methyl group to H1' proton of 4am at the DNA.2'-OMe-RNA junction is much weaker than those of 5am and 6am. The 2'-O-methyl group of 4am was found to orient towards the minor groove in the trans domain while the 2'-O-methyl groups of 5am and 6am were found to be in the gauche (+) domain. In contrast to the long-lived water molecules found close to the RNA adenine H2 and H1' protons and the methyl group of 7T in the RNA-DNA junction of [d(CGC)r(aaa)d(TTTGCG)]2, there were no long-lived water molecules found in [d(CGC)r(amamam)d(TTTGCG)]2. This is probably due to the hydrophobic enviroment created by the 2'-O-methylated riboadenines in the minor groove or due to the wider minor groove width in the middle of the structure. In addition, the 2'-O-methylation of riboadenines in pure chimeric duplex increses its melting temperature from 48.5 degrees C to 51.9 degrees C. The characteristic structural features and hydration patterns of this chimeric duplex provide a molecular basis for further therapeutic applications of DNA.RNA hybrid and chimeric duplexes with 2'-modified RNA residues.

Base Sequence↗

L-arginine in the management of cardiovascular diseases.

OBJECTIVE: To examine the role of L-arginine in the management of cardiovascular diseases. DATA SOURCES: A MEDLINE search (1966-April 2000) of review articles, using the search terms arginine, nitric oxide, and cardiovascular diseases, was conducted. After reviewing these articles, primary studies using the search terms arginine, hypercholesterolemia, hypertension, diabetes, smoking, ischemic heart disease, and heart failure were reviewed. STUDY SELECTION: English-language human studies were selected and evaluated based on quality of review. DATA SYNTHESIS: Small-scale studies have demonstrated that intravenous L-arginine augments endothelial function by enhancing vasodilation and reducing monocyte adhesion. Oral supplementation demonstrated similar effects as well as improvement of exercise ability in patients with cardiovascular diseases. CONCLUSIONS: L-arginine improves the management of multiple cardiovascular diseases. However, most published human studies are small. Before therapy can be routinely recommended, larger, well-designed studies are required to confirm its effect.

Arginine↗

New recommendations from the 1999 American College of Cardiology/American Heart Association acute myocardial infarction guidelines.

OBJECTIVE: To review literature relating to significant changes in drug therapy recommendations in the 1999 American College of Cardiology (ACC)/American Heart Association (AHA) guidelines for treating patients with acute myocardial infarction (AMI). DATA SOURCES: 1999 ACC/AHA AMI guidelines, English-language clinical trials, reviews, and editorials researching the role of drug therapy and primary angioplasty for AMI that were referenced in the guidelines were included. Additional data published in 2000 or unpublished were also included if relevant to interpretation of the guidelines. STUDY SELECTION: The articles selected influence AMI treatment recommendations. DATA SYNTHESIS: Many clinicians and health systems use the ACC/AHA AMI guidelines to develop treatment plans for AMI patients. This review highlights important changes in AMI drug therapy recommendations by reviewing the results of recent clinical trials. Insights into evolving drug therapy strategies that may impact future guideline development are also described. CONCLUSIONS: Several changes in drug therapy recommendations were included in the 1999 AMI ACC/AHA guidelines. There is emphasis on administering fibrin-specific thrombolytics secondary to enhanced efficacy. Selection between fibrin-specific agents is unclear at this time. Low response rates to thrombolytics have been noted in the elderly, women, patients with heart failure, and those showing left bundle-branch block on the electrocardiogram. These patient groups should be targeted for improved utilization programs. The use of glycoprotein (GP) IIb/IIIa receptor inhibitors in non-ST-segment elevation MI was emphasized. Small trials combining reduced doses of thrombolytics with GP IIb/IIIa receptor inhibitors have shown promise by increasing reperfusion rates without increasing bleeding risk, but firm conclusions cannot be made until the results of larger trials are known. Primary percutaneous coronary intervention (PCI) trials suggest lower mortality rates for primary PCI when compared with thrombolysis alone. However, primary PCI, including coronary angioplasty, is only available at approximately 13% of US hospitals, making thrombolysis the preferred strategy for most patients. Clopidogrel has supplanted ticlopidine as the recommended antiplatelet agent for patients with aspirin allergy or intolerance following reports of a better safety profile. The recommended dose of unfractionated heparin is lower than previously recommended, necessitating a separate nomogram for patients with acute coronary syndromes. Routine use of warfarin, either alone or in combination with aspirin, is not supported by clinical trials; however, warfarin remains a choice for antithrombotic therapy in patients intolerant to aspirin. Beta-adrenergic receptor blockers continue to be recommended, and emphasis is placed on improving rates of early administration (during hospitalization), even in patients with moderate left ventricular dysfunction. New recommendations for drug treatment of post-AMI patients with low high-density lipoprotein cholesterol and/or elevated triglycerides are included, with either niacin or gemfibrozil recommended as an option. Supplementary antioxidants are not recommended for either primary or secondary prevention of AMI, with new data demonstrating lack of efficacy vitamin E in primary prevention. Estrogen replacement therapy or hormonal replacement therapy should not be initiated solely for prevention of cardiovascular disease, but can be continued in cardiovascular patients already taking long-term therapy for other reasons. Bupropion has been added as a new treatment option for smoking cessation. As drug therapy continues to evolve in treating AMI, more frequent updates of therapy guidelines will be necessary.

Adrenergic beta-Antagonists↗

Fenoldopam in the prevention of contrast media-induced acute renal failure.

OBJECTIVE: To examine the role of fenoldopam in prevention of contrast media-induced acute renal failure (ARF). DATA SOURCES: A literature search of MEDLINE (from 1966 to October 2000) was performed using the following title search terms: fenoldopam, contrast, and renal failure. STUDY SELECTION: English-language human studies, abstracts, and pertinent animal data were reviewed. DATA SYNTHESIS: Small trials using animals with artificially induced ARF receiving fenoldopam demonstrated improvement in renal function. Preliminary trials in healthy humans have also demonstrated similar results using doses not affecting systemic blood pressure. CONCLUSIONS: Fenoldopam may have a role in the management of ARF induced by contrast dye. However, due to the lack of a large-scale study it cannot be routinely recommended.

Acute Kidney Injury↗

Patient-reported adherence to guidelines of the Sixth Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure.

OBJECTIVES: To compare antihypertensive drug compliance with treatment guidelines established by the Sixth Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure (JNC VI), and to identify patient adherence to antihypertensive drugs and factors affecting prescribing patterns. METHODS: Patients filling antihypertensive drug prescriptions in metropolitan New York area pharmacies were enrolled. Pharmacy externs collected patient-reported demographics, medical and drug histories, and blood pressure measurements. Compliance with JNC VI guidelines was assessed. RESULTS: Eight hundred twenty-one patients from 102 pharmacies participated. Blood pressure was controlled in 61% of patients at the time of the study. The most prescribed class of antihypertensive agents was angiotensin-converting enzyme inhibitors, followed by diuretics and beta-blockers. Over the study period, compliance with JNC VI guidelines decreased significantly from 85% to 64% (p<0.05). Thirty-seven percent of patients reported consistent adherence to their antihypertensive regimens. Patients' education level was the only factor found to correlate positively with the appropriateness of antihypertensive agents prescribed. CONCLUSION: Compliance with JNC VI guidelines decreased over time, and patient adherence to drug therapy was suboptimal. Continuing-education efforts to reinforce optimal blood pressure management are necessary.

Aged↗

Solution structure of an N-capping peptide from the N-terminal leucine-repeat region of hepatitis delta antigen.

Hepatitis delta virus (HDV) is a satellite virus of the hepatitis B virus (HBV) which provides the surface antigen for the viral coat. The RNA genome of HDV encodes two proteins, the small delta antigen and the large delta antigen, which differ only with the latter having an additional 19 amino acids at the C-terminus. Previously, we have shown that dAg24-50, a synthetic peptide corresponding to residues 24-50 of the N-terminal leucine-repeat region of hepatitis delta antigen, binds to the viral RNA and forms an alpha-helical conformation in TFE-containing solution. However, it exhibited low alpha-helicity (less than 5%) in the absence of TFE. In order to obtain biologically active delta antigen peptides with higher structural stability in solution, an N-capping 21-residue polypeptide corresponding to residues 24-38 of hepatitis delta antigen (dAg(Cap24-38am)) was synthesized and, surprisingly, its solution structure was found to be a stable alpha-helix (64%) by circular dichroism and 1H NMR techniques. Moreover, the structure of the capping box shows the characteristic L-shaped bend perpendicular to the helix axis. This structural knowledge provides a molecular basis for understanding the role of the N-terminal leucine-repeat region of hepatitis delta antigen and has a significant potential for the development of diagnostic and therapeutic methods for HDV.

Amino Acid Sequence↗

The solution structure of [d(CGC)r(aaa)d(TTTGCG)](2): hybrid junctions flanked by DNA duplexes.

The solution structure and hydration of the chimeric duplex [d(CGC)r(aaa)d(TTTGCG)](2), in which the central hybrid segment is flanked by DNA duplexes at both ends, was determined using two-dimensional NMR, simulated annealing and restrained molecular dynamics. The solution structure of this chimeric duplex differs from the previously determined X-ray structure of the analogous B-DNA duplex [d(CGCAAATTTGCG)](2)as well as NMR structure of the analogous A-RNA duplex [r(cgcaaauuugcg)](2). Long-lived water molecules with correlation time tau(c)longer than 0.3 ns were found close to the RNA adenine H2 and H1' protons in the hybrid segment. A possible long-lived water molecule was also detected close to the methyl group of 7T in the RNA-DNA junction but not with the other two thymines (8T and 9T). This result correlates with the structural studies that only DNA residue 7T in the RNA-DNA junction adopts an O4'-endo sugar conformation, while the other DNA residues including 3C in the DNA-RNA junction, adopt C1'-exo or C2'-endo conformations. The exchange rates for RNA C2'-OH were found to be approximately 5-20 s(-1). This slow exchange rate may be due to the narrow minor groove width of [d(CGC)r(aaa)d(TTTGCG)](2), which may trap the water molecules and restrict the dynamic motion of hydroxyl protons. The minor groove width of [d(CGC)r(aaa)d(TTTGCG)](2)is wider than its B-DNA analog but narrower than that of the A-RNA analog. It was further confirmed by its titration with the minor groove binding drug distamycin. A possible 2:1 binding mode was found by the titration experiments, suggesting that this chimeric duplex contains a wider minor groove than its B-DNA analog but still narrow enough to hold two distamycin molecules. These distinct structural features and hydration patterns of this chimeric duplex provide a molecular basis for further understanding the structure and recognition of DNA. RNA hybrid and chimeric duplexes.

Base Pairing↗

Hydration of [d(CGC)r(aaa)d(TTTGCG)](2).

We have studied the hydration and dynamics of RNA C2'-OH in a DNA. RNA hybrid chimeric duplex [d(CGC)r(aaa)d(TTTGCG)](2). Long-lived water molecules with correlation time tau(c) larger than 0.3 ns were found close to the RNA adenine H2 and H1' protons in the hybrid segment. A possible long-lived water molecule was also detected close to the methyl group of 7T in the RNA-DNA junction but not to the other two thymine bases (8T and 9T). This result correlates with the structural studies that only DNA residue 7T in the RNA-DNA junction adopts an O4'-endo sugar conformation (intermediate between B-form and A-form), while the other DNA residues including 3C in the DNA-RNA junction, adopt C1'-exo or C2'-endo conformations (in the B-form domain). Based on the NOE cross-peak patterns, we have found that RNA C2'-OH tends to orient toward the O3' direction, forming a possible hydrogen bond with the 3'-phosphate group. The exchange rates for RNA C2'-OH were found to be around 5-20 s(-1), compared to 26.7(+/-13.8) s(-1) reported previously for the other DNA.RNA hybrid duplex. This slow exchange rate may be due to the narrow minor groove width of [d(CGC)r(aaa)d(TTTGCG)](2), which may trap the water molecules and restrict the dynamic motion of hydroxyl protons. The distinct hydration patterns of the RNA adenine H2 and H1' protons and the DNA 7T methyl group in the hybrid segment, as well as the orientation and dynamics of the RNA C2'-OH protons, may provide a molecular basis for further understanding the structure and recognition of DNA.RNA hybrid and chimeric duplexes.

Adenine↗

Use of direct thrombin inhibitors in acute coronary syndrome.

OBJECTIVE: This paper examines the rationale for using direct thrombin inhibitors in the management of acute coronary syndrome (ACS). BACKGROUND: With traditional management of ACS using aspirin and unfractionated heparin (UH), refractory angina and new myocardial infarction (MI) continue to develop. Growing understanding of the pathophysiology of ACS has led to the search for more effective therapies directed toward preventing formation of fibrin- and platelet-rich thrombi in the coronary arteries. Current pharmacologic approaches include use of direct thrombin inhibitors (lepirudin, desirudin, and bivalirudin). METHODS: We reviewed all published clinical trials abstracted in MEDLINE from 1966 to April 2000, excluding pilot studies enrolling <500 patients. RESULTS: Use of lepirudin at medium doses (0.4-mg/kg bolus + 0.15 mg/kg/h) resulted in lower rates of death, new MI, and refractory angina at 7 days compared with UH (3.0% vs 6.5%; P = 0.047), although the incidence of minor bleeding was increased (7.6% vs 4.5%; P < 0.05). Bivalirudin was as effective as UH in preventing complications after percutaneous coronary intervention (11.4% vs 12.2%; NS) and carried a lower bleeding risk (7.8% vs 19.2%; NS); however, its use in the management of ACS has not been studied. Desirudin used at low doses (0.1-mg/kg bolus + 0.1 mg/kg/h) in large-scale clinical trials in patients with acute MI treated with alteplase or streptokinase appeared to be at least as effective as UH (8.9% vs 9.8% at 30 days; NS). However, its therapeutic index was narrow, since it was associated with significantly more moderate bleeding (8.8% vs 7.7%; P < 0.05). CONCLUSIONS: All clinical trials to date have studied relatively short-term use (3-5 days) of direct thrombin inhibitors, and long-term benefits on morbidity and mortality have not been demonstrated. Until further data are available, direct thrombin inhibitors should be restricted to use as a possible alternative in patients who require anticoagulant therapy but experience UH-induced thrombocytopenia.

Antithrombins↗

Solution structure of the human BTK SH3 domain complexed with a proline-rich peptide from p120cbl.

X-linked agammaglobulinemia (XLA), an inherited disease, is caused by mutations in the Bruton's tyrosine kinase (BTK). The absence of functional BTK leads to failure of B cell differentiation which incapacitates antibody production in XLA patients leading to, sometimes lethal, bacterial infections. Point mutation in the BTK gene that leads to deletion of C-terminal 14 aa residues of BTK SH3 domain was found in one patient family. To understand the role of BTK in B cell development, we have determined the solution structure of BTK SH3 domain complexed with a proline-rich peptide from the protein product of c-cbl protooncogene (p120cbl). Like other SH3 domains, BTK SH3 domain consists of five beta-strands packed in two beta-sheets forming a beta-barrel-like structure. The rmsd calculated from the averaged coordinates for the BTK SH3 domain residues 218-271 and the p120cbl peptide residues 6-12 of the complex was 0.87 A (+/-0.16 A) for the backbone heavy atoms (N, C, and Calpha) and 1.64 A (+/-0.16 A) for all heavy atoms. Based on chemical shift changes and inter-molecular NOEs, we have found that the residues located in the RT loop, n-Src loop and helix-like loop between beta4 and beta5 of BTK SH3 domain are involved in ligand binding. We have also determined that the proline-rich peptide from p120cbl binds to BTK SH3 domain in a class I orientation. These results correlate well with our earlier observation that the truncated BTK SH3 domain (deletion of beta4, beta5 and the helix-like loop) exhibits weaker affinity for the p120cbl peptide. It is likely that the truncated SH3 domain fails to present to the ligand the crucial residues in the correct context and hence the weaker binding. These results delineate the importance of the C-terminus in the binding of SH3 domains and also indicate that improper folding and the altered binding behavior of mutant BTK SH3 domain likely lead to XLA.

Agammaglobulinaemia Tyrosine Kinase↗

Predictive performance study of two digoxin assays in subjects with various degrees of renal function.

This prospective study was conducted to compare the predictive performance of fluorescence polarization immunoassay (FPIA, Abbott TDx Digoxin II) and radioimmunoassay (RIA, Kallestad Labs) with combined low-pressure liquid chromatography/RIA (LPLC/RIA) digoxin assay in measuring 15-17 serum digoxin concentrations (SDC) obtained after a single 10 microg/kg intravenous digoxin dose in patients with various degrees of renal function and at different SDC ranges. Eighteen men and women were stratified into 3 age- and gender-matched groups based upon renal function [N = 6 in each, group I (Cl(cr) < 10 mL/min), group II (Cl(cr) = 10-50 mL/min), and group III (Cl(cr) > 50 mL/min)]. Serum digoxin concentrations were measured at time zero; at 0.25, 0.5, 0.75, 1, 2, 3, 4, 6, 8, and 12 hours; and at 2, 3, 4, and 5-7 days after the digoxin dose, using the three different digoxin assays. TDx Digoxin II was unbiased [mean error -0.09 (95% CI -0.19, 0.01)] and RIA biased [mean error -0.29 (95% CI -0.36, -0.21)] to over-predict SDC by 14.2%. In group I patients, the analysis revealed a bias to over-predict SDC by 6.0% for TDx Digoxin II [mean error -0.16 (95% CI -0.29, -0.07)] and an unbiased performance by RIA. In groups II and III, both TDx Digoxin II and RIA showed biased performance, the mean magnitude of bias was low (< 20%). For intermediate SDC range (> 0.5 ng/mL and < or = 3.0 ng/mL), TDx Digoxin II was unbiased in predicting SDC, whereas RIA was biased to under-predict SDC [mean error 0.13 (95% CI 0.10, 0.16)] by 9.9%. The magnitude of bias observed in all cases was less than 20%. Both assays, TDx Digoxin II and RIA, imprecisely measured SDC for all samples combined, different groups and SDC ranges. In all time-paired samples, TDx Digoxin II (FPIA) performed better than the RIA. In conclusion, the magnitude of bias observed with either assay at different groups and SDC ranges was not likely to be clinically relevant. Therefore, either assay may be used to measure SDC in clinical practice.

Anti-Arrhythmia Agents↗

Stability and peptide binding specificity of Btk SH2 domain: molecular basis for X-linked agammaglobulinemia.

X-linked agammaglobulinemia (XLA) is caused by mutations in the Bruton's tyrosine kinase (Btk). The absence of functional Btk leads to failure of B-cell development that incapacitates antibody production in XLA patients leading to recurrent bacterial infections. Btk SH2 domain is essential for phospholipase C-gamma phosphorylation, and mutations in this domain were shown to cause XLA. Recently, the B-cell linker protein (BLNK) was found to interact with the SH2 domain of Btk, and this association is required for the activation of phospholipase C-gamma. However, the molecular basis for the interaction between the Btk SH2 domain and BLNK and the cause of XLA remain unclear. To understand the role of Btk in B-cell development, we have determined the stability and peptide binding affinity of the Btk SH2 domain. Our results indicate that both the structure and stability of Btk SH2 domain closely resemble with other SH2 domains, and it binds with phosphopeptides in the order pYEEI > pYDEP > pYMEM > pYLDL > pYIIP. We expressed the R288Q, R288W, L295P, R307G, R307T, Y334S, Y361C, L369F, and 1370M mutants of the Btk SH2 domain identified from XLA patients and measured their binding affinity with the phosphopeptides. Our studies revealed that mutation of R288 and R307 located in the phosphotyrosine binding site resulted in a more than 200-fold decrease in the peptide binding compared to L295, Y334, Y361, L369, and 1370 mutations in the pY + 3 hydrophobic binding pocket (approximately 3- to 17-folds). Furthermore, mutation of the Tyr residue at the betaD5 position reverses the binding order of Btk SH2 domain to pYIIP > pYLDL > pYDEP > pYMEM > pYEEI. This altered binding behavior of mutant Btk SH2 domain likely leads to XLA.

Agammaglobulinaemia Tyrosine Kinase↗