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Biomedical subjects

R M Greenberg

Publications and source records attributed to R M Greenberg.

At least 19 recordsLinked to original sources

Diagnostic value of a pacemaker high rate episode counter when programming the ventricular tachycardia zone of an ICD.

A 72-year-old man with an ICD and a pacemaker was presented with an episode of sustained VT that accelerated to VF. The ICD failed to detect the event and deliver therapy, despite a VT apparently within the VT detection zone. The ICD detected the event after degeneration to VF and delivered appropriate therapy. The high rate event feature of the pacemaker was useful in determining proper function of the ICD along with optimal programming of VT detection.

Aged

Cloning and functional expression of a voltage-gated calcium channel alpha1 subunit from jellyfish.

Voltage-gated Ca2+ channels in vertebrates comprise at least seven molecular subtypes, each of which produces a current with distinct kinetics and pharmacology. Although several invertebrate Ca2+ channel alpha1 subunits have also been cloned, their functional characteristics remain unclear, as heterologous expression of a full-length invertebrate channel has not previously been reported. We have cloned a cDNA encoding the alpha1 subunit of a voltage-gated Ca2+ channel from the scyphozoan jellyfish Cyanea capillata, one of the earliest existing organisms to possess neural and muscle tissue. The deduced amino acid sequence of this subunit, named CyCaalpha1, is more similar to vertebrate L-type channels (alpha1S, alpha1C, and alpha1D) than to non-L-type channels (alpha1A, alpha1B, and alpha1E) or low voltage-activated channels (alpha1G). Expression of CyCaalpha1 in Xenopus oocytes produces a high voltage-activated Ca2+ current that, unlike vertebrate L-type currents, is only weakly sensitive to 1,4-dihydropyridine or phenylalkylamine Ca2+ channel blockers and is not potentiated by the agonist S(-)-BayK 8644. In addition, the channel is less permeable to Ba2+ than to Ca2+ and is more permeable to Sr2+. CyCaalpha1 thus represents an ancestral L-type alpha1 subunit with significant functional differences from mammalian L-type channels.

Amino Acid Sequence

A myosin III from Limulus eyes is a clock-regulated phosphoprotein.

The lateral eyes of the horseshoe crab Limulus polyphemus undergo dramatic daily changes in structure and function that lead to enhanced retinal sensitivity and responsiveness to light at night. These changes are controlled by a circadian neural input that alters photoreceptor and pigment cell shape, pigment migration, and phototransduction. Clock input to the eyes also regulates photomechanical movements within photoreceptors, including membrane shedding. The biochemical mechanisms underlying these diverse effects of the clock on the retina are unknown, but a major biochemical consequence of activating clock input to the eyes is a rise in the concentration of cAMP in photoreceptors and the phosphorylation of a 122 kDa visual system-specific protein. We have cloned and sequenced cDNA encoding the clock-regulated 122 kDa phosphoprotein and show here that it is a new member of the myosin III family. We report that Limulus myosin III is similar to other unconventional myosins in that it binds to calmodulin in the absence of Ca2+; it is novel in that it is phosphorylated within its myosin globular head, probably by cAMP-dependent protein kinase. The protein is present throughout the photoreceptor, including the region occupied by the photosensitive rhabdom. We propose that the phosphorylation of Limulus myosin III is involved in one or more of the structural and functional changes that occur in Limulus eyes in response to clock input.

Amino Acid Sequence

Use of atrial and ventricular electrograms from a dual chamber implantable cardioverter defibrillator to elucidate a complex dysrhythmia.

Stored intracardiac electrograms provided by third-generation ICDs have proved their use in the analysis of the mechanism of tachydysrhythmic events. There are cases in which the analysis of ventricular electrograms is insufficient for the elucidation of certain dysrhythmias. The availability of atrial electrograms provided by dual chamber ICDs improves the diagnostic capability of electrogram analysis and could prove most useful especially in complex dysrhythmias.

Aged

ECT in the elderly.

Depression is a common clinical problem in the elderly. Risk factors in this population include genetic vulnerability, psychosocial losses, medical comorbidity, cerebrovascular disease, and neurodegenerative disorders. Depression in the elderly may have severe consequences, including high rates of suicide, malnutrition or dehydration, high utilization of medical services, impaired recovery from medical illnesses, and inappropriate placement in residential care facilities. A significant number of older depressed patients may not respond to anti-depressant medications, suffer intolerable medication side effects, or have illnesses with symptoms or consequences so severe that it is not feasible to wait the time required for one or more antidepressant trials to work. For many of these patients ECT can be a dramatically effective treatment. With appropriate evaluation and monitoring, ECT can be performed with relative safety even for patients with serious concurrent medical illnesses. Serious adverse effects are rare, and cognitive consequences of ECT are generally circumscribed and of limited duration; there is no evidence of "brain damage" or permanent change in cognitive ability from ECT. After a recovery period memory function is often better than it was during the episode of depression. For patients who have been refractory to or intolerant of medication, maintenance ECT can be an effective strategy for preventing early relapse. Further research is needed, however, to clarify the optimum use of MECT schedules and pharmacotherapy combinations to most effectively and safely prevent relapse of depression in different elderly populations and to help predict who will best respond to which treatment modalities.

Aged

Cloning of a putative voltage-gated sodium channel from the turbellarian flatworm Bdelloura candida.

The neuromuscular sodium currents of early invertebrates such as platyhelminths display distinctive kinetic and pharmacological properties. We have cloned a cDNA from the horseshoe crab flatworm Bdelloura candida that encodes a protein homologous to the primary subunit of voltage-gated sodium channels. The B. candida protein, named BdNa1, exhibits amino acid identity of 40-47% to sodium channels of vertebrates and higher invertebrates. BdNa1 has the multidomain structure characteristic of sodium channels, and is most highly conserved in the hydrophobic transmembrane segments and the regions that form the pore of the channel. Northern blot analysis confirms the presence of a 5.4 kb BdNa1 transcript in B. candida tissue. The information provided by analysis of the BdNa1 sequence offers insight into the physiology of platyhelminth sodium currents.

Amino Acid Sequence

cDNA and protein sequence of a major form of P450, CYP2L, in the hepatopancreas of the spiny lobster, Panulirus argus.

A P450 fraction was previously isolated from spiny lobster hepatopancreas microsomes and shown in reconstitution experiments to be efficient in catalyzing the monooxygenation of benzphetamine, aminopyrine, benzo(a)pyrene, progesterone, and testosterone. In this study, N-terminal sequence information up to residue 39 was obtained from this P450 and used to design degenerate primers for screening a cDNA library constructed from hepatopancreas mRNA. Clones were obtained that contained part of the coding region of a P450 protein. Further exact primers were designed that permitted the isolation of clones containing coding information for other parts of the P450 sequence, as well as a clone that coded for the complete P450 protein sequence. The open reading frame of the complete coding region corresponded to a protein of 492 amino acids. The deduced amino acid sequence of this P450 was about 36% similar to individual mammalian P450s in the 2 family and did not show strong matches with other proteins in the data base. Based on sequence and the previously determined function, this spiny lobster P450 was assigned by the P450 nomenclature committee to a new P450 subfamily, CYP2L. This is the first description of a P450 primary sequence from a marine crustacean species and the first assignment of an invertebrate P450 into the 2 family.

Amino Acid Sequence

Fundulus heteroclitus vitellogenin: the deduced primary structure of a piscine precursor to noncrystalline, liquid-phase yolk protein.

We have cloned and sequenced a cDNA encoding a vitellogenin (Vtg) from the mummichog, Fundulus heteroclitus, an estuarine teleost. We constructed a liver cDNA library against RNA from estrogen-treated male mummichogs. Five overlapping cDNA clones totalling 5,197 bp were isolated through a combination of degenerate oligonucleotide probing of the library and PCR. The cDNA sequence contains a 5,112 bp open reading frame. The predicted primary structure of the deduced 1,704-amino-acid protein is 30-40% identical to other documented chordate Vtgs, establishing this Vtg as a member of the ancient Vtg gene family. Of the previously reported chordate Vtg sequences (Xenopus laevis, Gallus domesticus, Ichthyomyzon unicuspis, and Acipenser transmontanus), all four act as precursor proteins to a yolk which is eventually rendered insoluble under physiological conditions, either as crystalline platelets or as noncrystalline granules. The yolk of F. heteroclitus, on the other hand, remains in a soluble state throughout oocyte growth. The putative F. heteroclitus Vtg contains a polyserine region with a relative serine composition that is 10-20% higher than that observed for the other Vtgs. The trinucleotide repeats encoding the characteristic polyserine tracts of the phosvitin region follow a previously reported trend: TCX codons on the 5' end and AGY codons toward the 3' end. Whether the difference in Vtg primary structure between F. heteroclitus and that of other chordates is responsible for the differences in yolk structure remains to be elucidated. As the first complete teleost Vtg to be reported, these data will aid in designing nucleotide and immunological probes for detecting Vtg as a reproductive status indicator in F. heteroclitus and other piscine species.

Amino Acid Sequence

Isolation and expression of an arrestin cDNA from the horseshoe crab lateral eye.

Electrophysiological studies of photoreceptors from the horseshoe crab Limulus polyphemus continue to provide fundamental new knowledge of the photoresponse in invertebrates. Therefore, it is of particular interest to characterize the molecular components of the photoresponse in this system. Here we describe an arrestin cloned from a cDNA library constructed using poly(A)+ RNA isolated from Limulus lateral eyes. The protein, deduced from the arrestin cDNA, is most similar to arrestin from locust antennae (56% identity) and Drosophila phosrestin I (53% identity). Limulus arrestin was expressed in a heterologous system, and its properties were compared with those of a 46-kDa light-regulated phosphoprotein (pp46A) in Limulus photoreceptors described in previous studies from this laboratory. Arrestin and pp46A (a) have the same apparent molecular weight on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, (b) have an isoelectric point in the basic pH range, (c) require calmodulin and elevated Ca2+ levels for phosphorylation, (d) are immunoreactive with monoclonal antibody C10C10 directed against a sequence in bovine arrestin (S-antigen) that is perfectly conserved in the deduced arrestin protein, and (e) are associated with photoreceptors. We conclude that the arrestin described here and pp46A are the same protein. The results of this and previous studies show that in Limulus photoreceptors, light regulates the phosphorylation of arrestin in complex ways.

Amino Acid Sequence

Deduced amino acid sequence of a putative sodium channel from the scyphozoan jellyfish Cyanea capillata.

Members of the phylum Cnidaria are the lowest extant organisms to possess a nervous system and are the first that are known to contain cells that produce action potentials carried exclusively by Na+ ions. They thus occupy an important position in the evolution of Na+ channels. A cDNA encoding a 198-kDa protein with high sequence identity to known Na+ channels was isolated from the scyphozoan jellyfish Cyanea capillata. The similarity between this and other Na+ channels is greatest in the transmembrane segments and the putative pore region and less so in the cytoplasmic loops that link the four domains of the protein. Phylogenetic analysis of the deduced protein reveals that it is closely related to known Na+ channels, particularly those of squid and Drosophila, and more distantly separated from Ca2+ channels. Scrutiny of the Cyanea channel in regions corresponding to those purported to form the tetrodotoxin receptor and selectivity filter of Na+ channels in higher animals reveals several anomalies that suggest that current models of the location of the tetrodotoxin binding site and Na+ channel selectivity filter are incomplete.

Amino Acid Sequence

cDNA clones from the olfactory organ of the spiny lobster encode a protein related to eukaryotic glutamine synthetase.

We report here the nucleotide (nt) sequence of clones from a lobster olfactory organ cDNA library encoding a protein homologous to glutamine synthetase (GS) from eukaryotes. The cDNA for the lobster putative GS is 2045 bp in length, and includes a 5'-untranslated region 55 nt in length, a 1083-nt open reading frame, and a 907-nt 3'-untranslated region. The encoded protein shows 65, 64, and 63% identity with the reported GS sequences of chicken, human and fruit fly, respectively.

Amino Acid Sequence

Opsins from the lateral eyes and ocelli of the horseshoe crab, Limulus polyphemus.

cDNA clones encoding opsins from the lateral eyes and median ocelli of the horseshoe crab, Limulus polyphemus, were isolated from cDNA libraries. The opsin cDNAs obtained from the lateral eye and ocellar libraries code for deduced proteins with 376 amino acids. The two cDNAs are 96% identical at the nucleic acid level, differing primarily at the 3' untranslated region, and are apparently the products of two separate genes. The deduced opsin proteins are 99% identical to each other, differing at only 5 amino acids. The opsins encoded by these cDNAs are most likely the protein moiety of the visible-wavelength rhodopsins in this animal. In the lateral eye, expression of the opsin gene is restricted to the photoreceptor cells of the ommatidia. Comparisons with opsins of other species show that the Limulus opsin proteins are most similar (53% identity) to the opsin from the R1-6 photoreceptors of flies.

Amino Acid Sequence

Use-dependent prolongation of ventricular tachycardia cycle length by type I antiarrhythmic drugs in humans.

BACKGROUND: Type I antiarrhythmic drugs block the cardiac sodium channel in a use-dependent fashion. This use-dependent behavior causes increased drug binding and consequently increased sodium channel blockade at faster stimulation rates. Importantly, the kinetics of drug association and dissociation from the sodium channel differ for each type I antiarrhythmic drug. METHODS AND RESULTS: Thirty-five patients receiving type I antiarrhythmic drugs for the treatment of sustained monomorphic ventricular tachycardia (VT) were studied before and after drug therapy. A total of 41 drug studies were performed (lidocaine, n = 10; procainamide, n = 16; flecainide, n = 15). Sustained monomorphic VT of an identical electrocardiographic morphology was induced during the control and follow-up drug studies. During the control study, there was no significant change in the VT cycle length over time. Compared with control, significant prolongation of the onset VT cycle length was observed after treatment with procainamide and flecainide (increase of 52 +/- 24 and 80 +/- 49 msec, respectively) but not after treatment with lidocaine (increase of 8 +/- 37 msec). Additional drug-induced prolongation of the VT cycle length occurred during a 40-second observation period. This secondary "use-dependent" cycle length prolongation contributed significantly to the steady-state VT cycle length during treatment with flecainide (increase of 82 +/- 34 msec; p < 0.0001). Although a use-dependent increase in VT cycle length was observed with procainamide and lidocaine, the increase was not statistically significant (increase of 12 +/- 15 and 8 +/- 8 msec, respectively). The estimated time constants for the onset of use-dependent VT cycle length prolongation were distinctly different for the three drugs. Flecainide's prolongation of the VT cycle length occurred slowly, with an estimated time constant of 12.5 +/- 5.0 seconds. In contrast, the time course of VT cycle length prolongation was rapid during treatment with lidocaine and intermediate during treatment with procainamide (time constants of 0.52 +/- 0.51 and 4.0 +/- 1.3 seconds, respectively). CONCLUSIONS: Use-dependent prolongation of VT cycle length during treatment with type I antiarrhythmic drugs was observed in humans. This effect was clinically significant during treatment with flecainide (i.e., the use-dependent slowing of the heart rate improved the hemodynamic tolerance of the arrhythmia). Finally, the estimated time constants for the use-dependent prolongation of VT cycle length by the three test drugs are similar to their reported in vitro time constants for use-dependent sodium channel blockade.

Adult

Fundulus heteroclitus gonadotropins. 3. Cloning and sequencing of gonadotropic hormone (GTH) I and II beta-subunits using the polymerase chain reaction.

mRNA was isolated from Fundulus heteroclitus pituitaries and used to construct a cDNA library in lambda gt22A. A series of synthetic oligonucleotides, based on conserved regions of teleost gonadotropic hormone (GTH) beta-subunits, were constructed and used as primers in the polymerase chain reaction (PCR) to amplify GTH cDNAs. Appropriate length PCR products were subcloned and sequenced. Eight clones were eventually identified as cDNAs encoding two distinct beta-subunits of F. heteroclitus, GTH I and GTH II. By comparison with known GTH sequences, putative signal sequences of 19 end 21 amino acids and mature beta-subunits of 95 and 115 amino acids were found for GTH I and GTH II, respectively. Both beta-subunits had well conserved cysteine positions when aligned with other members of the glycoprotein family. The elucidation of the complete nucleotide sequences of two types of F. heteroclitus GTH provides definitive proof that in this species there are at least two distinct forms of pituitary GTH analogous to the classical luteinizing hormone-follicle stimulating hormone family.

Amino Acid Sequence

Choosing an electroconvulsive therapy device.

The selection of an electroconvulsive therapy (ECT) device from the more than 10 American-made models can be a difficult endeavor. This article is meant to be a single source of basic descriptions of these ECT devices. The information provided will allow the ECT clinician to be aware of the important issues involved in the selection of an ECT device and to become familiar with the basic features of each model.

Electroconvulsive Therapy

Incidence of unwarranted implantation of permanent cardiac pacemakers in a large medical population.

Because of allegations that the implantation of many permanent cardiac pacemakers has been unjustified, we reviewed the indications for all new pacemakers implanted at 30 hospitals in Philadelphia County between January 1 and June 30, 1983, and paid for by Medicare. Complete chart data were evaluated for 382 implants. We determined whether the indications for implantation were appropriate and adequately documented on the basis of standard clinical practice. Implants were classified as possibly indicated primarily because of inadequate diagnostic evaluation (63 percent) or inadequate documentation of an accepted indication (36 percent). Implants were classified as not indicated primarily because a rhythm abnormality was incorrectly identified as a justifiable indication (84 percent). We found that 168 implants (44 percent) were definitely indicated, 137 (36 percent) possibly indicated, and 77 (20 percent) not indicated. Unwarranted implantation was both prevalent (73 percent of hospitals had an incidence of 10 percent or more) and independent of the type of hospital (university teaching, university-affiliated, and community hospitals). The additional tests most often required to clarify the need for a pacemaker in inadequately evaluated cases included electrophysiologic studies (37 percent) and ambulatory monitoring (31 percent). We conclude that in a large medical population in 1983, the indications for a considerable number of permanent pacemakers were inadequate or incompletely documented.

Arrhythmias, Cardiac

Amiodarone therapy: role of early and late electrophysiologic studies.

Forty-two patients with a history of symptomatic ventricular tachycardia or cardiac arrest underwent electrophysiologic testing at control and early in the course of amiodarone therapy (mean 12 +/- 7 days). Late electrophysiologic studies (mean 17 +/- 4 weeks) were repeated in 23 patients on a maintenance dose of 400 mg/day. At control study, all patients had inducible ventricular tachyarrhythmias (sustained ventricular tachycardia in 35, nonsustained ventricular tachycardia in 4, ventricular fibrillation in 3), while after amiodarone loading (1,200 mg daily) 4 (10.5%) of the 42 patients developed noninducible ventricular arrhythmias. At late study, an additional 6 (26%) of the 23 patients with inducible arrhythmias at early study developed noninducible arrhythmias. The cycle length of induced ventricular tachycardia increased from 275 +/- 61 ms at control study to 340 +/- 58 ms at early study (p = 0.001). A further increase in ventricular tachycardia cycle length was noted in patients who underwent both early and late study (341 +/- 38 versus 375 +/- 63 ms, p less than 0.05). The percent of induced tachycardias that were clinically tolerated increased as patients were treated longer with amiodarone (control = 22%, early = 34%, late = 53%, p less than 0.001). Of the 23 patients who had both early and late electrophysiologic studies and were followed up for a mean of 21.7 months (range 4 to 47), there were no recurrences among the 6 patients with noninducible arrhythmias, but there were five recurrences among the 17 patients with persistently inducible arrhythmias. None of the four patients with noninducible arrhythmias at early study had a recurrence. On the basis of these findings, it is concluded that: 1) The timing of programmed electrical stimulation will affect the results of the study in patients treated with oral amiodarone.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Protein synthesis during imaginal disc pattern regulation.

We have examined the pattern of protein synthesis during wing disc pattern regulation. Although in vivo culture dramatically alters the pattern of abundant protein synthesis in wing discs, only one protein--RG38--changes specifically in response to pattern regulation. This polypeptide, previously identified as being nonuniformly distributed in wing and haltere discs, is synthesized in a graded distribution across the wing disc. During wing disc pattern regulation, it acts as a molecular marker for regeneration of particular wing disc regions. Thus, the rate of RG38 synthesis increases during regeneration (by fragments with initial low levels) with kinetics that parallel those for regeneration as scored by the presence of adult cuticular structures.

Animals