Search PubMed⌕ Search

Biomedical subjects

J S Lynch

Publications and source records attributed to J S Lynch.

17 recordsLinked to original sources

Confederate Navy medicine.

The Confederate Navy's Office of Medicine and Surgery was a small organization within the Confederate Navy Department. The physicians, surgeon's stewards, and nurses provided medical care to sick and injured sailors from both sides of the conflict. The provision of health care often took place under trying circumstances, including shortages of medicines, money, and food. Members of the medical department served in all major and many minor naval engagements and worked long hours treating the wounded after battle. Many of the physicians served in the U.S. Navy before the Civil War. Their sacrifices and achievements are lost in the maelstrom of the larger conflict on land. This article is an effort to call attention to their story.

History, 19th Century↗

Molecular genetic analysis of a human neuropeptide Y receptor. The human homolog of the murine "Y5" receptor may be a pseudogene.

Neuropeptide Y is a 36-amino-acid peptide amide with numerous biological activities. These functions are mediated through several pharmacologically distinct receptors. To date five receptor subtypes have been cloned. Here we report the isolation, by low stringency homology cloning from a hypothalamic library, of a cDNA encoding the human homolog of the murine neuropeptide Y receptor subsequently reported (). Translation of the human Y1-like receptor clone suggested that it encoded a receptor which is truncated in the third extracellular loop. Comparison of the human Y1-like sequence to that of the human Y1 receptor suggested that the truncated receptor could have resulted from a frameshift due to a single nucleotide deletion in the sixth transmembrane domain. Southern blot analysis suggested that the gene is single copy in the human genome. The gene is located on chromosome 5q. To test the hypothesis that allelic variation of nucleic acid length within the sixth transmembrane domain of the Y1-like receptor may exist to produce a functional receptor, genomic DNA from 192 individuals of various ages, ethnic backgrounds, and degrees of obesity were analyzed electrophoretically and by direct sequencing. No variation was detected in any of the subjects, indicating that this receptor subtype may be a transcribed pseudogene in humans.

Amino Acid Sequence↗

Cloning and functional expression of a cDNA encoding a human type 2 neuropeptide Y receptor.

Neuropeptide Y (NPY) is a 36-amino acid polypeptide that is widely distributed in the central nervous system and periphery. Pharmacological studies have suggested that there are at least three receptor subtypes, Y1, Y2, and Y3. Cloning of the Y1 subtype has been reported previously. Here we report the isolation by expression cloning of a cDNA encoding a human NPY receptor displaying a pharmacology typical of a Y2 receptor. COS-7 cells transfected with the cDNA express high affinity binding sites for NPY, peptide YY, and NPY13-36, whereas [Leu31,Pro34]NPY binds with lower affinity. The receptor is 381 amino acids in length and has seven putative transmembrane regions typical of G-protein-coupled receptors. Comparison of the amino acid sequence of this Y2 receptor to that of the human Y1 receptor indicates that the two receptors are 31% identical at the amino acid level. Northern blot analyses reveal a single 4-kilobase mRNA species and indicate that the messenger RNA is present in many areas of the central nervous system. NPY induced calcium mobilization and inhibited forskolin-stimulated cAMP accumulation in Chinese hamster ovary cells that stably express the Y2 receptor cDNA, indicating that the recombinant Y2 receptor is functionally coupled to second messenger systems.

Amino Acid Sequence↗

Aspartate mutation distinguishes ETA but not ETB receptor subtype-selective ligand binding while abolishing phospholipase C activation in both receptors.

The endothelin receptors, ETA and ETB, are G protein-coupled receptors (GPCR) that show distinctively different binding profiles for the endothelin peptides and other ligands. We recently reported that Tyr129 in the second transmembrane region (TM2) of the ETA receptor was critical for subtype-specific ligand binding [Krystek, S.R. et al. (1994) J. Biol. Chem. 269, 12383-12386]. Receptor models indicated that aspartic acids located one helical turn above (Asp133) and below (Asp126) Tyr129 in ETA had their side chains directed toward the putative binding cavity. Similarly in ETB, Asp147 and Asp154 are located one turn below and above His150, the residue that corresponds to Tyr129. Asp126 in ETA and Asp147 in ETB correspond to the highly conserved aspartate present in TM2 of many GPCR that has frequently been shown to be crucial for agonist efficacy. Mutagenesis of Asp126 of the human ETA receptor to alanine resulted in an unaltered affinity for ET-1, a 160-fold increase in ET-3 affinity and a decrease in affinity for the ETA selective naphthalenesulfonamide, BMS-182874. ET-1 activation of phospholipase C was abolished. In addition, despite the gain in binding affinity, ET-3 failed to activate phospholipase C, suggesting that Asp126 is required for signal transduction. Mutagenesis of Asp133 to alanine indicated that it was critical only for the binding of BMS-182874. In the ETB receptor, mutation of His150 to alanine or tyrosine indicated that it plays a minor role in ETB subtype-selective ligand binding; mutation of the aspartates in TM2 of ETB did not alter ligand binding. As in the Asp126 Ala ETA variant, ET-1 and ET-3 failed to increase intracellular levels of inositol phosphates in the Asp147Ala ETB mutant. Taken together, these data support the hypothesis that Asp126 and Asp133 flanking Tyr129 in TM2 of the ETA receptor play a role in defining ETA subtype-selective ligand binding but Asp147 and Asp154 that flank the His150 in TM2 of the ETB receptor do not. Furthermore, these data indicate that Asp126 in ETA and Asp147 in ETB are important for transmembrane signaling via phospholipase C.

Alanine↗

Mutation of peptide binding site in transmembrane region of a G protein-coupled receptor accounts for endothelin receptor subtype selectivity.

The molecular basis for endothelin (ET) isopeptide selectivity between ETA and ETB receptors was studied by examining ligand binding to several site-specific mutants of the human ETA receptor. Based on a computer-built three-dimensional model of the ETA receptor, five non-conserved amino acids, clustered around the putative ligand binding site, were targeted for mutation to alanine. Expression of the wild-type and mutant ETA receptors in COS-7 cells revealed that the binding profile of one of the ETA mutants, Tyr129-->Ala, was characteristic of the ETB receptor. In the Tyr129-->Ala ETA receptor mutant the affinity of two ETB-selective agonists, endothelin-3 and sarafotoxin S6c, was increased 10-200-fold, whereas that for two ETA-selective antagonists, BQ-123 and BMS-182874, was reduced 350-2,000-fold. Thus, mutation of a single amino acid in the second transmembrane region of the wild-type ETA receptor results in subtype conversion. In addition, these data represent the first example of peptide interactions with a transmembrane region of a G protein-coupled receptor and indicate that Tyr129, located in the second transmembrane region of the ETA receptor, is a critical component for determination of endothelin receptor subtype-selective ligand binding.

Amino Acid Sequence↗

Endothelin receptor B expression in the rat and rabbit lung as determined by in situ hybridization using nonisotopic probes.

Endothelins are a family of potent vasoactive peptides. Full-length cDNA clones to human endothelin receptor B (ETB) mRNA were random prime-labeled with nucleotides conjugated to digoxigenin for in situ hybridization. The labeled cDNA was used to probe frozen sections of rat and rabbit lung. Detection of the digoxigenin-labeled probe was accomplished by an antibody-enzyme conjugate, anti-digoxigenin alkaline phosphatase. The location of the antibody-antigen complex was visualized as an enzyme-linked color reaction. The hybridization, washings, and detection steps were performed under stringent conditions. The following cell types of the rat and rabbit lung had abundant positive reaction product to the ETB probe: bronchiolar and bronchial epithelium, endothelium of smooth-muscle--walled vessels, and bronchial and bronchiolar-associated lymphoid tissue. Abundant positive reaction product was also observed in cell populations in the lung parenchyma. Additional studies are being performed to identify those populations. The results of this study suggest that in addition to vasoactivity, endothelins play other important roles in the lung.

Animals↗

Cloning and expression of a human endothelin receptor: subtype A.

The polymerase chain reaction, employing degenerate primers specific for the intramembrane domains III and VI of G-coupled receptors, was used to generate partial clones encoding those receptors carried by cultured rat aorta smooth muscle cells. One clone, spanning the intramembrane domains IV-VI of a receptor specific for endothelin-1 (ET-R[A]), was used as a probe to screen a human placental cDNA library. The clone pL4-3, encoding a selective type of human endothelin receptor (ET-R[A]), has an open reading frame encoding a protein 427 amino acids in length, with a relative molecular weight of 48,625 daltons. The sequence analysis suggests the presence of a signal peptide, two potential sites for glycosylation in the N terminal extracellular domain, the seven transmembrane domains typical of G-protein receptors, and several potential sites for phosphorylation in the C terminal cytoplasmic domain. At the amino acid level, the human ET-R(A) shows 91% and 94% identity with the rat and bovine ET-R(A)s, respectively, and 59% similarity with the human ET-R(B). Xenopus laevis oocytes injected with the cloned cDNA express binding sites specific for endothelin-1. Expression of the message in COS 7 cells gave a membrane-bound product to which binding of the [125I]-ET-1 was inhibited by peptide analogues specific for ET-R(A).

Amino Acid Sequence↗

Evaluation of SQ 34,514: pharmacokinetics and efficacy in experimental herpesvirus infections in mice.

The new antiviral nucleoside SQ 34,514 [(1R-1 alpha, 2 beta, 3 alpha)-2-amino-9- [2,3-bis(hydroxymethyl)cyclobutyl]-6H-purin-6-one], the active R isomer of racemic SQ 33,054 (cyclobut-G), was evaluated for efficacy in the treatment of herpesvirus infections in mice. SQ 34,514 was orally efficacious in a herpes simplex virus type 1 (HSV-1) systemic infection, an intracerebral HSV-2 infection, a vaginally induced HSV-2 infection in ovariectomized mice, and in a systemic murine cytomegalovirus infection. SQ 34,514 compared favorably with acyclovir and ganciclovir in the treatment of these experimental infections. In mice, SQ 34,514 had an oral bioavailability of 80% based on urinary excretion. SQ 34,514 may have potential value in the therapy of HSV and cytomegalovirus infections in humans.

Animals↗

Use of clozapine in primary care.

While clozapine represents a revolutionary advance in the treatment of schizophrenia, it carries with it a formidable side-effect profile. Agranulocytosis may indeed be life-threatening to a small number of patients. The nurse practitioner must be aware of this and other side effects in order to competently care for patients with psychiatric problems. It is also essential that there be a collaborative relationship between the nurse practitioner and a mental health provider. Only through appropriate consultation and referral will the needs of psychiatric patients be met in a timely and comprehensive manner.

Clozapine↗

Acute laryngitis.

Explore the source record for details and available documents.

Acute Disease↗

Ear wax.

Explore the source record for details and available documents.

Cerumen↗

Cold or flu.

Explore the source record for details and available documents.

Common Cold↗