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M Byers

Publications and source records attributed to M Byers.

At least 37 records · Page 2Linked to original sources

Mapping of the genes for human endoplasmic reticular heat shock protein gp96/grp94.

The murine tumor rejection antigen gp96 (TRA1, mapped to mouse chromosome 10) is a member of the heat shock protein family. Using a fragment of the murine gp96 cDNA as a probe, three gp96-related human genes have been isolated and structurally characterized. They have been mapped to human chromosomes 1 (p22), 12 (q24.2-->q24.3), and 15 (q25-->q26) by Southern blot hybridization and in situ hybridization of gene-specific probes. Only one of the genes, designated TRA1 (human chromosome 12) is a coding gene; the other genes (TRA1P1 and TRAP2) appear to be independently derived, processed pseudogenes.

Animals↗

A truncated laminin chain homologous to the B2 chain: structure, spatial expression, and chromosomal assignment.

We describe the identification of a novel laminin chain. Overlapping clones were isolated from a human fibrosarcoma HT1080 cell cDNA library spanning a total of 5,200 bp. A second set of clones contained an alternative 3' end sequence giving a total of 4,316 bp. The longer sequence contained an open reading frame for a 1,193-residue-long polypeptide. The alternative sequence was shortened at the carboxyl-terminal end coding for a 1,111-residue-long polypeptide. The amino acid sequence contained 21 amino acids of a putative signal peptide and 1,172 residues or alternatively 1,090 residues of a sequence with five distinct domains homologous to domains I-V in laminin chains. Comparison of the amino acid sequences showed that the novel laminin chain is homologous to the laminin B2 chain. However, the structure of the novel laminin chain isolated here differs significantly from that of the B2 chain in that it has no domain VI and domains V, IV, and III are shorter, resulting in a truncated laminin chain. The alternative sequence had a shortened domain I/II. In accordance with the current nomenclature, the chain characterized here is termed B2t. Calculation of possible chain interactions of laminin chains with the B2t chain domain I/II indicated that the B2t chain can replace the B2 chain in some laminin molecules. The gene for the laminin B2t chain (LAMB2T) was localized to chromosome 1q25-q31 in close proximity to the laminin B2 chain gene. Northern analysis showed that the B2t chain is expressed in several human fetal tissues but differently from the laminin B1 and B2 chains. By in situ hybridization expression of the B2t chain was localized to specific epithelial cells in skin, lung, and kidney as opposed to a general epithelial and endothelial cell expression of the laminin B2 chain in the same tissues.

Amino Acid Sequence↗

Gene structure, chromosomal location, and basis for alternative mRNA splicing of the human VCAM1 gene.

Vascular cell adhesion molecule 1 (VCAM-1) is a cell surface glycoprotein adhesive for certain blood leukocytes and tumor cells, which is expressed by activated endothelium in a variety of pathologic conditions including atherosclerosis. Genomic clones encoding the VCAM1 gene were isolated and the organization of the gene was determined. The gene, which is present in a single copy in the human genome, contains 9 exons spanning approximately 25 kilobases of DNA. Exons 2-8 contain C2 or H-type immunoglobulin domains. At least two different VCAM-1 precursors can be generated from the human gene as a result of alternative mRNA splicing events, which include or exclude exon 5. A consensus TATAA element is located upstream of the transcriptional start site. The VCAM1 promoter contains consensus binding sites for NF-kappa B, the GATA family of transcription factors, as well as an AP1 site. The VCAM1 gene was assigned to the 1p31-32 region of chromosome 1 based on the analysis of human-mouse hybrid cell lines and in situ hybridization. Structural analysis of the human VCAM1 gene provides the basis for alternative mRNA splicing and an initial approach to elucidating the regulation of VCAM-1 expression.

Amino Acid Sequence↗

tyk2, prototype of a novel class of non-receptor tyrosine kinase genes.

We previously identified a novel protein tyrosine kinase gene, tyk2, by screening a human lymphoid cDNA library with a tyrosine kinase domain specific c-fms restriction fragment under low stringency hybridization conditions. We have now isolated and sequenced a full length tyk2 cDNA clone; demonstrated that this gene is widely expressed in hematopoietic and non-hematopoietic cell lines; and mapped it to chromosome 19p13.2. The cDNA clone is 4176 nucleotides long and codes for a putative protein with a molecular weight of 134 kilodaltons. Hydrophobicity analysis of our sequence does not identify a transmembrane domain, which is found in all members of the receptor class of protein tyrosine kinases; nor can we detect an SH2 domain, found in all previously identified non-receptor protein kinases. We therefore propose that tyk2 is the prototype of a new class of non-receptor protein tyrosine kinases.

Amino Acid Sequence↗

Phlorizin-induced normoglycemia partially restores glucoregulation in diabetic dogs.

The plasma concentration of glucagon (IRG), catecholamines, and hepatic glucose production (Ra) were followed in insulin-induced hypoglycemia in dogs before (normal) and at 14-21 and again at 89-119 days after the injection of alloxan (diabetic). Some diabetic dogs were also tested when euglycemia was restored by phlorizin. In the normal state plasma IRG and epinephrine were raised by a factor of 3 and 15, respectively. Ra increased in two phases, an early peak (350% basal) was followed by a plataeu at about twice basal. In diabetes, irrespective of its duration, plasma IRG was decreased in hypoglycemia, and the rise in plasma epinephrine was significantly reduced. Ra remained unchanged. In phlorizin-treated euglycemic diabetic dogs plasma IRG fell, and the response in plasma epinephrine remained blunted. There was no early rise in Ra, but the same elevated plateau was reached at the same time as in normal animals. In conclusion, the following is observed in diabetic dogs. 1) The sensitivity of alpha-cells to insulin is maintained, but that to hypoglycemia is lost. The concentration of plasma catecholamines is raised less than in normals. With no increase in plasma glucagon this rise is not sufficient to increase Ra. 2) Restoration of euglycemia with phlorizin does not restore normal IRG and epinephrine responses to hypoglycemia but restores the delayed increase of Ra. Thus the restoration of euglycemia in severely diabetic dogs partially restores the responses of the liver, but not of the alpha-cell or sympathetic discharge, to hypoglycemia.

Animals↗

Human laminin B1 chain. A multidomain protein with gene (LAMB1) locus in the q22 region of chromosome 7.

We report the isolation and characterization of six overlapping cDNA clones that provide the first and complete amino acid sequence of the human laminin B1 chain. The cDNA clones cover 5613 nucleotides with 5358 nucleotides in an open reading frame encoding 1786 amino acids, including a 21-residue signal peptide-like sequence. Sequence analysis demonstrated the presence of two types of internal homology repeats that were found in clusters within the polypeptide chain. The type A repeats contain about 50 amino acids of which 8 are cysteine. These repeats are present in two clusters toward the NH2-terminal end of the chain and are separated from each other by about 220 amino acids. The two clusters contain five and eight consecutive repeats each. There are two copies of consecutive type B repeats of about 40 amino acids close to the COOH-terminal end. Computer analysis of the amino acid sequence of the B1 chain revealed the presence of structurally distinct domains that contain cysteine-rich repeats, globular regions, and helical structures. Using somatic cell hybrid methodology and in situ hybridization to metaphase chromosomes it was established that the human laminin B1 gene (LAMB1) is located in the q22 region of chromosome 7.

Amino Acid Sequence↗

Sequential expression in the nervous system of c-myb and VIP genes, located in human chromosomal region 6q24.

Vasoactive intestinal peptide (VIP) is a major neuropeptide involved in multiple functions such as vasodilation, smooth-muscle relaxation, sweat secretion, gastrointestinal peristalsis, pancreatic function, and brain activity. In view of the multiple roles associated with VIP, it is important to understand its gene regulation. We have recently isolated the human VIP gene and determined its structure. By in situ hybridization techniques we have now localized this gene to the long arm of chromosome 6, 6q24, a chromosomal region that has been shown previously to contain the coding sequences for the nuclear protooncogene c-myb. Genes found in close proximity to each other on the chromosome are often functionally related and, as VIP is primarily expressed in the nervous system, we investigated the possible correlation of c-myb to VIP in neuronal tissue. A sharp peak of c-myb mRNA was observed in the hippocampus of 3-day-old rats, preceding the peak of VIP mRNA that occurs in this brain area at 8 days of age. Thus, the protooncogene c-myb may be associated with events in brain development occurring prior to the appearance of elevated concentrations of VIP.

Animals↗

Gluconeogenesis from acetone in diabetic rats.

Previous investigations have demonstrated that acetone is a true, if minor precursor of glucose in vivo. In diabetic rats 1.30% of the carbon atoms of circulating glucose arises from acetone, whereas 0.67% does in normal 3-day fasted animals. Calculated from these fractions and the turnover rate of glucose, 48 micrograms/kg. min acetone-carbon is converted to glucose-carbon in diabetic and 16 micrograms/kg. min in normal rats. In both groups of rats the labelling of plasma lactate was stronger than that of glucose. In view of these results we conclude that: the transfer of C-atoms from acetone to glucose increases in diabetes; acetone remains a minor source of glucose even in ketonemic diabetic rats.

Acetone↗

Brain stem auditory nuclei and their connections in a carnivorous marsupial, the northern native cat (Dasyurus hallucatus).

The cytoarchitecture and connections of the brain stem auditory nuclei in the marsupial native cat (Dasyurus hallucatus) were studied using Nissl material in conjunction with the retrograde transport of horseradish peroxidase injected into the inferior colliculus. Some features different from those of Eutheria include the disposition of the cochlear nuclear complex medial to the restiform body, a lack of large spherical cells in the anteroventral cochlear nucleus, a small medial superior olive, and a large superior paraolivary nucleus.

Animals↗

Interleukin 2 (IL2) is assigned to human chromosome 4.

The human gene for interleukin 2 (IL2) was assigned to chromosome 4 using human-mouse somatic cell hybrids and Southern filter hybridization of cell hybrid DNA. To identify IL2, a recombinant DNA probe ( pIL2 - 50A ) was used which contained a human interleukin 2 cDNA insert which hybridized to a 3.5-kb fragment in human DNA when cleaved with the restriction enzyme EcoRI.

Animals↗

System cuts red tape for patients from admission to discharge.

One hospital's personalized admitting system is staffed by business representatives who perform a variety of liaison activities to ease patients' nonmedical experience in the hospital. For example, they expedite admissions, discharges, and transfers; make bed assignments; arrange patient transportation; supervise room cleaning on their units; verify patients' insurance coverage; provide financial counseling; and collect payment on bills.

Admitting Department, Hospital↗