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Biomedical subjects

M Schertzer

Publications and source records attributed to M Schertzer.

At least 19 recordsLinked to original sources

Extension of cell life-span and telomere length in animals cloned from senescent somatic cells.

The potential of cloning depends in part on whether the procedure can reverse cellular aging and restore somatic cells to a phenotypically youthful state. Here, we report the birth of six healthy cloned calves derived from populations of senescent donor somatic cells. Nuclear transfer extended the replicative life-span of senescent cells (zero to four population doublings remaining) to greater than 90 population doublings. Early population doubling level complementary DNA-1 (EPC-1, an age-dependent gene) expression in cells from the cloned animals was 3.5- to 5-fold higher than that in cells from age-matched (5 to 10 months old) controls. Southern blot and flow cytometric analyses indicated that the telomeres were also extended beyond those of newborn (<2 weeks old) and age-matched control animals. The ability to regenerate animals and cells may have important implications for medicine and the study of mammalian aging.

Animals↗

Genomic organization, expression, and chromosome location of the human SNAIL gene (SNAI1) and a related processed pseudogene (SNAI1P).

Some of the zinc finger proteins of the snail family are essential in the formation of mesoderm during gastrulation and the development of neural crest and its derivatives. We have isolated the human SNAIL gene (HGMW-approved symbol SNAI1) and describe its genomic organization, having sequenced a region spanning more than 5882 bp. The human SNAIL gene contains three exons. The SNAIL transcript is 2. 0 kb and is found in placenta and adult heart, lung, brain, liver, and skeletal muscle. It codes for a protein of 264 amino acids and 29.1 kDa. This protein contains three classic zinc fingers and one atypical zinc finger. The human SNAIL protein is 87.5, 58.7, 50.9, 50.7, 55.4, and 31.5% identical to mouse Snail, chicken snail-like, zebrafish snail1, zebrafish snail2, Xenopus snail, and Drosophila snail proteins, respectively. The zinc finger region is 95.5% identical between human and mouse Snail. Because Drosophila snail and twist are important regulators during mesoderm development and because human TWIST mutations have been implicated in craniosynostosis, a cohort of 59 patients with craniosynostosis syndromes were screened for SNAIL mutations. None were found. By somatic cell and radiation hybrid mapping panels, SNAIL was localized to human chromosome 20q13.2, between markers D20S886 and D20S109. A SNAIL-related, putative processed pseudogene (HGMW-approved symbol SNAI1P) was also isolated and maps to human chromosome 2q33-q37.

Adult↗

Endogenous retroviruses provide the primary polyadenylation signal for two new human genes (HHLA2 and HHLA3).

By screening the expressed sequence tag (EST) database, we identified transcripts of two new human genes that are polyadenylated within a long terminal repeat (LTR) of the HERV-H endogenous retrovirus family. The first gene, termed HHLA2, is represented by two EST clones and one cDNA clone, all of which have a polyadenylated LTR as their 3' end. The gene has an open reading frame (ORF) of 414 amino acids with three immunoglobulin-like domains and is expressed primarily in intestinal tissues, kidney, and lung. Seven small EST clones from several different tissues were found for the second gene, termed HHLA3. As with HHLA2, all HHLA3 ESTs utilized a HERV-H LTR as the polyadenylation signal. Three types of alternatively spliced HHLA3 transcripts that could encode proteins of 76, 121, or 153 amino acids were detected. Interestingly, the ORF for two of these transcripts continues into the LTR. For both HHLA2 and 3, no major human transcripts that utilized a non-LTR polyadenylation signal were detected. Analysis of RNA from baboon, which lacks the LTRs at these genomic loci, showed that the baboon HHLA2 and 3 genes use other polyadenylation signals. This study demonstrates that ancient retroviral insertions have assumed gene regulatory functions during the course of human evolution.

Amino Acid Sequence↗

Human SLUG gene organization, expression, and chromosome map location on 8q.

SLUG is a member of the snail family of zinc finger proteins. It is involved in epithelial to mesenchyme cell transition during neurulation and plays a role in limb bud development. We have isolated and described the human SLUG gene by sequencing a region spanning 4034 bp. The human SLUG gene contains three exons. The SLUG transcript is 2.2 kb and is found in placenta and adult heart, pancreas, liver, kidney, and skeletal muscle, and it codes for a protein of 268 amino acids and 29.989 kDa. This protein contains five zinc finger regions. The human SLUG protein is 95, 93, and 88% homologous to mouse, chicken, and Xenopus slug, respectively, but shows only 47% homology to mouse Snail. The zinc finger region is 100% identical between human and mouse Slug. Slug maps to the long arm of chromosome 8, closely linked to D8S2090 between D8S519 and D8S1098.

Amino Acid Sequence↗

A 2.8 megabase YAC contig spanning D8S339, which is tightly linked to the Werner syndrome locus.

A number of gene loci, including the locus for Werner syndrome (WRN), map to proximal human chromosome 8p near the genetic marker D8S339. In this report, we present a long range physical map of an approximately 2.8 megabase yeast artificial chromosome contig centred on D8S339. In this map, we localize the WRN-linked polymorphic sequence-tagged sites (STS) D8S339 and D8S1055, as well as a novel polymorphic STS, D8S2297. We also refine the positions of three known gene loci, GTF2E2, GSR, and PPP2CB, relative to the location of WRN within the map.

Cell Line↗

Analysis of CA repeat polymorphisms places three human gene loci on the 8p linkage map.

The gene loci for luteinizing hormone-releasing hormone (LHRH), the beta-3 adrenergic receptor (ADRB3), and heregulin (HGL) have been assigned to the short arm of human chromosome 8, but the positions of these loci on the human genetic linkage map have not been previously reported. We have isolated simple tandem repeat polymorphisms (STRPs) for these loci. These STRPs enabled us to determine the genetic map locations for these genes.

Base Sequence↗

Identification of the human neuronal nicotinic cholinergic alpha 2 receptor locus, (CHRNA2), within an 8p21 mapped locus, by sequence homology with rat DNA.

We have identified a cosmid, at the D8S131 locus, that shows sequence homology with exon 2 of the rat gene for the neuronal nicotinic acetylcholine receptor alpha 2 subunit. A 357-bp sequence surrounding a rare cutter AscI site contains a 152-bp region of homology. The human CHRNA2 gene is therefore positioned at the D8S131 locus, which has been mapped to 8p21.

Amino Acid Sequence↗

Sequence identity locates CEBPD and FGFR1 to mapped human loci within proximal 8p.

The gene loci for human CEBPD (CCAAT enhancer binding protein, delta chain) and FGFR1 (fibroblast growth factor receptor) have been identified within two genetically mapped cosmids by sequence homology between rare cutter site regions and data base sequences for these loci. Cell hybrid and fluorescence in situ hybridization mapping places both of these loci within the chromosome region 8p11.2-->p11.1.

Animals↗

Support for founder effect for two lipoprotein lipase (LPL) gene mutations in French Canadians by analysis of GT microsatellites flanking the LPL gene.

Mutations in the human lipoprotein lipase (LPL) gene are one of the major causes of familial chylomicronemia. We have characterized two polymorphic GT microsatellites flanking this gene. Two LPL mutations that are extremely frequent in French Canadians appear to be in complete linkage disequilibrium with specific LPL microsatellite haplotypes indicating a founder effect within this population.

Adult↗

Human chromosome 8 linkage map based on short tandem repeat polymorphisms: effect of genotyping errors.

A linkage map consisting of 21 dinucleotide repeat polymorphisms, 1 tetranucleotide repeat polymorphism, and 3 RFLPs was constructed for human chromosome 8. The map spanned most of the chromosome length from near pter to q23-q24 on the distal portion of the long arm. The total 186 cM length of the female map was over two times the 84 cM length of the male map. Cytogenetic mapping of the polymorphisms using a panel of hybrids containing rearranged chromosomes was completely consistent with the linkage map. Special effort was made to remove as many genotyping errors, including parental phase errors, as possible. Removal of errors, in agreement with recent theoretical predictions, led to reduction of the total length of the sex-equal map by 10% from 145 to 130 cM.

Alleles↗

A polymorphic complex dinucleotide repeat at the telomeric D8S7 locus.

Two cosmids isolated from a flow-sorted chromosome 8 library by hybridization with pSW50 (D8S7) were screened for GT microsatellite sequences. Both contained a positive 900-bp Hind III-Xba I fragment. Sequencing revealed a complex dinucleotide repeat. Flanking oligonucleotide primers were synthesized, and the polymerase chain reaction products produced by these primers were typed within the CEPH panel of families. A two-allele polymorphism was identified that is in linkage disequilibrium with a previously described insertion-deletion polymorphism at this locus.

Base Sequence↗

Effect of Wound Closure Technique on Wound Infection in the Morbidly Obese: results of a randomized trial.

The effect of suture obliteration of the subcutaneous dead space in morbidly obese abdominal wounds was studied in a randomized trial, comparing a pre-fascial retention suture technique (utilized for approximated of the thick panniculus) to controls where the skin was simply closed with staples. The wound infection rates were similar (11.8% for the sutured group versus 12.3% for controls, p 0.4), as were the total wound complication rates (26.5% for sutured group versus 21.9% for controls, p 0.4). Ultrasound study of the wounds closed without suturing the panniculus demonstrated no dead spaces. We conclude that no advantage is to be gained by suturing the subcataneous fat, however thick. The finding is of general application in wound closures involving thick layers of fat.

Journal Article↗

Pathogenesis of complications of percutaneous endoscopic gastrostomy. A lesson in surgical principles.

In two comparable series of percutaneous endoscopic gastrostomy differing in only one technical detail, complications were significantly reduced by omitting traction on the gastrostomy tube to approximate the gastric to the abdominal wall. Radiologic studies show that traction shortened the tract (4.9 +/- 1.1 cm with traction, 11.6 +/- 2.3 cm without traction). In two patients with fasciitis, gross pericatheter leak of contrast into a short and patulous tract was observed. Tube extrusion and gastrointestinal bleeding from gastric ersion ulcers were eliminated when traction was not used. No peritonitis occurred as a result of not attempting to approximate the stomach to the abdominal wall. The data suggest that traction on the gastrostomy tube is not only unnecessary, but is the cause of many of the complications reported.

Aged↗