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Biomedical subjects

J R Eshleman

Publications and source records attributed to J R Eshleman.

At least 19 recordsLinked to original sources

N-linked glycosylation of rabies virus glycoprotein. Individual sequons differ in their glycosylation efficiencies and influence on cell surface expression.

Many eukaryotic proteins are modified by N-linked glycosylation, a process in which oligosaccharides are added to asparagine residues in the sequon Asn-X-Ser/Thr. However, not all such sequons are glycosylated. For example, rabies virus glycoprotein (RGP) contains three sequons, only two of which appear to be glycosylated in virions. To examine further the signals in proteins which regulate N-linked core glycosylation, the glycosylation efficiencies of each of the three sequons in the antigenic domain of RGP were compared. For these studies, mutants were generated in which one or more sequons were deleted by site-directed mutagenesis. Core glycosylation of these mutants was studied using two independent systems: 1) in vitro translation in rabbit reticulocyte lysate supplemented with dog pancreatic microsomes, and 2) transfection into glycosylation-deficient Chinese hamster ovary cells. Parallel results were obtained with both systems, demonstrating that the sequon at Asn37 is inefficiently glycosylated, the sequons at Asn247 and Asn319 are efficiently glycosylated, and the glycosylation efficiency of each sequon is not influenced by glycosylation at other sequons in this protein. High levels of cell surface expression of RGP in Chinese hamster ovary cells are seen with any mutant containing an intact sequon at Asn247 or Asn319, whereas low levels of cell surface expression are seen when the sequon at Asn37 is present alone; deletion of all three sequons completely blocks RGP cell surface expression. Thus, although core glycosylation at Asn37 is inefficient, it is still sufficient to support a biological function, cell surface expression. Future studies using mutagenesis of this model protein and its expression in these two well defined systems will aim to begin to unravel the rules governing core glycosylation of glycoproteins.

Antigens, Viral

A gene amplified in a transformed mouse cell line undergoes complex transcriptional processing and encodes a nuclear protein.

We have explored the structure and pattern of expression of a gene designated mdm-1, which is amplified 25-30-fold in transformed mouse cells containing numerous double minute particles. This gene is expressed in all mouse tissues examined but exhibits elevated and altered patterns of expression in the testis. Multiple transcripts are generated from the mdm-1 gene via mechanisms of alternative splicing and polyadenylation signal choice. These mRNAs have the potential to produce a minimum of three distinct protein products ranging in size from 25 to 77 kilodaltons. Antiserum generated against a synthetic peptide from the mdm-1 gene was used in immunoblotting studies and revealed that at least one of the protein products is present in the nucleus. This antiserum stained nuclear structures producing a distinct punctate or speckled pattern.

Animals

Heat treatment of laser-welded gold alloys.

(1) Three alloys, G-3, SMG-2, and Ceramco-0, showed no ductility in the aswelded condition. (2) The Ney G-3 as-welded samples had no ductility, but heat treating greatly increased their yield stress. (3) The simulated ceramic firing cycle created a small amount of ductility in SMG-2, but the lowering of the yield stress in Ceramco-0 renders the welds dangerously weak even with improved ductility. (4) The Jelenko F as-welded specimens were acceptable. Heat treatment improved the joints slightly, but this is not considered necessary. (5) The Ney B-2 as-welded specimens produced satisfactory joints which did not benefit from heat treatment. The large loss in ductility with heat treatment is considered undesirable. (6) The unpredictable behavior of Ceramco-0 in this study suggests the need to evaluate each alloy individually before clinical application.

Dental Soldering