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D G Lowe

Publications and source records attributed to D G Lowe.

140 records · Page 8Linked to original sources

Heterologous expression and characterization of the human R-ras gene product.

We directly expressed human R-ras 23,000-dalton protein (p23) cDNA in Escherichia coli under the control of the trp promoter. GTP-dependent phosphorylation of a p23 threonine 85 substitution mutant was observed. This result is in direct analogy to the autokinase activity of H-ras and K-ras threonine 59 substitution mutants. Normal p23 protein was detected in the human fibrosarcoma cell line HT1080 by immunoprecipitation with rabbit antibodies raised against an E. coli-expressed R-ras fusion protein. The R-ras p23 protein was found to be 3H labeled in the presence of [9,10(n)-3H]palmitic acid and is associated with the P100 membrane fraction of HT1080 cells. These data suggest that human R-ras p23 has biochemical properties very similar to those of the p21 products of the H-, K-, and N-ras proto-oncogenes. We constructed an R-ras minigene and engineered the expression of normal and mutant alleles from the simian virus 40 early region promoter. Normal and mutant R-ras gene products were authenticated by transient expression in COS-7 cells and immunoprecipitation. The valine 38-substituted R-ras p23 displayed reduced electrophoretic mobility. R-ras p21-like proteins, made by eliminating the first 26 R-ras codons, displayed evident mobility differences between the pro form and mature form, along with a valine 12 substitution-dependent change in electrophoretic mobility. Rat-1 fibroblasts were transfected with normal and mutant R-ras alleles and normal and activated H-ras alleles. Unlike the human T24 bladder oncogene-encoded p21, mutant R-ras alleles do not cause monolayer focus formation or growth in soft agar of rat fibroblasts.

Alleles↗

Molecular cloning and analysis of DNA complementary to three mouse Mr = 68,000 heat shock protein mRNAs.

The construction and isolation of three recombinant DNAs complementary to different mouse L-cell Mr = 68,000 heat shock protein (hsp68) mRNAs is described. cDNA libraries derived from heat-shocked mouse L-cell poly(A)+ RNA by the vector-linked primer strategy of cDNA synthesis and cloning of Okayama and Berg (Okayama, H., and Berg, P. (1982) Mol. Cell. Biol. 2, 161-170) were screened first with a Drosophila hsp70 heterologous probe and subsequently with a cDNA probe isolated from the first screening. Positive clones were assigned to one of three sets based on their restriction map, and the largest member of each group was chosen for further analysis. All three cDNAs hybrid-select mRNA for the mouse major heat shock protein (hsp68) as assayed by in vitro translation and hybridize preferentially to two heat shock-induced hsp68 mRNAs on Northern blots. The coding regions of the cDNAs are almost identical and closely resemble other HSP70 genes but the 3' untranslated regions diverge considerably. Differences in the lengths of the untranslated regions are responsible for the two different sized induced hsp68 mRNAs in mouse L-cells. The physical maps of these cDNA clones and the limited number of mouse genomic DNA fragments detected on Southern blots suggest that there are at least three closely related heat shock-inducible members of the mouse HSP70 gene family. None of the cloned cDNAs are derived from the two related cognate genes known to be present in the mouse genome.

Animals↗

Expression of heat shock genes in fetal and maternal rabbit brain.

Cloned fragments of members of the Drosophila and mouse major heat shock (hsp70) gene family were used to demonstrate that homologous sequences are present in the rabbit genome. After a physiologically relevant increase in body temperature of 3 degrees C, transcription of inducible hsp70 genes is detected in both the fetal and maternal brain and kidney. The induced hsp70 gene transcripts decay rapidly after whole body hyperthermia subsides. Transcripts of constitutively expressed member(s) of the hsp70 gene family, the heat shock cognate genes (hsc70), are detected in unstressed fetal and maternal rabbit tissues.

Animals↗

Proteins related to the mouse L-cell major heat shock protein are synthesized in the absence of heat shock gene expression.

Heat shock of mouse L cells induces the synthesis of two polypeptides of Mrs 68,000 and 89,000. Using a fragment of a cloned gene encoding the Drosophila melanogaster Mr 70,000 heat shock protein (hsp70), we have shown that this protein has been highly conserved during eukaryotic evolution. We extended this observation by probing at low stringency for the expression in mouse L cells of RNA homologous to the Drosophila hsp70 gene. In addition to the RNA encoding the inducible Mr 68,000 heat shock protein (hsp68), there are mouse mRNAs encoding proteins of Mrs 70,000 and 74,000 that are homologous to the Drosophila hsp70 gene. The Mrs 70,000 and 74,000 proteins and their mRNAs are abundant components of unstressed mouse L cells. These constituitively expressed proteins are unique polypeptides in contrast to the several isoelectric point variants of the inducible hsp68. We do not detect hsp68 or its mRNA in unstressed L cells. In addition to the mRNAs corresponding to hsp68 and the Mrs 74,000 and 70,000 proteins, we detect a fourth RNA homologous to the Drosophila hsp70 gene but whose protein product has not been identified. Our results suggest that the hsp68 gene of mouse L cells is a member of a multigene family and that the individual family members are distinguishable by their degree of similarity but show differences in the regulation of their expression.

Animals↗

The major heat-shock protein (hsp70) gene family: related sequences in mouse, Drosophila, and yeast.

Heat shock induces the synthesis of a 70-kdalton protein in Escherichia coli, Drosophila, yeast, and mouse. We show that the genes for this heat-shock protein in mouse, yeast, and Drosophila share extensive sequence homology as determined by heteroduplex formation at different stringencies. We calculate that the heat-shock gene homology is 74% between yeast and Drosophila and 85% between mouse and Drosophila. The organization of the six copies of the Drosophila gene for the 70-kdalton heat-shock protein at two separate loci is summarized and evidence is presented that the yeast and mouse genomes each contain multiple copies of sequences related to the Drosophila gene for the 70-kdalton heat-shock protein. These results demonstrate that not only the sequence but also the repetitive organization of the major heat-shock genes is conserved.

Animals↗

Field evaluation of a rapid, simple and inexpensive urease test for the detection of Helicobacter pylori.

A modified rapid urease test (MRU test) for the detection of Helicobacter pylori was evaluated under field conditions during an endoscopic survey in rural India and compared with a commercially available urease test (CLO test) and with histology. Of 195 consecutive subjects who underwent upper gastrointestinal endoscopy, 153 (78.5%) were positive for Helicobacter pylori when tested by the CLO test and/or histology. The sensitivity and specificity of the MRU test relative to this was 97.4 and 95.2%, respectively when the test was read over a 3 h period. The MRU test was positive in 77.4, 89.0, 93.8 and 96.6% of cases at 1, 5, 20 and 60 min, respectively, compared with 2.7, 14.4, 48.6 and 71.2% of cases for the CLO test at the same time. The accuracy of the MRU test was thus similar to that of other methods for the detection of Helicobacter pylori. Furthermore, it gave a positive diagnosis more rapidly than other tests, in most cases before the subject had left the endoscopy suite. The MRU test is extremely simple to prepare and read and costs less than 0.05 pounds per test compared with 2.26 pounds for a CLO test. It is suitable for use in clinical or epidemiological work and especially where cost factors are critical.

Biopsy↗