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991.
The RAD6 gene of Saccharomyces cerevisiae, which encodes a ubiquitin-conjugating enzyme, is required for DNA repair, DNA damage-induced mutagenesis and sporulation. To evaluate the biological relevance of the thioester adduct between RAD6 protein and ubiquitin, formed as an obligatory, transient intermediate during ubiquitin conjugation to substrates, we altered cysteine 88 in RAD6 to serine. Esterification with ubiquitin occurs at serine 88 in the mutant protein, but conjugation of ubiquitin to the test substrate histone H2A is inactivated. Phenotypically, strains harboring the rad6 Ser88 allele are indistinguishable from rad6 deletion (rad6 delta) mutant cells. These findings argue against ligation of ubiquitin at cysteine 88 acting as a functional switch of a cryptic biochemical activity in RAD6.  相似文献   
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In the present experiment, a new slot comb was designed in order to form a wide and sloped sample well on the stacking gel of electrophoresis. Using this slot comb, a gradient of the reagent layer of interest can be easily formed transversely on the gel that is perpendicular to the direction of electrophoresis. Thus, the protein sample overlaid on the agent migrates across the gradient layer during electrophoresis to produce a continuous electrophoretic band reflecting the interaction between the protein and reagent. This new slot comb (tentatively called slope comb) was applied to the following two experiments. In the first experiment, in combination with this comb and a reducing agent, 2-mercaptoethanol, the reducing steps of cross-linked axonemal proteins with o-iodosobenzoic acid (OIBA) were analyzed electrophoretically, enabling visualization of the reducing pattern of each axonemal protein in a single experiment. The results obtained indicate that alpha and beta tubulins are cross-linked differently by OIBA. In the second experiment, the formation of the Ca2+ gradient layer using this slope comb could electrophoretically differentiate the Ca2+ sensitivity of three Ca(2+)-binding proteins.  相似文献   
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A full length cDNA encoding human pro-alpha 2(V) collagen was constructed. Partial sequencing of the cDNA and primer extension analysis of mRNA from fibroblasts found that pro-alpha 2(V) mRNA differs from the mRNAs of other fibrillar collagens in the increased length of its 5'-untranslated region. The pro-alpha 2(V) cDNA was placed downstream of the human cytomegalovirus immediate early promoter/regulatory sequences for expression studies in cultured Chinese hamster lung cells. These cells have been shown previously to synthesize large quantities of pro-alpha 1(V) homotrimers as their only collagenous product. Transfection resulted in a number of clonal cell lines that express human alpha 2(V) RNA at levels comparable to, and in some cases greater than, levels found in normal human skin fibroblasts. Pro-alpha 2(V) chains produced in the majority of clonal lines were of sufficient quantity to complex all available endogenous pro-alpha 1(V) chains. Chimeric heterotrimers, composed of hamster alpha 1(V) and human alpha 2(V) chains in a 2:1 ratio, were stable to pepsin digestion and were found predominantly associated with the cell layer. Surprisingly, pro-alpha 2(V) chains, in excess to pro-alpha 1(V) chains, were found in the extracellular matrix and, in much greater abundance, in media. These chains were pepsin sensitive, indicating that pro-alpha 2(V) chains can be secreted as nonstable homotrimers or as free chains.  相似文献   
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