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首页> 外文期刊>Molecular and Cellular Biology >Proviral insertional activation of c-erbB: differential processing of the protein products arising from two alternate transcripts.
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Proviral insertional activation of c-erbB: differential processing of the protein products arising from two alternate transcripts.

机译:c-erbB的前病毒插入激活:来自两个替代转录本的蛋白质产物的差异加工。

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Proviral insertional activation of c-erbB results in the expression of two alternate transcripts (ENV+ and ENV-). We used cDNA clones representing the two alternate transcripts to generate stably transformed quail fibroblast cell lines which express the products of these transcripts independently. Analysis of the co- and posttranslational processing of the insertionally activated c-erbB products expressed in these cell lines revealed that the protein products of the ENV+ and ENV- transcripts were processed differently. The ENV+ transcript produced a primary translation product which was rapidly cotranslationally cleaved near the amino terminus to form a 79,000-Mr product. This protein product was efficiently converted to a higher-molecular-weight form, of between 82,000 and 88,000 (gp82-88), which was terminally glycosylated and expressed on the cell surface. A small portion of the ENV+ primary translation product underwent a second proteolytic cleavage to generate an unglycosylated 53,000-Mr species. In contrast, the primary translation product of the ENV- transcript, p80, was not proteolytically processed; this precursor form was rapidly converted to two discrete glycosylation intermediates, gp82 and go84. Only a small portion (less than 10%) of the total ENV- insertionally activated c-erbB product was slowly converted to the terminally glycosylated cell surface form, gp85-88. The processing differences that distinguished the ENV+ and ENV- products were similar to processing differences that we observed in parallel studies on the viral erbB products of the avian erythroblastosis viruses AEV-H and AEV-R, respectively. Since all four erbB protein products shared the same number, position, and sequence context of potential N-linked glycosylation sites, yet differed in the extent of their carbohydrate maturation, these data suggest that the mechanisms used by these truncated receptor molecules to associate with cellular membranes may be distinct.
机译:c-erbB的前病毒插入激活导致两个替代转录本(ENV +和ENV-)的表达。我们使用代表两个替代转录本的cDNA克隆来生成稳定转化的鹌鹑成纤维细胞系,该细胞系独立表达这些转录本的产物。对在这些细胞系中表达的插入激活的c-erbB产物的共翻译和翻译后处理的分析表明,ENV +和ENV-转录本的蛋白质产物处理方式不同。 ENV +转录产物产生一级翻译产物,该产物在氨基末端附近迅速共翻译,形成79,000-Mr产物。该蛋白质产物被有效地转化为介于82,000和88,000之间的更高分子量形式(gp82-88),该形式最终被糖基化并在细胞表面表达。 ENV +初级翻译产物的一小部分进行了第二次蛋白水解裂解,生成了未糖基化的53,000-Mr物种。相反,ENV转录本的主要翻译产物p80没有经过蛋白水解处理。该前体形式迅速转化为两个离散的糖基化中间体,gp82和go84。总的ENV插入活化的c-erbB产品中只有一小部分(少于10%)缓慢转化为末端糖基化的细胞表面形式gp85-88。区别ENV +和ENV-产物的加工差异与我们分别在禽成红细胞病病毒AEV-H和AEV-R的病毒erbB产物的平行研究中观察到的加工差异相似。由于所有四种erbB蛋白产物均具有相同的数量,位置和潜在N-连接糖基化位点的序列背景,但其碳水化合物成熟程度不同,这些数据表明这些截短的受体分子与细胞结合的机制膜可能是不同的。

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