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首页> 外文期刊>Journal of cell biology >Prepro-carboxypeptidase Y and a truncated form of pre-invertase, but not full-length pre-invertase, can be posttranslationally translocated across microsomal vesicle membranes from Saccharomyces cerevisiae.
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Prepro-carboxypeptidase Y and a truncated form of pre-invertase, but not full-length pre-invertase, can be posttranslationally translocated across microsomal vesicle membranes from Saccharomyces cerevisiae.

机译:前羧肽酶Y和前转化酶的截短形式,但不是全长前转化酶,可以从酿酒酵母中穿过微粒体囊泡膜进行翻译后移位。

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We have determined that prepro-carboxypeptidase Y and a truncated form of pre-invertase can be translocated across the yeast microsomal membrane post-translationally in a homologous in vitro system. The yeast secretory protein prepro-alpha-factor which was previously shown to be an efficient posttranslational translocation substrate is therefore not unique in this regard, but rather the yeast ER protein translocation machinery is generally capable of accepting substrates from a ribosome-free, soluble pool. However, within our detection limits, full-length pre-invertase could not be translocated posttranslationally, but was translocated co-translationally. This indicates that not every fully synthesized pre-protein can use this pathway, presumably because normal or aberrant folding characteristics can interfere with translocation competence.
机译:我们已经确定,羧基前肽原酶Y和前转化酶的截短形式可以在同源体外系统中翻译后穿过酵母微粒体膜。因此,以前被证明是有效的翻译后易位底物的酵母分泌蛋白前原α因子在这方面并不是唯一的,但是酵母ER蛋白易位机制通常能够从无核糖体的可溶性库中接受底物。 。但是,在我们的检测范围内,全长的转化酶不能在翻译后转位,而是在共翻译时转位。这表明并不是每个完全合成的前蛋白都可以使用此途径,大概是因为正常或异常的折叠特性会干扰易位能力。

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