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Translocation of proteins across the endoplasmic reticulum III. Signal recognition protein (SRP) causes signal sequence-dependent and site- specific arrest of chain elongation that is released by microsomal membranes

机译:蛋白质跨内质网转移。信号 识别蛋白(SRP)引起信号序列依赖性和位点- 微粒体释放的链伸长的特定阻滞 膜

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摘要

The previously observed (Walter, et al. 1981 J. Cell Biol. 91:545-550) inhibitory effect of SRP selectively on the cell-free translation of mRNA for secretory protein (preprolactin) was shown here to be caused by a signal sequence-induced and site-specific arrest in polypeptide chain elongation. The Mr of the SRP-arrested nascent preprolactin chain was estimated to be 8,000 corresponding to approximately 70 amino acid residues. Because the signal sequence of preprolactin comprises 30 residues and because approximately 40 residues of the nascent chain are buried (protected from protease) in the large ribosomal subunit, we conclude that it is the interaction of SRP with the amino-terminal signal peptide of the nascent chain (emerged from the large ribosomal subunit) that modulates translation and thereby causes an arrest in chain elongation. This arrest is released upon SRP-mediated binding of the elongation-arrested ribosomes to the microsomal membrane, resulting in chain completion and translocation into the microsomal vesicle.
机译:先前观察到的(Walter,et al.1981 J.Cell Biol.91:545-550)SRP选择性抑制分泌蛋白(催乳素原)mRNA的无细胞翻译的抑制作用在此处显示是由信号序列引起的诱导的多肽链延长中的位点特异性停滞。 SRP逮捕的新生催乳素链的Mr估计为8,000,对应于大约70个氨基酸残基。由于催乳素原的信号序列包含30个残基,并且由于新生链中约40个残基被掩埋(保护了蛋白酶)在大核糖体亚基中,因此我们得出结论,这是SRP与新生氨基端信号肽的相互作用链(来自大核糖体亚基),可调节翻译,从而导致链延长被阻止。当SRP介导的伸长被阻止的核糖体与微粒体膜结合后,该阻滞被释放,导致链完成并转移到微粒体囊泡中。

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