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信号肽氨基末端区域的正电荷在蛋白质跨膜分泌中的作用。

Role of positive charge on the amino-terminal region of the signal peptide in protein secretion across the membrane.

作者信息

Inouye S, Soberon X, Franceschini T, Nakamura K, Itakura K, Inouye M

出版信息

Proc Natl Acad Sci U S A. 1982 Jun;79(11):3438-41. doi: 10.1073/pnas.79.11.3438.

Abstract

The positively charged amino-terminal region of the signal peptide has been proposed to have an important role at an initial step of protein secretion across the membrane (loop model). To test this hypothesis, the charge on the amino-terminal region of the signal peptide of the prolipoprotein of the Escherichia coli outer membrane was altered by using synthetic oligonucleotides from +2 to +1, 0, and -1 by guided site specific mutagenesis of a plasmid DNA carrying an inducible lipoprotein gene. The wild-type sequence of this sectio, Met-Lys-Ala-Thr-Lys (+2), was thus changed to Met-Lys-Asp-Thr-Lys (I-1; +1), Met-Ala-Thr-Lys (I-2; +1), Met-Asp-Thr-Lys (I-3; 0), and Met-Glu-Asp-Thr-Lys (I-4; -1). After induction of lipoprotein production, cells were pulse labeled with [35S]methionine for 10 sec. The lipoprotein of I-1, I-2, and I-3 was assembled in the membrane, although the rates of lipoprotein production progressively decreased as the charge on the signal peptide became more negative. Conversely, in the case of I-4, only a small amount of lipoprotein assembled in the membrane while a large amount of glycerol-unmodified prolipoprotein accumulated in the cytoplasm. This soluble prolipoprotein was gradually and posttranslationally secreted across the membrane to be modified and assembled in the membrane. These results indicate that the positively charged amino-terminal region of the signal peptide plays an important role in efficient protein secretion across the membrane.

摘要

信号肽带正电荷的氨基末端区域被认为在蛋白质跨膜分泌的初始步骤中发挥重要作用(环模型)。为了验证这一假设,通过对携带可诱导脂蛋白基因的质粒DNA进行定点诱变,利用合成寡核苷酸将大肠杆菌外膜前脂蛋白信号肽氨基末端区域的电荷从+2改变为+1、0和-1。因此,该区域的野生型序列Met-Lys-Ala-Thr-Lys(+2)被改变为Met-Lys-Asp-Thr-Lys(I-1;+1)、Met-Ala-Thr-Lys(I-2;+1)、Met-Asp-Thr-Lys(I-3;0)和Met-Glu-Asp-Thr-Lys(I-4;-1)。诱导脂蛋白产生后,用[35S]甲硫氨酸对细胞进行10秒的脉冲标记。I-1、I-2和I-3的脂蛋白组装到膜中,尽管随着信号肽上的电荷变得更负,脂蛋白的产生速率逐渐降低。相反,在I-4的情况下,只有少量脂蛋白组装到膜中,而大量未修饰的甘油前脂蛋白积累在细胞质中。这种可溶性前脂蛋白在翻译后逐渐跨膜分泌,在膜中进行修饰和组装。这些结果表明,信号肽带正电荷的氨基末端区域在蛋白质高效跨膜分泌中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc20/346435/9fa2eb5e0914/pnas00450-0054-a.jpg

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