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信号肽:精心设计的转运促进因子。

Signal peptides: exquisitely designed transport promoters.

作者信息

Izard J W, Kendall D A

机构信息

Department of Molecular and Cell Biology, University of Connecticut, Storrs 06269.

出版信息

Mol Microbiol. 1994 Sep;13(5):765-73. doi: 10.1111/j.1365-2958.1994.tb00469.x.

Abstract

Prokaryotic proteins destined for transport out of the cytoplasm typically contain an N-terminal extension sequence, called the signal peptide, which is required for export. It is evident that many secretory proteins utilize a common export system, yet the signal sequences themselves display very little primary sequence homology. In attempting to understand how different signal peptides are able to promote protein secretion through the same pathway, the physical features of natural signal sequences have been extensively examined for similarities that might play a part in function. Experimental data have confirmed statistical analyses which highlighted dominant features of natural signal sequences in Escherichia coli: a net positive charge in the N-terminus increases efficiency of transport; the core region must maintain a threshold level of hydrophobicity within a range of length limitations; the central portion adopts an alpha-helical conformation in hydrophobic environments; and the signal cleavage region is ideally six residues long, with small side-chain amino acids in the -1 and -3 positions. This review focuses on the parallels between signal peptide physical features and their functions, which emerge when the results of a variety of experimental approaches are combined. The requirement for each property may be ascribed to a potential interaction that is critical for efficient protein export. The summation of the key physical features produces signal peptides with the flexibility to function in multiple roles in order to expedite secretion. In this way, nature has indeed evolved exquisitely tuned signal sequences.

摘要

destined for transport out of the cytoplasm typically contain an N-terminal extension sequence, called the signal peptide, which is required for export. It is evident that many secretory proteins utilize a common export system, yet the signal sequences themselves display very little primary sequence homology. In attempting to understand how different signal peptides are able to promote protein secretion through the same pathway, the physical features of natural signal sequences have been extensively examined for similarities that might play a part in function. Experimental data have confirmed statistical analyses which highlighted dominant features of natural signal sequences in Escherichia coli: a net positive charge in the N-terminus increases efficiency of transport; the core region must maintain a threshold level of hydrophobicity within a range of length limitations; the central portion adopts an alpha-helical conformation in hydrophobic environments; and the signal cleavage region is ideally six residues long, with small side-chain amino acids in the -1 and -3 positions. This review focuses on the parallels between signal peptide physical features and their functions, which emerge when the results of a variety of experimental approaches are combined. The requirement for each property may be ascribed to a potential interaction that is critical for efficient protein export. The summation of the key physical features produces signal peptides with the flexibility to function in multiple roles in order to expedite secretion. In this way, nature has indeed evolved exquisitely tuned signal sequences.

原核生物中,那些注定要运输出细胞质的蛋白质通常含有一个N端延伸序列,称为信号肽,这是输出所必需的。显然,许多分泌蛋白利用一种共同的输出系统,然而信号序列本身在一级序列上几乎没有同源性。为了理解不同的信号肽如何能够通过相同的途径促进蛋白质分泌,人们广泛研究了天然信号序列的物理特征,以寻找可能在功能中起作用的相似之处。实验数据证实了统计分析结果,这些分析突出了大肠杆菌中天然信号序列的主要特征:N端的净正电荷提高了运输效率;核心区域必须在一定长度限制范围内保持阈值水平的疏水性;中心部分在疏水环境中采用α螺旋构象;信号切割区域理想情况下为六个残基长,在-1和-3位置带有小侧链氨基酸。本综述重点关注信号肽物理特征与其功能之间的相似之处,这些相似之处是在多种实验方法的结果相结合时出现的。对每种特性的要求可能归因于对有效蛋白质输出至关重要的潜在相互作用。关键物理特征的总和产生了具有多种功能灵活性的信号肽,以加速分泌。通过这种方式,自然界确实进化出了经过精细调节的信号序列。

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