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由ΔpH驱动的双精氨酸转运途径对类囊体蛋白的靶向需要疏水结构域中的特定信号与双精氨酸基序协同作用。

Targeting of thylakoid proteins by the delta pH-driven twin-arginine translocation pathway requires a specific signal in the hydrophobic domain in conjunction with the twin-arginine motif.

作者信息

Brink S, Bogsch E G, Edwards W R, Hynds P J, Robinson C

机构信息

Department of Biological Sciences, University of Warwick, Coventry, UK.

出版信息

FEBS Lett. 1998 Sep 4;434(3):425-30. doi: 10.1016/s0014-5793(98)01028-x.

DOI:10.1016/s0014-5793(98)01028-x
PMID:9742968
Abstract

Superficially similar cleavable targeting signals specify whether lumenal proteins are transported across the thylakoid membrane by a Sec- or delta pH-dependent pathway. A twin-arginine motif is essential but not sufficient to direct delta pH-dependent targeting; here we show that a second determinant is located in the hydrophobic region. A highly hydrophobic amino acid is found either two or three residues C-terminal to the twin-arginine in all known transfer peptides for the delta pH-dependent system, and substitution of this residue in the 23-kDa (23K) peptide markedly inhibits translocation. Further, whereas the insertion of twin-arginine in a Sec-dependent precursor does not permit efficient delta pH-dependent targeting, the simultaneous presence of a leucine at the +3 position (relative to the RR) enables the peptide to function as efficiently as an authentic transfer peptide. RRNVL, RRAAL and RRALA within a Sec targeting signal all support efficient delta pH-dependent targeting, RRNVA is less effective and RRNAA/RRNAG are totally ineffective. We conclude that the core signal for this pathway is a twin-arginine together with an adjacent hydrophobic determinant.

摘要

表面上相似的可裂解靶向信号决定了腔蛋白是通过Sec依赖途径还是ΔpH依赖途径跨类囊体膜运输。双精氨酸基序对于指导ΔpH依赖的靶向是必不可少的,但并不充分;我们在此表明,第二个决定因素位于疏水区域。在所有已知的用于ΔpH依赖系统的转运肽中,在双精氨酸的C末端两个或三个残基处发现一个高度疏水的氨基酸,并且在23 kDa(23K)肽中替换该残基会显著抑制转运。此外,虽然在Sec依赖的前体中插入双精氨酸不允许有效的ΔpH依赖靶向,但在+3位置(相对于RR)同时存在亮氨酸可使该肽与真正的转运肽一样有效地发挥作用。Sec靶向信号内的RRNVL、RRAAL和RRALA都支持有效的ΔpH依赖靶向,RRNVA效果较差,RRNAA/RRNAG则完全无效。我们得出结论,该途径的核心信号是双精氨酸以及相邻的疏水决定因素。

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