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细胞色素b(5)的膜结合尾部可与信号序列协同作用,作为终止转移序列,使内质网中的蛋白质拓扑结构发生反转。

The membrane-interactive tail of cytochrome b(5) can function as a stop-transfer sequence in concert with a signal sequence to give inversion of protein topology in the endoplasmic reticulum.

作者信息

Kaderbhai Mustak A, Morgan Rachel, Kaderbhai Naheed N

机构信息

Institute of Biological Sciences, Cledwyn Building, University of Wales, Aberystwyth, Ceredigion SY23 3DD, UK.

出版信息

Arch Biochem Biophys. 2003 Apr 15;412(2):259-66. doi: 10.1016/s0003-9861(03)00051-1.

Abstract

Sequence analyses of the C-terminal membrane intercalative region of the rat cytochrome b(5) indicated that this domain has, in addition to a signal sequence, a combined element of the classic stop-transfer sequence typically found in a variety of transmembrane proteins. Such bitopic protein arrangements arise by tandem but topogenically displaced activities of cleavable/noncleavable signal and stop-transfer sequences. A fusion precursor comprising an N-terminally linked prokaryotic signal sequence and the full-length of mammalian cytochrome b(5), including its C-terminal membrane insertion sequence, was engineered to investigate the outcome of this combination of signals on the targeting and topology of the cytochrome b(5) in the endoplasmic reticulum membrane. Precytochrome b(5) was cotranslationally translocated across the endoplasmic reticulum membrane. The signal-processed cytochrome b(5) was integrally anchored in the membrane with the globular domain facing the lumen. Thus, the topology of the signal sequence-directed cytochrome b(5) in the microsomal vesicle was reversed with respect to that of the native form. Posttranslational incubation of the precytochrome b(5) with microsomes resulted in a "loose" incorporation of the unprocessed form onto the surface of the vesicle. Our findings suggest that the membrane-insertion sequence of cytochrome b(5) has a functional stop-transfer sequence. We discuss the implications of these findings with respect to selective targeting of cytochrome b(5) to the endoplasmic reticulum membrane in the view that signal and stop-transfer sequences are often interchangeable or combined for topogenic functions.

摘要

对大鼠细胞色素b(5)的C端膜插入区域进行序列分析表明,该结构域除了有一个信号序列外,还具有通常在多种跨膜蛋白中发现的经典终止转移序列的组合元件。这种双位蛋白排列是由可裂解/不可裂解信号序列和终止转移序列的串联但拓扑学上移位的活性产生的。构建了一种融合前体,其包含N端连接的原核信号序列和全长的哺乳动物细胞色素b(5),包括其C端膜插入序列,以研究这种信号组合对细胞色素b(5)在内质网膜中的靶向和拓扑结构的影响。前细胞色素b(5)在翻译过程中共转位穿过内质网膜。信号处理后的细胞色素b(5)整体锚定在膜中,球状结构域面向内腔。因此,微粒体囊泡中信号序列导向的细胞色素b(5)的拓扑结构相对于天然形式是相反的。前细胞色素b(5)与微粒体的翻译后孵育导致未加工形式“松散”地掺入囊泡表面。我们的发现表明细胞色素b(5)的膜插入序列具有功能性终止转移序列。鉴于信号序列和终止转移序列在拓扑功能上常常是可互换或组合的,我们讨论了这些发现对于细胞色素b(5)选择性靶向内质网膜的意义。

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