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突变对大肠杆菌输出分子伴侣SecB活性的多种影响。

Diverse effects of mutation on the activity of the Escherichia coli export chaperone SecB.

作者信息

Kimsey H H, Dagarag M D, Kumamoto C A

机构信息

Department of Molecular Biology and Microbiology, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.

出版信息

J Biol Chem. 1995 Sep 29;270(39):22831-5. doi: 10.1074/jbc.270.39.22831.

Abstract

The Escherichia coli SecB protein binds newly synthesized precursor maltose-binding protein (preMBP) and promotes its rapid export from the cytoplasm. Site-directed mutagenesis of two regions of SecB was carried out to better understand factors governing the SecB.preMBP interaction. 30 aminoacyl substitution mutants were analyzed, revealing two distinct classes of secB mutants. Substitutions at the alternating positions Phe-74, Cys-76, Val-78, or Gln-80 reduced the ability of SecB to form stable complexes with preMBP, but caused only mild defects in the rate of MBP export from living cells. The pattern revealed by this class of mutants suggests that a primary binding site for preMBP is hydrophobic and contains beta-sheet secondary structure. In contrast, substitutions at Asp-20, Glu-24, Leu-75, or Glu-77 caused a severe slowing in the rate of MBP export but did not disrupt SecB.preMBP complex formation. These largely acidic residues may function to regulate the opening of a preprotein binding site, allowing both high affinity preprotein binding and rapid dissociation of SecB.preprotein complexes at the membrane translocation site.

摘要

大肠杆菌SecB蛋白可结合新合成的前体麦芽糖结合蛋白(preMBP),并促进其从细胞质中快速输出。对SecB的两个区域进行了定点诱变,以更好地了解影响SecB与preMBP相互作用的因素。分析了30个氨酰基取代突变体,揭示了两类不同的secB突变体。在交替位置苯丙氨酸-74、半胱氨酸-76、缬氨酸-78或谷氨酰胺-80处的取代降低了SecB与preMBP形成稳定复合物的能力,但仅在活细胞中MBP输出速率方面造成轻微缺陷。这类突变体所揭示的模式表明,preMBP的主要结合位点是疏水的,并且含有β-折叠二级结构。相比之下,天冬氨酸-20、谷氨酸-24、亮氨酸-75或谷氨酸-77处的取代导致MBP输出速率严重减慢,但并未破坏SecB与preMBP复合物的形成。这些主要为酸性的残基可能起到调节前体蛋白结合位点开放的作用,使得前体蛋白既能进行高亲和力结合,又能在膜易位位点快速解离SecB-前体蛋白复合物。

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