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叶绿体定位的小热激蛋白Hsp21与模型底物柠檬酸合酶的化学交联。

Chemical cross-linking of the chloroplast localized small heat-shock protein, Hsp21, and the model substrate citrate synthase.

作者信息

Ahrman Emma, Lambert Wietske, Aquilina J Andrew, Robinson Carol V, Emanuelsson Cecilia Sundby

机构信息

Department of Biochemistry, Lund University, Sweden.

出版信息

Protein Sci. 2007 Jul;16(7):1464-78. doi: 10.1110/ps.072831607. Epub 2007 Jun 13.

Abstract

The molecular mechanism whereby the small heat-shock protein (sHsp) chaperones interact with and prevent aggregation of other proteins is not fully understood. We have characterized the sHsp-substrate protein interaction at normal and increased temperatures utilizing a model substrate protein, citrate synthase (CS), widely used in chaperone assays, and a dodecameric plant sHsp, Hsp21, by chemical cross-linking with 3,3'-Dithiobis[sulfosuccinimidylpropionate] (DTSSP) and mass spectrometric peptide mapping. In the absence of CS, the cross-linker captured Hsp21 in dodecameric form, even at increased temperature (47 degrees C). In the presence of equimolar amounts of CS, no Hsp21 dodecamer was captured, indicating a substrate-induced Hsp21 dodecamer dissociation by equimolar amounts of CS. Cross-linked Hsp21-Hsp21 dipeptides indicated an exposure of the Hsp21 C-terminal tails and substrate-binding sites normally covered by the C terminus. Cross-linked Hsp21-CS dipeptides mapped to several sites on the surface of the CS dimer, indicating that there are numerous weak and short-lived interactions between Hsp21 and CS, even at normal temperatures. The N-terminal arms especially interacted with a motif in the CS dimer, which is absent in thermostable forms of CS. The cross-linking data suggest that the presence of substrate rather than temperature influences the conformation of Hsp21.

摘要

小分子热休克蛋白(sHsp)伴侣蛋白与其他蛋白质相互作用并防止其聚集的分子机制尚未完全明确。我们利用一种常用于伴侣蛋白分析的模型底物蛋白柠檬酸合酶(CS)和一种十二聚体植物sHsp即Hsp21,通过与3,3'-二硫代双(磺基琥珀酰亚胺丙酸酯)(DTSSP)进行化学交联和质谱肽图谱分析,对正常温度和升高温度下sHsp与底物蛋白的相互作用进行了表征。在没有CS的情况下,即使在升高温度(47摄氏度)时,交联剂也能捕获十二聚体形式的Hsp21。在等摩尔量的CS存在下,未捕获到Hsp21十二聚体,这表明等摩尔量的CS可诱导底物导致Hsp21十二聚体解离。交联的Hsp21-Hsp21二肽表明Hsp21 C末端尾巴和通常被C末端覆盖的底物结合位点暴露出来。交联的Hsp21-CS二肽定位到CS二聚体表面的几个位点,这表明即使在正常温度下,Hsp21与CS之间也存在许多微弱且短暂的相互作用。N末端臂尤其与CS二聚体中的一个基序相互作用,而该基序在CS的耐热形式中不存在。交联数据表明底物的存在而非温度影响Hsp21的构象。

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