首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >The Mycobacterium tuberculosis small heat shock protein Hsp16.3 exposes hydrophobic surfaces at mild conditions: conformational flexibility and molecular chaperone activity.
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The Mycobacterium tuberculosis small heat shock protein Hsp16.3 exposes hydrophobic surfaces at mild conditions: conformational flexibility and molecular chaperone activity.

机译:结核分枝杆菌小热激蛋白Hsp16.3在温和条件下暴露疏水表面:构象柔韧性和分子伴侣活性。

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摘要

Hsp16.3, the alpha-crystallin-related small heat shock protein of Mycobacterium tuberculosis that is maximally expressed during the stationary phase and is a major membrane protein, has been reported to form specific trimer-of-trimers structure and to act as an effective molecular chaperone (Chang Z et al., 1996, J. Biol Chem 271:7218-7223). However, little is known about its action mechanism. In this study, Hsp16.3 conformational intermediates with dramatically increased chaperone activities were detected after treatment with very low concentrations of guanidine hydrochloride (0.05 M), urea (0.3 M), or mild heating (30 degrees C). The intermediates showed a significant increase in their capacity to bind the hydrophobic probe 1-anilino-8-naphthalene sulfonate (ANS), indicating an increased exposure of hydrophobic surfaces. Interestingly, the greatest chaperone activities of Hsp16.3 were observed in the presence of 0.3 M guanidine HCl or when heated to 35 degrees C. CD spectroscopy studies revealed no significant changes in protein secondary and tertiary structures at these mild treatments. Our in vitro studies also indicate that long-time-heated Hsp16.3, heated even to temperatures as high as 85 degrees C, has almost the same, if not a slightly greater, chaperone activities as the native protein when cooled to room temperature and its secondary structures also almost recovered. Together, these results suggest that Hsp16.3 modulates its chaperone activity by exposing hydrophobic surfaces and that the protein structure is highly stable and flexible, thus highly adapted for its function.
机译:据报道,Hsp16.3是结核分枝杆菌的α-结晶蛋白相关的小热休克蛋白,在静止期最大表达,是一种主要的膜蛋白,已形成特定的三聚体结构,并起着有效的作用。分子伴侣(Chang Z et al。,1996,J.Biol Chem 271:7218-7223)。但是,对其作用机理知之甚少。在这项研究中,在用非常低浓度的盐酸胍(0.05 M),尿素(0.3 M)或温和加热(30摄氏度)处理后,检测到具有显着增加的伴侣活性的Hsp16.3构象中间体。中间体结合疏水探针1-苯胺基-8-萘磺酸盐(ANS)的能力显着提高,表明疏水表面的暴露增加。有趣的是,在存在0.3 M盐酸胍或加热至35摄氏度时,观察到Hsp16.3的最大分子伴侣活性。CD光谱研究表明,在这些温和处理下,蛋白质二级和三级结构没有明显变化。我们的体外研究还表明,长时间加热的Hsp16.3(即使加热到高达85摄氏度的温度)在冷却到室温和它的二级结构也几乎恢复了。总之,这些结果表明,Hsp16.3通过暴露疏水表面来调节其分子伴侣活性,并且蛋白质结构高度稳定和灵活,因此高度适应其功能。

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