Pauwels Kris, Van Molle Inge, Tommassen Jan, Van Gelder Patrick
Department of Molecular and Cellular Interactions, VIB and Department of Ultrastructure, Free University Brussels, Brussels, Belgium.
Mol Microbiol. 2007 May;64(4):917-22. doi: 10.1111/j.1365-2958.2007.05718.x.
Some proteins are so much resistant to proteolysis and unfolding that they violate folding rules shared by the vast majority of proteins. These unusual proteins manage to fold into an active native conformation that is thermodynamically at best marginally, but often even less stable than the unfolded state. A huge energetic barrier traps these proteins kinetically in the folded state. The drawback of this situation is the need for a specialized chaperone that adds steric information to the proteins to cross this barrier on the folding pathway. Until now, our knowledge of these intriguing chaperones was restricted to the prodomains of secreted proteases, which function intramolecularly. Recent research has added more examples, which now include the membrane-anchored lipase-specific foldase and the pilus subunit specific chaperone, both acting intermolecularly. The case of the pilin chaperone is somewhat deviant in that steric information is definitely provided, but the pilus subunit adopts a thermodynamically favourable stable conformation.
一些蛋白质对蛋白水解和去折叠具有很强的抗性,以至于它们违背了绝大多数蛋白质共有的折叠规则。这些特殊的蛋白质设法折叠成一种有活性的天然构象,这种构象在热力学上充其量只是勉强稳定,而且通常甚至比未折叠状态更不稳定。一个巨大的能量屏障在动力学上使这些蛋白质被困在折叠状态。这种情况的缺点是需要一种特殊的伴侣蛋白,它能在蛋白质的折叠途径中为其添加空间信息以跨越这一屏障。到目前为止,我们对这些有趣的伴侣蛋白的了解仅限于分泌型蛋白酶的前结构域,它们在分子内发挥作用。最近的研究增加了更多的例子,现在包括膜锚定的脂肪酶特异性折叠酶和菌毛亚基特异性伴侣蛋白,它们都在分子间发挥作用。菌毛蛋白伴侣蛋白的情况有些不同,因为确实提供了空间信息,但菌毛亚基采用了热力学上有利的稳定构象。