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A tightly packed hydrophobic cluster directs the formation of an off-pathway sub-millisecond folding intermediate in the alpha subunit of tryptophan synthase, a TIM barrel protein

机译:紧密堆积的疏水簇指导在色氨酸合成酶的α亚基中形成非通路亚毫秒折叠中间体,TIm桶蛋白

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摘要

Protein misfolding is now recognized as playing a crucial role in both normal and pathogenic folding reactions. An interesting example of misfolding at the earliest state of a natural folding reaction is provided by the alpha-subunit of tryptophan synthase, a (beta/alpha)(8) TIM barrel protein. The molecular basis for the formation of this off-pathway misfolded intermediate, I(BP), and a subsequent on-pathway intermediate, I1, was probed by mutational analysis of 20 branched aliphatic side-chains distributed throughout the sequence. The elimination of I(BP) and the substantial destabilization of I1 by replacement of a selective set of the isoleucine, leucine or valine residues (ILV) with alanine in a large ILV cluster external-to-the-barrel and spanning the N and C termini (cluster 2) implies tight-packing at most sites in both intermediates. Differential effects on I(BP) and I1 for replacements in alpha3, beta4 and alpha8 at the boundaries of cluster 2 suggest that their incorporation into I1 but not I(BP) reflects non-native folds at the edges of the crucial (beta/alpha)(1-2)beta(3) core in I(BP). The retention of I(BP) and the smaller and consistent destabilization of both I(BP) and I1 by similar replacements in an internal-to-the-barrel ILV cluster (cluster 1) and a second external-to-the-barrel ILV cluster (cluster 3) imply molten globule-like packing. The tight packing inferred, in part, for I(BP) or for all of I1 in cluster 2, but not in clusters 1 and 3, may reflect the larger size of cluster 2 and/or the enhanced number of isoleucine, leucine and valine self-contacts in and between contiguous elements of secondary structure. Tightly packed ILV-dominated hydrophobic clusters could serve as an important driving force for the earliest events in the folding and misfolding of the TIM barrel and other members of the (beta/alpha)(n) class of proteins.
机译:现在公认蛋白质错误折叠在正常和致病性折叠反应中都起着至关重要的作用。色氨酸合酶的α-亚基(一种β/α(8)TIM桶状蛋白)提供了一个自然折叠反应最早阶段错误折叠的有趣例子。通过对分布在整个序列中的20条支链脂肪族侧链进行突变分析,探究了形成这种错配路径的错误折叠中间体I(BP)和随后的错配路径的中间体I1的分子基础。在桶外的大型ILV簇中,通过丙氨酸替代一组选择性的异亮氨酸,亮氨酸或缬氨酸残基(ILV),消除I(BP)并显着破坏I1,跨越N和C总站(第2组)意味着两种中间体的大多数位点都紧密堆积。对I(BP)和I1的不同影响,用于替换簇2边界处的alpha3,beta4和alpha8,这表明它们并入I1但不包含I(BP)反映了关键分子(beta / alpha)的非天然折叠I(BP)中的)(1-2)beta(3)核心。 I(BP)的保留以及I(BP)和I1的较小且一致的去稳定化,这是通过在内部到桶的ILV群集(群集1)和第二外部到桶的ILV群集中进行的类似替换来实现的团簇(团簇3)意味着熔融的球状填料。部分推断I(BP)或群集2中所有I1而不是群集1和3中的I1的紧密堆积可能反映了群集2的较大尺寸和/或异亮氨酸,亮氨酸和缬氨酸数量的增加二级结构的相邻元素之间和之间的自接触。紧密堆积的ILV为主的疏水簇可以作为TIM桶和其他(beta / alpha)(n)类蛋白质成员折叠和错误折叠中最早事件的重要驱动力。

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