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许多不同的 NusG 蛋白结构域在 α-螺旋和 β-折叠之间转换。

Many dissimilar NusG protein domains switch between α-helix and β-sheet folds.

机构信息

National Library of Medicine, National Center for Biotechnology Information, National Institutes of Health, Bethesda, MD, 20894, USA.

National Heart, Lung, and Blood Institute, Biochemistry and Biophysics Center, National Institutes of Health, Bethesda, MD, 20892, USA.

出版信息

Nat Commun. 2022 Jul 1;13(1):3802. doi: 10.1038/s41467-022-31532-9.

Abstract

Folded proteins are assumed to be built upon fixed scaffolds of secondary structure, α-helices and β-sheets. Experimentally determined structures of >58,000 non-redundant proteins support this assumption, though it has recently been challenged by ~100 fold-switching proteins. Though ostensibly rare, these proteins raise the question of how many uncharacterized proteins have shapeshifting-rather than fixed-secondary structures. Here, we use a comparative sequence-based approach to predict fold switching in the universally conserved NusG transcription factor family, one member of which has a 50-residue regulatory subunit experimentally shown to switch between α-helical and β-sheet folds. Our approach predicts that 24% of sequences in this family undergo similar α-helix ⇌ β-sheet transitions. While these predictions cannot be reproduced by other state-of-the-art computational methods, they are confirmed by circular dichroism and nuclear magnetic resonance spectroscopy for 10 out of 10 sequence-diverse variants. This work suggests that fold switching may be a pervasive mechanism of transcriptional regulation in all kingdoms of life.

摘要

折叠蛋白被认为是基于固定的二级结构、α-螺旋和β-折叠支架构建的。超过 58000 个非冗余蛋白质的实验确定结构支持了这一假设,尽管最近有约 100 种折叠转换蛋白对此提出了挑战。尽管这些蛋白质表面上很少见,但它们提出了一个问题,即有多少未被描述的蛋白质具有形状变化而不是固定的二级结构。在这里,我们使用基于比较序列的方法来预测普遍保守的 NusG 转录因子家族中的折叠转换,该家族的一个成员具有 50 个残基的调节亚基,实验证明其在α-螺旋和β-折叠之间发生折叠转换。我们的方法预测,该家族中有 24%的序列会发生类似的α-螺旋 ⇌ β-折叠转变。虽然这些预测不能被其他最先进的计算方法所重现,但对于 10 个序列多样化的变体中的 10 个,通过圆二色性和核磁共振波谱法得到了证实。这项工作表明,折叠转换可能是所有生命领域转录调控的一种普遍机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09b6/9249878/ab3169ed12f9/41467_2022_31532_Fig1_HTML.jpg

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