A small molecule causes a population shift in the conformational landscape of an intrinsically disordered protein

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机构
[1] [1,Ban, David
[2] 1,Iconaru, Luigi I.
[3] Ramanathan, Arvind
[4] Zuo, Jian
[5] 1,Kriwacki, Richard W.
来源
Ban, David (david.ban@louisville.edu) | 1600年 / American Chemical Society卷 / 139期
基金
美国国家卫生研究院;
关键词
Amplitude information - Biological process - Conformational fluctuations - Conformational state - Hydrophobic interactions - Intrinsically disordered proteins - Nuclear magnetic resonance(NMR) - Relaxation dispersion;
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摘要
Intrinsically disordered proteins (IDPs) have roles in myriad biological processes and numerous human diseases. However, kinetic and amplitude information regarding their ground-state conformational fluctuations has remained elusive. We demonstrate using nuclear magnetic resonance (NMR)-based relaxation dispersion that the D2 domain of p27Kip1, a prototypical IDP, samples multiple discrete, rapidly exchanging conformational states. By combining NMR with mutagenesis and smallangle X-ray scattering (SAXS), we show that these states involve aromatic residue clustering through long-range hydrophobic interactions. Theoretical studies have proposed that small molecules bind promiscuously to IDPs, causing expansion of their conformational landscapes. However, on the basis of previous NMR-based screening results, we show here that compound binding only shifts the populations of states that existed within the ground state of apo p27-D2 without changing the barriers between states. Our results provide atomic resolution insight into how a small molecule binds an IDP and emphasize the need to examine motions on the low microsecond time scale when probing these types of interactions. © 2017 American Chemical Society.
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