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阐明人碳酸酐酶 IX 在尿素诱导的去折叠途径中的稳定中间态。

Elucidation of stable intermediates in urea-induced unfolding pathway of human carbonic anhydrase IX.

机构信息

a School of Computational and Integrative Sciences , Jawaharlal Nehru University , New Delhi 110067 , India.

出版信息

J Biomol Struct Dyn. 2018 Jul;36(9):2391-2406. doi: 10.1080/07391102.2017.1355847. Epub 2017 Jul 28.

Abstract

Human carbonic anhydrase IX (CAIX) has evolved as a promising biomarker for cancer prognosis, due to its overexpression in various cancers and restricted expression in normal tissue. However, limited information is available on its biophysical behavior. The unfolding of CAIX in aqueous urea solution was studied using all-atom molecular dynamics simulation approach. The results of this study revealed a stable intermediate state along the unfolding pathway of CAIX. At intermediate concentrations of urea (2.0-4.0 M), the protein displays a native-like structure with a large population of its secondary structure and hydrophobic contacts remaining intact in addition to small confined overall motions. Beyond 4.0 M urea, the unfolding is more gradual and at 8.0 M urea the structure is largely collapsed due to the solvent effect. The hydrophobic contact analysis suggests that the contact in terminal α-helices is separated initially which propagates in the loss of contacts from centrally located β-sheets. The reduction of 60-65% tertiary contacts in 7.0-8.0 M urea suggested the presence of residual structure in unfolded state and is confirmed with structural snap shot. Free energy landscape analysis suggested that unfolding of CAIX exists through the different intermediate states.

摘要

人碳酸酐酶 IX(CAIX)作为癌症预后的有前途的生物标志物而进化,因为它在各种癌症中过表达,而在正常组织中受到限制。然而,关于其生物物理行为的信息有限。本研究使用全原子分子动力学模拟方法研究了 CAIX 在水性脲溶液中的展开情况。该研究的结果揭示了沿 CAIX 展开途径的稳定中间状态。在脲的中间浓度(2.0-4.0 M)下,该蛋白质显示出类似于天然的结构,其二级结构的大部分和疏水性接触仍然完整,除了小的受限整体运动外。在 4.0 M 以上的脲中,展开更加渐进,在 8.0 M 脲中,由于溶剂的影响,结构大部分崩溃。疏水性接触分析表明,最初分离末端α-螺旋中的接触,然后从中心位置的β-片层中失去接触。在 7.0-8.0 M 脲中,三级接触减少了 60-65%,这表明在展开状态下存在残余结构,并通过结构快照得到证实。自由能景观分析表明,CAIX 的展开存在不同的中间状态。

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