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通过氢-氘交换分析角蛋白K8和K18的不同分子组装复合物。

Analysis of distinct molecular assembly complexes of keratin K8 and K18 by hydrogen-deuterium exchange.

作者信息

Premchandar Aiswarya, Kupniewska Anna, Tarnowski Krzysztof, Mücke Norbert, Mauermann Monika, Kaus-Drobek Magdalena, Edelman Aleksander, Herrmann Harald, Dadlez Michał

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawińskiego 5A, 02-106 Warsaw, Poland.

Biophysics of Macromolecules, German Cancer Research Center (DKFZ), Im Neuenheimer Feld 280, D-69120 Heidelberg, Germany.

出版信息

J Struct Biol. 2015 Dec;192(3):426-440. doi: 10.1016/j.jsb.2015.10.001. Epub 2015 Oct 3.

Abstract

Keratins are intermediate filament (IF) proteins that form complex filament systems in epithelial cells, thus serving as scaffolding elements and mechanical stress absorbers. The building blocks of keratin IFs are parallel coiled-coil dimers of two distinct sequence-related proteins distinguished as type I and type II keratins. To gain more insight into their structural dynamics, we resorted to hydrogen-deuterium exchange mass spectrometry of keratins K8 and K18, which are characteristic for simple epithelial cells. Using this powerful technique not employed with IFs before, we mapped patterns of protected versus unprotected regions in keratin complexes at various assembly levels. In particular, we localized protein segments exhibiting different hydrogen exchange patterns in tetramers versus filaments. We observed a general pattern of precisely positioned regions of stability intertwining with flexible regions, mostly represented by the non-α-helical segments. Notably, some regions within the coiled-coil domains are significantly more dynamic than others, while the IF-consensus motifs at the end domains of the central α-helical "rod" segment, which mediate the "head-to-tail" dimer-dimer interaction in the filament elongation process, become distinctly more protected upon formation of filaments. Moreover, to gain more insight into the dynamics of the individual keratins, we investigated the properties of homomeric preparations of K8 and K18. The physiological importance of keratins without a partner is encountered in both pathological and experimental situations when one of the two species is present in robust excess or completely absent, such as in gene-targeted mice.

摘要

角蛋白是中间丝(IF)蛋白,在上皮细胞中形成复杂的丝系统,因此充当支架元件和机械应力吸收器。角蛋白中间丝的构建块是由两种不同的序列相关蛋白形成的平行卷曲螺旋二聚体,分别被区分为I型和II型角蛋白。为了更深入了解它们的结构动力学,我们采用了角蛋白K8和K18的氢-氘交换质谱法,这两种角蛋白是简单上皮细胞的特征性蛋白。使用这种以前未用于中间丝的强大技术,我们绘制了不同组装水平下角蛋白复合物中受保护区域与未受保护区域的图谱。特别是,我们定位了在四聚体与丝状体中表现出不同氢交换模式的蛋白质片段。我们观察到一种普遍模式,即精确定位的稳定区域与灵活区域相互交织,灵活区域大多由非α螺旋片段代表。值得注意的是,卷曲螺旋结构域内的一些区域比其他区域明显更具动态性,而中央α螺旋“杆”段末端结构域的中间丝一致基序,在丝状体伸长过程中介导“头对尾”二聚体-二聚体相互作用,在丝状体形成后变得明显更受保护。此外,为了更深入了解单个角蛋白的动力学,我们研究了K8和K18同聚体制剂的性质。当两种角蛋白中的一种大量过量存在或完全不存在时,如在基因靶向小鼠中,在病理和实验情况下都会遇到没有伴侣的角蛋白的生理重要性。

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