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Structure-function-folding relationships and native energy landscape of dynein light chain protein: nuclear magnetic resonance insights

机译:达因轻链蛋白的结构-功能-折叠关系和天然能态:核磁共振的见解

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The detailed characterization of the structure, dynamics and folding process of a protein is crucial for understanding the biological functions it performs. Modern biophysical and nuclear magnetic resonance (NMR) techniques have provided a way to obtain accurate structural and thermodynamic information on various species populated on the energy landscape of a given protein. In this context, we review here the structure-function-folding relationship of an important protein, namely, dynein light chain protein (DLC8). DLC8, the smallest subunit of the dynein motor complex, acts as a cargo adaptor. The protein exists as a dimer under physiological conditions and dissociates into a pure monomer below pH 4. Cargo binding occurs at the dimer interface. Dimer stability and relay of perturbations through the dimer interface are anticipated to be playing crucial roles in the variety of functions the protein performs. NMR investigations have provided great insights into these aspects of DLC8 in recent years.
机译:蛋白质的结构,动力学和折叠过程的详细表征对于理解其执行的生物学功能至关重要。现代生物物理和核磁共振(NMR)技术提供了一种获取有关在给定蛋白质的能量格局上分布的各种物种的准确结构和热力学信息的方法。在这种情况下,我们在这里回顾一种重要蛋白质,即动力蛋白轻链蛋白(DLC8)的结构-功能-折叠关系。 DLC8是动力蛋白复合物中最小的亚基,可作为货物适配器。该蛋白质在生理条件下以二聚体形式存在,并在pH 4以下分解为纯单体。货物结合发生在二聚体界面处。预计二聚体稳定性和通过二聚体界面的干扰在蛋白质执行的各种功能中起着至关重要的作用。近年来,NMR研究为DLC8的这些方面提供了深刻的见识。

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