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Towards developing principles of protein folding and dynamics in the cell

机译:发展细胞蛋白质折叠和动力学原理

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Proteins must fold and function in the immensely complex environment of a cell, i.e. the cytoplasm-this is far from the ideal test-tube setting of a dilute solution. Here we review the advances in protein folding and dynamics inside the cell. In developing principles of protein behavior in vivo, we also begin to understand the organization and dynamics of the cytoplasm, unifying the single protein scale with the many-protein architectures at the subcellular scale. Our group has significantly contributed to this frontier by characterizing the effect of macro molecular crowding on the distribution of protein conformations. Additionally, we provide a personal perspective on becoming a theoretical biological physicist in the era of interdisciplinary research that has been greatly influenced by Dr Kamal Shukla. We also share our view on the future direction of protein folding inside a cell.
机译:蛋白质必须在细胞的完全复杂的环境中折叠和起作用,即细胞质 - 这远离稀释溶液的理想试管设置。 在这里,我们审查了细胞内蛋白质折叠和动力学的进展。 在制定体内蛋白质行为原理方面,我们还开始了解细胞质的组织和动态,使单一蛋白质规模统一亚细胞规模的许多蛋白质。 本集团通过表征宏观分子挤压对蛋白质构象分布的影响,对该边界有了显着的贡献。 此外,我们还提供了个人视角,即成为跨学科研究时代的理论生物物理学,这受到Kamal Shukla博士的影响。 我们还在细胞内未来的蛋白质方向分享我们的观点。

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