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Human Topoisomerase I C-Terminal Domain Fragment Containing the Active Site Tyrosine is a Molten Globule: Implication for the Formation of Competent Productive Complex

机译:包含活性位点酪氨酸的人类拓扑异构酶I C末端域片段是一个熔融的小球:对生产能力复杂的形成的影响

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摘要

Human topoisomerase I (topo I) is an essential cellular enzyme that relaxes DNA supercoiling. The 6.3 kDa C-terminal domain of topo I contains the active site tyrosine (Tyr723) but lacks enzymatic activity by itself. Activity can be fully reconstituted when the C-terminal is associated with the 56 kDa core domain. Even though several crystal structures of topo I/DNA complexes are available, crystal structures of the free topo I protein or its individual domain fragments have been difficult to obtain. In this report we analyze the human topo I C-terminal domain structure using a variety of biophysical methods. Our results indicate that this fragment protein (topo6.3) appears to be in a molten globule state. It appears to have a native-like tertiary fold that contains a large population of α-helix secondary structure and extensive surface hydrophobic regions. Topo6.3 is known to be readily activated with the association of the topo I core domain, and the molten globule state of topo6.3 is likely to be an energy-favorable conformation for the free topo I C-terminal domain protein. The structural fluctuation and plasticity may represent an efficient mechanism in the topo I functional pathway, where the flexibility aids in the complementary association with the core domain and in the formation of a fully productive topo I complex.
机译:人拓扑异构酶I(拓扑I)是一种必需的细胞酶,可放松DNA超螺旋。拓扑I的6.3 kDa C末端结构域包含活性位点酪氨酸(Tyr723),但本身缺乏酶促活性。当C末端与56 kDa核心结构域关联时,活性可以完全重建。即使可以使用topo I / DNA复合物的几种晶体结构,也很难获得游离topo I蛋白或其单个结构域片段的晶体结构。在本报告中,我们使用多种生物物理方法分析了人类topo I C末端域结构。我们的结果表明该片段蛋白(topo6.3)似乎处于熔融小球状态。它似乎具有天然的三级折叠,其中包含大量的α-螺旋二级结构和广泛的表面疏水区。已知Topo6.3容易被topo I核心域的缔合激活,并且topo6.3的熔融小球状态可能是游离的topo I C末端域蛋白的能量有利构象。结构上的波动和可塑性可能代表了topo I功能途径中的一种有效机制,其中柔韧性有助于与核心结构域的互补结合,并形成了高产的topo I复合物。

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