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Identification and computationally-based structural interpretation of naturally occurring variants of human protein C.

机译:人类蛋白C天然变异体的鉴定和基于计算的结构解释。

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摘要

Protein C (PC) is a key regulator of blood clotting and inflammation. Its inherited deficiency is associated with venous thromboembolism, and recombinant activated PC is currently used to increase survival in severe sepsis. The molecular basis of inherited PC deficiency is heterogeneous. Due to its multiple physiologic interactions and functions, and its modular structure, natural variants aid in the understanding of the relationship between critical residues and discrete functions. This knowledge has important therapeutic implications in the planning of a recombinant activated PC with a specific therapeutic target and devoid of major collateral effects. A way of predicting important functional consequences of residue variation is the use of molecular modeling and structural interpretation of amino acidic substitutions. A study of 21 out of 32 identified PC gene (PROC) variants is presented. For three of them, localized in the active site, electrostatic potential variation was calculated. For more thanhalf of the studied variants, an explanation for the functional impairment could be derived from computational analysis, allowing a focused choice of which variants it is worthwhile pursuing.
机译:蛋白C(PC)是血液凝固和炎症的关键调节剂。其遗传性缺陷与静脉血栓栓塞有关,重组激活的PC目前用于增加严重脓毒症的生存率。遗传性PC缺乏症的分子基础是异质的。由于其多种生理相互作用和功能,以及其模块化的结构,自然变体有助于理解关键残基和离散功能之间的关系。该知识在规划具有特定治疗目标且无主要附带作用的重组活化PC方面具有重要的治疗意义。预测残基变异的重要功能后果的一种方法是使用分子模型和氨基酸取代的结构解释。提出了对32个已识别的PC基因(PROC)变体中的21个的研究。对于其中三个位于活动部位的静电位,计算得出。对于超过一半的研究变体,可以从计算分析中得出功能受损的解释,从而可以集中选择值得追求的变体。

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