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首页> 外文期刊>Crystal growth & design >Crystal Growth Procedure of HIV-1 Protease-Inhibitor KNI-272 Complex for Neutron Structural Analysis at 1.9 ? Resolution
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Crystal Growth Procedure of HIV-1 Protease-Inhibitor KNI-272 Complex for Neutron Structural Analysis at 1.9 ? Resolution

机译:用于中子结构分析的HIV-1蛋白酶抑制剂KNI-272复合物的晶体生长程序(1.9℃)解析度

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Neutron protein crystallography is advantageous in determining protonation states of target proteins to provide a more precise understanding of the enzymatic mechanism and accurate structure-based drug design. However, a major obstacle is the growth of large protein crystals needed to compensate for the weak flux of the available neutron beam. Here, we report crystal growth of human immunodeficiency virus 1 protease (HIV PR) in a complex with its inhibitor KNI-272 by six different methods. Comparative analysis indicates that top-seeded solution growth (TSSG) and TSSG combined with the floating and stirring technique (TSSG-FAST) are efficient strategies for rapidly obtaining large single crystals and effectively preventing polycrystallization of the seed crystal. Neutron diffraction analysis confirmed that the crystal obtained by TSSG is a high-quality single crystal. Furthermore, crystal shape was observed to be influenced by solution flow, suggesting that the degree of supersaturation significantly affects the crystal growth direction of HIV PR complex. This finding implies that the shape of the HIV PR complex crystal might be controlled by the solution flow rate.
机译:中子蛋白晶体学在确定靶蛋白的质子化状态方面是有利的,以提供对酶促机理的更精确的理解和基于结构的准确药物设计。然而,一个主要的障碍是为了补偿可用中子束的弱通量而需要的大蛋白质晶体的生长。在这里,我们通过六种不同方法报告了人类免疫缺陷病毒1蛋白酶(HIV PR)与抑制剂KNI-272的复合晶体生长。对比分析表明,顶种子溶液生长(TSSG)和TSSG与浮动和搅拌技术(TSSG-FAST)相结合是快速获得大型单晶并有效防止籽晶多晶化的有效策略。中子衍射分析证实由TSSG获得的晶体是高质量的单晶。此外,观察到晶体形状受溶液流动的影响,表明过饱和度显着影响HIV PR复合物的晶体生长方向。该发现暗示HIV PR复合物晶体的形状可能由溶液流速控制。

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