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Surface Acidic Amino Acid of Pseudomonas/Halomonas Chimeric Nucleoside Diphosphate Kinase Leads Effective Recovery from Heat-Denaturation

机译:假单胞菌/ Halomonas嵌合核苷二磷酸激酶的表面酸性氨基酸导致热变性有效回收

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摘要

One of the hallmarks of halophilic properties is reversibility of thermal unfolding. A nucleoside diphosphate kinase (NDK) from a moderate halophile Halomonas sp. 593 (HaNDK) follows this behavior. His-tagged chimeric NDK (HisPaHaNDK) consisting of an N-terminal half of a non-halophilic Pseuodomonas aeruginosa NDK (PaNDK) and a Cterminal half of HaNDK loses this reversible property, indicating a critical role of the N-terminal portion of PaNDK in determining the reversibility of the chimeric protein. Various mutations were introduced at Arg45 and Lys61, based on the model NDK structure. It appears that having Glu at position 45 is critical in conferring the thermal reversibility to HisPa-HaNDK chimeric protein.
机译:嗜盐特性的标志之一是热展开的可逆性。来自中等嗜盐菌Halomonas sp。的核苷二磷酸激酶(NDK)。 593(HaNDK)遵循此行为。他标记的嵌合NDK(HisPaHaNDK)由非嗜盐铜绿假单胞菌NDK(PaNDK)的N末端一半和HaNDK的C末端一半失去了这种可逆的特性,表明PaNDK的N末端部分在确定嵌合蛋白的可逆性。基于模型NDK结构,在Arg45和Lys61处引入了各种突变。似乎在第45位具有Glu对于赋予HisPa-HaNDK嵌合蛋白热可逆性至关重要。

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