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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Crystal structure of calcium-independent subtilisin BPN' with restored thermal stability folded without the prodomain.
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Crystal structure of calcium-independent subtilisin BPN' with restored thermal stability folded without the prodomain.

机译:具有恢复的热稳定性的不依赖钙的枯草杆菌蛋白酶BPN'的晶体结构折叠而没有前域。

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摘要

The three-dimensional structure of a subtilisin BPN' construct that was produced and folded without its prodomain shows the tertiary structure is nearly identical to the wild-type enzyme and not a folding intermediate. The subtilisin BPN' variant, Sbt70, was cloned and expressed in Escherichia coli without the prodomain, the 77-residue N-terminal domain that catalyzes the folding of the enzyme into its native tertiary structure. Sbt70 has the high-affinity calcium-binding loop, residues 75 to 83, deleted. Such calcium-independent forms of subtilisin BPN' refold independently while retaining high levels of activity [Bryan et al., Biochemistry, 31:4937-4945, 1992]. Sbt70 has, in addition, seven stabilizing mutations, K43N, M50F, A73L, Q206V, Y217K, N218S, Q271E, and the active site serine has been replaced with alanine to prevent autolysis. The purified Sbt70 folded spontaneously without the prodomain and crystallized at room temperature. Crystals of Sbt70 belong to space group P2(1)2(1)2(1) with unit cell parameters a = 53.5 A, b = 60.3 A, and c = 83.4 A. Comparison of the refined structure with other high-resolution structures of subtilisin BPN' establishes that the conformation of Sbt70 is essentially the same as that previously determined for other calcium-independent forms and that of other wild-type subtilisin BPN' structures, all folded in the presence of the prodomain. These findings confirm the results of previous solution studies that showed subtilisin BPN' can be refolded into a native conformation without the presence of the prodomain [Bryan et al., Biochemistry 31:4937-4945, 1992]. The structure analysis also provides the first descriptions of four stabilizing mutations, K43N, A73L, Q206V, and Q271E, and provides details of the interaction between the enzyme and the Ala-Leu-Ala-Leu tetrapeptide found in the active-site cleft.
机译:产生并折叠没有其前结构域的枯草杆菌蛋白酶BPN'构建体的三维结构显示该三级结构与野生型酶几乎相同,而不是折叠中间体。枯草杆菌蛋白酶BPN'变体Sbt70被克隆并在大肠杆菌中表达而没有前结构域,前结构域是77个残基的N末端结构域,可催化酶折叠成其天然三级结构。 Sbt70具有高亲和力的钙结合环,缺失了75至83位残基。这种钙依赖性形式的枯草杆菌蛋白酶BPN'独立地重折叠,同时保持高水平的活性[Bryan等人,Biochemistry,31:4937-4945,1992]。此外,Sbt70具有七个稳定突变,K43N,M50F,A73L,Q206V,Y217K,N218S,Q271E,并且将活性位点丝氨酸替换为丙氨酸以防止自溶。纯化的Sbt70自发折叠而没有前域,并在室温下结晶。 Sbt70晶体属于空间群P2(1)2(1)2(1),单位像元参数为a = 53.5 A,b = 60.3 A和c = 83.4A。精制结构与其他高分辨率结构的比较枯草杆菌蛋白酶BPN'的构象确定Sbt70的构象与先前针对其他钙非依赖性形式和其他野生型枯草杆菌蛋白酶BPN'结构所确定的构象基本相同,均在前结构域存在下折叠。这些发现证实了先前溶液研究的结果,该研究表明枯草杆菌蛋白酶BPN'可以重折叠成天然构象而不存在前结构域[Bryan等人,Biochemistry 31:4937-4945,1992]。结构分析还提供了四个稳定突变K43N,A73L,Q206V和Q271E的第一个描述,并提供了酶与活性位点裂口中的Ala-Leu-Ala-Leu四肽之间相互作用的详细信息。

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