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鹅型、鸡型和噬菌体型溶菌酶的比较说明了在进化过程中氨基酸序列和三维结构所发生的变化。

Comparison of goose-type, chicken-type, and phage-type lysozymes illustrates the changes that occur in both amino acid sequence and three-dimensional structure during evolution.

作者信息

Weaver L H, Grütter M G, Remington S J, Gray T M, Isaacs N W, Matthews B W

出版信息

J Mol Evol. 1984;21(2):97-111. doi: 10.1007/BF02100084.

Abstract

The three-dimensional structure of goose-type lysozyme (GEWL), determined by x-ray crystallography and refined at high resolution, has similarities to the structures of hen (chicken) egg-white lysozyme (HEWL) and bacteriophage T4 lysozyme (T4L). The nature of the structural correspondence suggests that all three classes of lysozyme diverged from a common evolutionary precursor, even though their amino acid sequences appear to be unrelated (Grütter et al. 1983). In this paper we make detailed comparisons of goose-type, chicken-type, and phage-type lysozymes. The lysozymes have undergone conformational changes at both the global and the local level. As in the globins, there are corresponding alpha-helices that have rigid-body displacements relative to each other, but in some cases corresponding helices have increased or decreased in length, and in other cases there are helices in one structure that have no counterpart in another. Independent of the overall structural correspondence among the three lysozyme backbones is another, distinct correspondence between a set of three consecutive alpha-helices in GEWL and three consecutive alpha-helices in T4L. This structural correspondence could be due, in part, to a common energetically favorable contact between the first and the third helices. There are similarities in the active sites of the three lysozymes, but also one striking difference. Glu 73 (GEWL) spatially corresponds to Glu 35 (HEWL) and to Glu 11 (T4L). On the other hand, there are two aspartates in the GEWL active site, Asp 86 and Asp 97, neither of which corresponds exactly to Asp 52 (HEWL) or Asp 20 (T4L). (The discrepancy in the location of the carboxyl groups is about 10 A for Asp 86 and 4 A for Asp 97.) This lack of structural correspondence may reflect some differences in the mechanisms of action of the three lysozymes. When the amino acid sequences of the three lysozyme types are aligned according to their structural correspondence, there is still no apparent relationship between the sequences except for possible weak matching in the vicinity of the active sites.

摘要

通过X射线晶体学确定并经高分辨率精修的鹅型溶菌酶(GEWL)的三维结构,与鸡卵清溶菌酶(HEWL)和噬菌体T4溶菌酶(T4L)的结构相似。结构对应关系的本质表明,尽管这三类溶菌酶的氨基酸序列看似无关,但它们都从一个共同的进化前体分化而来(格鲁特等人,1983年)。在本文中,我们对鹅型、鸡型和噬菌体型溶菌酶进行了详细比较。这些溶菌酶在整体和局部水平上都发生了构象变化。与珠蛋白一样,存在相互之间有刚体位移的对应α螺旋,但在某些情况下,对应的螺旋长度增加或减少,在其他情况下,一种结构中的螺旋在另一种结构中没有对应物。与三种溶菌酶主链之间的整体结构对应无关的是,GEWL中一组三个连续的α螺旋与T4L中三个连续的α螺旋之间存在另一种明显的对应关系。这种结构对应可能部分归因于第一个和第三个螺旋之间常见的能量有利接触。三种溶菌酶的活性位点存在相似之处,但也有一个显著差异。谷氨酸73(GEWL)在空间上对应于谷氨酸35(HEWL)和谷氨酸11(T4L)。另一方面,GEWL活性位点有两个天冬氨酸,天冬氨酸86和天冬氨酸97,它们都与天冬氨酸52(HEWL)或天冬氨酸20(T4L)不完全对应。(天冬氨酸86羧基位置的差异约为10埃,天冬氨酸97为4埃。)这种结构对应关系的缺乏可能反映了三种溶菌酶作用机制的一些差异。当根据它们的结构对应关系对三种溶菌酶类型的氨基酸序列进行比对时,除了活性位点附近可能存在的弱匹配外,序列之间仍然没有明显的关系。

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