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小麦胚凝集素同工凝集素2的一级结构。从X射线结构推导的肽顺序。

Primary structure of wheat germ agglutinin isolectin 2. Peptide order deduced from X-ray structure.

作者信息

Wright C S, Gavilanes F, Peterson D L

出版信息

Biochemistry. 1984 Jan 17;23(2):280-7. doi: 10.1021/bi00297a017.

Abstract

The complete amino acid sequence of wheat germ agglutinin isolectin 2 has been determined by the method of sequential Edman degradation and with the aid of the three-dimensional structure known from X-ray crystallography. Peptides ranging from 2 to 18 residues in length were obtained by thermolysin digestion of the S-carboxymethylated protein and purified by gel filtration and high-performance liquid chromatography. The peptide order was established primarily by matching (carboxymethyl)cysteines with the clearly defined half-cystine positions in the X-ray structure, thereby satisfying the disulfide repeat pattern observed in all four isostructural domains (A, B, C, and D) of wheat germ agglutinin, and by examination of amino acid compositions and terminal sequences of ten tryptic peptides. The unique assignment of peptides to these domains was consistent with all invariant half-cystines and glycines, as well as the single tryptophan, the two closely spaced histidines, and a number of other residues clearly identified in the X-ray structure analysis. Discrepancies between the chemical and X-ray sequences lie exclusively in poorly defined regions of the electron density map, at the N- and C-termini, and at the first intercystine loop of each domain. The latter loop was found to be eight instead of six residues in length, thus extending the size of domains A, B, and C from 41 to 43 residues and that of domain D to 42 residues. Regions of extensive interdomain homology, in addition to that of the half-cystines, are clustered at the central portion of each domain fold and are likely to be important for the integrity of the three-dimensional structure of the dimer molecule.

摘要

通过连续的埃德曼降解法并借助X射线晶体学已知的三维结构,已确定了麦胚凝集素同工凝集素2的完整氨基酸序列。通过嗜热菌蛋白酶消化S-羧甲基化蛋白获得长度为2至18个残基的肽,并通过凝胶过滤和高效液相色谱法进行纯化。肽的顺序主要通过将(羧甲基)半胱氨酸与X射线结构中明确定义的半胱氨酸位置相匹配来确定,从而符合在麦胚凝集素的所有四个同构结构域(A、B、C和D)中观察到的二硫键重复模式,并通过检查十个胰蛋白酶肽的氨基酸组成和末端序列来确定。肽在这些结构域中的独特分配与所有不变的半胱氨酸和甘氨酸以及单个色氨酸、两个紧密间隔的组氨酸以及在X射线结构分析中明确鉴定的许多其他残基一致。化学序列和X射线序列之间的差异仅存在于电子密度图定义不明确的区域、N端和C端以及每个结构域的第一个胱氨酸间环处。发现后者的环长度为八个而不是六个残基,从而使结构域A、B和C的大小从41个残基扩展到43个残基,结构域D的大小扩展到42个残基。除了半胱氨酸区域外,广泛的结构域间同源区域聚集在每个结构域折叠的中心部分,可能对二聚体分子三维结构的完整性很重要。

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