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首页> 外文期刊>Journal of Molecular Biology >Stability of a structural scaffold upon activity transfer: X-ray structure of a three fingers chimeric protein.
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Stability of a structural scaffold upon activity transfer: X-ray structure of a three fingers chimeric protein.

机译:活性转移后结构支架的稳定性:三指嵌合蛋白的X射线结构。

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Fasciculin 2 and toxin alpha proteins belong to the same structural family of three-fingered snake toxins. They act on different targets, but in each case the binding region involves residues from loops I and II. The superimposition of the two structures suggests that these functional regions correspond to structurally distinct zones. Loop I, half of loop II and the C-terminal residue of fasciculin 2 were therefore transferred into the toxin alpha. The inhibition constant of the resulting chimera is only 15-fold lower than that of fasciculin 2, and as expected the potency of binding to the toxin alpha target has been lost. In order to understand the structure-function relationship between the chimera and its "parent" molecules, we solved its structure by X-ray crystallography. The protein crystallized in space group P3(1)21 with a=b=58.5 A, and c=62.3 A. The crystal structure was solved by molecular replacement and refined to 2.1 A resolution. The structure belongs to the three-fingered snake toxin family with a core of four disulphide bridges from which emerge the three loops I, II and III. Superimposition of the chimera on fasciculin 2 or toxin alpha revealed an overall fold intermediate between those of the two parent molecules. The regions corresponding to toxin alpha and to fasciculin 2 retained their respective geometries. In addition, the chimera protein displayed a structural behaviour similar to that of fasciculin 2, i.e. dimerization in the crystal structure of fasciculin 2, and the geometry of the region that binds to acetylcholinesterase. In conclusion, this structure shows that the chimera retains the general structural characteristics of three-fingered toxins, and the structural specificity of the transferred function. Copyright 2000 Academic Press.
机译:Fasciculin 2和毒素α蛋白属于三指蛇毒素的相同结构家族。它们作用于不同的靶标,但是在每种情况下,结合区都涉及来自环I和环II的残基。这两个结构的叠加表明这些功能区域对应于结构上不同的区域。因此,将环I,环II的一半和fasciculin 2的C端残基转移到毒素α中。所得嵌合体的抑制常数仅比fasciculin 2低15倍,并且正如所预期的,已经丧失了与毒素α靶标的结合力。为了了解嵌合体及其“母体”分子之间的结构-功能关系,我们通过X射线晶体学解析了其结构。蛋白质在a = b = 58.5 A和c = 62.3 A的空间群P3(1)21中结晶。通过分子置换解决了晶体结构,并将其提纯至2.1 A分辨率。该结构属于三指蛇毒素家族,其核心是四个二硫桥,从中出现三个环I,II和III。嵌合体在fasciculin 2或毒素α上的叠加显示出两个亲本分子之间的整体折叠中间。对应于毒素α和fasciculin 2的区域保留了各自的几何形状。另外,嵌合蛋白显示出与fasciculin 2相似的结构行为,即fasciculin 2的晶体结构中的二聚化,以及与乙酰胆碱酯酶结合的区域的几何形状。总之,这种结构表明嵌合体保留了三指毒素的一般结构特征以及转移功能的结构特异性。版权所有2000学术出版社。

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