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辅因子触发胸苷酸合成酶的构象变化:对有序结合机制的启示。

Cofactor triggers the conformational change in thymidylate synthase: implications for an ordered binding mechanism.

作者信息

Kamb A, Finer-Moore J S, Stroud R M

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco 94143.

出版信息

Biochemistry. 1992 Dec 29;31(51):12876-84. doi: 10.1021/bi00166a024.

Abstract

We have solved crystal structures of two complexes with Escherichia coli thymidylate synthase (TS) bound either to the cofactor analog N10-propargyl-5,8-dideazafolate (CB3717) or to a tighter binding polygutamyl derivative of CB3717. These structures suggest that cofactor binding alone is sufficient to induce the conformational change in TS; dUMP binding is not required. Because polyglutamyl folates are the primary cofactor form in vivo, and because they can bind more tightly than dUMP to TS, these structures may represent a key intermediate along the TS reaction pathway. These structures further suggest that the dUMP binding site is accessible in the TS-cofactor analog binary complexes. Conformational flexibility of the binary complex may permit dUMP to enter the active site of TS while the cofactor is bound. Alternatively, dUMP may enter the active site from the opposite side that the cofactor appears to enter; that is, through a portal flanked by arginines that also coordinate the phosphate group in the active site. Entry of dUMP through this portal may allow dUMP to bind to a TS-cofactor binary complex in which the complex has completed its conformational transition to the catalytically competent structure.

摘要

我们解析了两种复合物的晶体结构,这两种复合物分别是大肠杆菌胸苷酸合成酶(TS)与辅因子类似物N10-炔丙基-5,8-二氮杂叶酸(CB3717)结合,以及与CB3717的一种结合更紧密的聚谷氨酰衍生物结合形成的复合物。这些结构表明,仅辅因子结合就足以诱导TS的构象变化;不需要dUMP结合。由于聚谷氨酰叶酸是体内主要的辅因子形式,并且它们比dUMP能更紧密地结合到TS上,这些结构可能代表了TS反应途径中的一个关键中间体。这些结构进一步表明,在TS-辅因子类似物二元复合物中,dUMP结合位点是可及的。二元复合物的构象灵活性可能允许dUMP在辅因子结合时进入TS的活性位点。或者,dUMP可能从与辅因子似乎进入的相反一侧进入活性位点;也就是说,通过一个由精氨酸侧翼的通道进入,这些精氨酸也在活性位点中配位磷酸基团。dUMP通过这个通道进入可能允许dUMP结合到一个TS-辅因子二元复合物上,其中该复合物已经完成了向催化活性结构的构象转变。

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