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胸苷酸合成酶Asn229突变体中取向和氢键对催化作用的贡献。

Contributions of orientation and hydrogen bonding to catalysis in Asn229 mutants of thymidylate synthase.

作者信息

Finer-Moore J S, Liu L, Birdsall D L, Brem R, Apfeld J, Santi D V, Stroud R M

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco 94143-0448, USA.

出版信息

J Mol Biol. 1998 Feb 13;276(1):113-29. doi: 10.1006/jmbi.1997.1495.

DOI:10.1006/jmbi.1997.1495
PMID:9514716
Abstract

We have determined structures of binary and ternary complexes of five Asn229 variants of thymidylate synthase (TS) and related their structures to the kinetic constants measured previously. Asn229 forms two hydrogen bonds to the pyrimidine ring of the substrate 2'-deoxyuridine-5'-monophosphate (dUMP). These hydrogen bonds constrain the orientation of dUMP in binary complexes with dUMP, and in ternary complexes with dUMP and the TS cofactor, 5,10-methylene-5,6,7,8-tetrahydrofolate. In N229 mutants, where these hydrogen bonds cannot be made, dUMP binds in a misoriented or more disordered fashion. Most N229 mutants exhibit no activity for the dehalogenation of 5-bromo-dUMP, which requires correct orientation of dUMP against Cys198. Since bound dUMP forms the binding surface against which the pterin ring of cofactor binds, misorientation of dUMP results in higher Km values for cofactor. At the same time, binding of the cofactor aids in ordering and positioning dUMP for catalysis. Hydrophobic mutants, such as N229I, favor an arrangement of solvent molecules and side-chains around the ligands similar to that in a proposed transition state for ternary complex formation in wild-type TS, and kcat values are similar to the wild-type value. Smaller, more hydrophilic mutants favor arrangements of the solvent and side-chains surrounding the ligands that do not resemble the proposed transition state. These changes correspond to decreases in kcat of up to 2000-fold, with only modest increases in Km or Kd. These results are consistent with the proposal that the hydrogen-bonding network between water, dUMP and side-chains in the active-site cavity contributes to catalysis in TS. Asn229 has the unique ability to maintain this critical network, without sterically interfering with dUMP binding.

摘要

我们已经确定了胸苷酸合成酶(TS)的5种Asn229变体的二元和三元复合物的结构,并将其结构与先前测量的动力学常数相关联。Asn229与底物2'-脱氧尿苷-5'-单磷酸(dUMP)的嘧啶环形成两个氢键。这些氢键限制了dUMP在与dUMP形成的二元复合物中以及在与dUMP和TS辅因子5,10-亚甲基-5,6,7,8-四氢叶酸形成的三元复合物中的取向。在无法形成这些氢键的N229突变体中,dUMP以错误取向或更无序的方式结合。大多数N229突变体对5-溴-dUMP的脱卤反应没有活性,而这需要dUMP相对于Cys198的正确取向。由于结合的dUMP形成了辅因子蝶呤环结合的结合表面,dUMP的错误取向导致辅因子的Km值更高。同时,辅因子的结合有助于dUMP的有序排列和定位以进行催化。疏水性突变体,如N229I,有利于溶剂分子和配体周围侧链的排列,类似于野生型TS中三元复合物形成的拟过渡态,并且kcat值与野生型值相似。较小、更具亲水性的突变体有利于溶剂和围绕配体的侧链的排列,这些排列与拟过渡态不同。这些变化对应于kcat降低高达2000倍,而Km或Kd仅适度增加。这些结果与以下提议一致,即活性位点腔中水、dUMP和侧链之间的氢键网络有助于TS中的催化作用。Asn229具有维持这一关键网络的独特能力,而不会在空间上干扰dUMP的结合。

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