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Possible role of two phenylalanine residues in the active site of human cytidine deaminase

机译:两个苯基丙氨酸残基在人胞苷脱氨酶活性位点中的可能作用

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摘要

Site-directed mutagenesis on human cytidine deaminase (CDA) was employed to mutate specifically two highly conserved phenylalanine residues, F36 and F137, to tryptophan; at the same time, the unique tryptophan residue present in the sequence at position 113 was mutated to phenylalanine. These double mutations were performed in order to have for each protein a single tryptophan signal for fluorescence studies relative to position 36 or 137, The mutant enzymes thus obtained, W113F, F36W/W113F and F137W/W113F, showed by circular dicroism and thermal stability an overall structure not greatly affected by the mutations. The titration of Trp residues by N-bromosuccinimide (NBS) suggested that residue W113 of the wild-type CDA and W36 of mutant F36W/W113F are buried in the tertiary structure of the enzyme, whereas the residue W137 of mutant F137W/W113F is located near the surface of the molecule. Kinetic experiments and equilibrium experiments with FZEB showed that the residue W113 seems not to be part of the active site of the enzyme whereas the Phe/Trp substitution in F36W/W113F and F137W/W113F mutant enzymes had a negative effect on substrate binding and catalysis, suggesting that F137 and F36 of the wild-type CDA are involved in a stabilizing interaction between ligand and enzyme. [References: 29]
机译:利用人胞嘧啶脱氨酶(CDA)的定点诱变将两个高度保守的苯丙氨酸残基F36和F137突变为色氨酸。同时,在位置113的序列中存在的独特色氨酸残基被突变为苯丙氨酸。进行这些双重突变是为了使每种蛋白质具有相对于位置36或137进行荧光研究的单个色氨酸信号。如此获得的突变酶W113F,F36W / W113F和F137W / W113F通过循环二色谱法和热稳定性显示出总体结构不受突变的影响很大。用N-溴代琥珀酰亚胺(NBS)滴定Trp残基表明,野生型CDA的残基W113和突变体F36W / W113F的W36掩埋在酶的三级结构中,而突变体F137W / W113F的残基W137位于在分子表面附近。用FZEB进行的动力学实验和平衡实验表明,残基W113似乎不是该酶活性位点的一部分,而F36W / W113F和F137W / W113F突变酶中的Phe / Trp取代对底物结合和催化具有负面影响,提示野生型CDA的F137和F36参与配体和酶之间的稳定相互作用。 [参考:29]

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