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Influence of cysteine 164 on active site structure in rat cysteine dioxygenase

机译:半胱氨酸164对大鼠半胱氨酸双加氧酶活性位点结构的影响

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Cysteine dioxygenase is a non-heme mononuclear iron enzyme with unique structural features, namely an intramolecular thioether cross-link between cysteine 93 and tyrosine 157, and a disulfide bond between substrate l-cysteine and cysteine 164 in the entrance channel to the active site. We investigated how these posttranslational modifications affect catalysis through a kinetic, crystallographic and computational study. The enzyme kinetics of a C164S variant are identical to WT, indicating that disulfide formation at C164 does not significantly impair access to the active site at physiological pH. However, at high pH, the cysteine-tyrosine cross-link formation is enhanced in C164S. This supports the view that disulfide formation at position 164 can limit access to the active site. The C164S variant yielded crystal structures of unusual clarity in both resting state and with cysteine bound. Both show that the iron in the cysteine-bound complex is a mixture of penta- and hexa-coordinate with a water molecule taking up the final site (60 % occupancy), which is where dioxygen is believed to coordinate during turnover. The serine also displays stronger hydrogen bond interactions to a water bound to the amine of the substrate cysteine. However, the interactions between cysteine and iron appear unchanged. DFT calculations support this and show that WT and C164S have similar binding energies for the water molecule in the final site. This variant therefore provides evidence that WT also exists in an equilibrium between penta- and hexa-coordinate forms and the presence of the sixth ligand does not strongly affect dioxygen binding.
机译:半胱氨酸双加氧酶是一种非血红素单核铁酶,具有独特的结构特征,即半胱氨酸93和酪氨酸157之间的分子内硫醚交联,以及活性位点入口通道中底物1-半胱氨酸和半胱氨酸164之间的二硫键。我们通过动力学,晶体学和计算研究研究了这些翻译后修饰如何影响催化作用。 C164S变体的酶动力学与WT相同,表明C164处的二硫键形成不会显着削弱在生理pH值下接近活性位点的能力。但是,在高pH下,C164S中半胱氨酸-酪氨酸交联的形成会增强。这支持了在位置164处形成二硫键会限制进入活性位点的观点。 C164S变体在静止状态和半胱氨酸结合状态下产生的晶体结构异常清晰。两者都表明,与半胱氨酸结合的复合物中的铁是五配位和六配位的混合物,水分子占据了最终位点(占60%的占有率),据信这是双氧在转换过程中的配位作用。丝氨酸还显示出与与底物半胱氨酸的胺结合的水更强的氢键相互作用。然而,半胱氨酸和铁之间的相互作用似乎没有改变。 DFT计算证明了这一点,并表明WT和C164S在最终位点具有与水分子相似的结合能。因此,该变体提供了证据,即WT也以五坐标和六坐标形式之间的平衡存在,并且第六配体的存在不会强烈影响双氧结合。

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