首页> 美国卫生研究院文献>Biochemical Journal >Kinetics of CO binding and CO photodissociation in Pseudomonas stutzeri cd(1) nitrite reductase: probing the role of extended N-termini in fast structural relaxation upon CO photodissociation.
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Kinetics of CO binding and CO photodissociation in Pseudomonas stutzeri cd(1) nitrite reductase: probing the role of extended N-termini in fast structural relaxation upon CO photodissociation.

机译:斯图氏假单胞菌cd(1)亚硝酸还原酶中CO结合和CO光解离的动力学:探究扩展的N末端在CO光解离时快速结构松弛中的作用。

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摘要

cd(1) nitrite reductase from Pseudomonas stutzeri is a di-haem- containing enzyme, comprising a c-type haem and a d-type haem. Studies with the highly related cd(1) nitrite reductase of Pseudomonas aeruginosa have established that this enzyme undergoes fast (microsecond) and global structural relaxation upon CO photodissociation from the reduced enzyme. A key difference between the Ps. aeruginosa and Ps. stutzeri enzyme is the absence of a flexible N-terminal extension in the Ps. stutzeri enzyme. In Ps. aeruginosa cd(1) nitrite reductase the N-terminal extension wraps around the second subunit of the homodimer and with Tyr(10) stabilizing a water molecule co-ordinated to the d(1)-haem. Given the intimate association of the N-terminal extension with the d(1)-haem, we hypothesized that the presence of the N-terminal extension likely contributes to the fast structural reorganization seen during photodissociation of CO from the reduced enzyme. In the present study we have investigated the kinetics of CO association and CO photodissociation of Ps. stutzeri cd(1) nitrite reductase (which lacks the N-terminal arm seen in the Ps. aeruginosa enzyme) to probe the role and influence of the N-terminal arm in the fast global structural reorganization seen with Ps. aeruginosa. Surprisingly, we find that Ps. stutzeri cd(1) nitrite reductase also undergoes fast structural reorganization during CO photodissociation. We also show, in stopped-flow experiments, that the kinetics of CO binding and dissociation with reduced Ps. stutzeri cd(1) nitrite reductase are similar to those observed with Ps. aeruginosa enzyme, thus ruling out a major role for the N-terminal flexible arm found in Ps. aeruginosa in the kinetics of these processes. Our data indicate that global structural reorganization following CO photodissociation is an intrinsic property of the haem domains in cd(1) nitrite reductases. The absence of an N-terminal extension, as in the Ps. stutzeri cd(1) nitrite reductase, does not lead to loss of global structural reorganization following CO photodissociation.
机译:来自斯氏假单胞菌(Pseudomonas stutzeri)的cd(1)亚硝酸盐还原酶是含双血红素的酶,其包含c型血红素和d型血红素。与铜绿假单胞菌的高度相关的cd(1)亚硝酸还原酶的研究已确定,该酶在还原后的CO光解离时会经历快速(微秒)和整体结构松弛。 P之间的关键区别。铜绿和PS。 Stutzeri酶是Ps中没有灵活的N端延伸。 Stutzeri酶。在PS中。铜绿的cd(1)亚硝酸还原酶N末端延伸包裹在同源二聚体的第二个亚基周围,Tyr(10)稳定了与d(1)-血红素配位的水分子。鉴于N末端延伸与d(1)-血红素密切相关,我们假设N末端延伸的存在可能有助于CO从还原酶的光解离过程中看到的快速结构重组。在本研究中,我们研究了Ps的CO缔合和CO光解离的动力学。 stutzeri cd(1)亚硝酸盐还原酶(缺少在铜绿假单胞菌酶中可见的N末端臂)来探测N末端臂在Ps快速整体结构重组中的作用和影响。铜绿。令人惊讶的是,我们发现Ps。 Stutzeri cd(1)亚硝酸还原酶在CO光解离过程中也经历了快速的结构重组。在停止流实验中,我们还显示了CO结合和Ps降低的解离动力学。 Stutzeri cd(1)亚硝酸还原酶与Ps相似。铜绿酶,因此排除了在Ps中发现的N末端柔性臂的主要作用。铜绿在这些过程中的动力学。我们的数据表明,CO光解离后的全局结构重组是cd(1)亚硝酸还原酶中血红素域的固有特性。不存在N端延伸,如Ps中所示。 stutzeri cd(1)亚硝酸还原酶不会导致CO光解离后整体结构重组的损失。

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