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枯草芽孢杆菌一氧化氮合酶的亚硝酰血红素结构对理解底物氧化有重要意义。

Nitrosyl-heme structures of Bacillus subtilis nitric oxide synthase have implications for understanding substrate oxidation.

作者信息

Pant Kartikeya, Crane Brian R

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853, USA.

出版信息

Biochemistry. 2006 Feb 28;45(8):2537-44. doi: 10.1021/bi0518848.

Abstract

The crystal structures of nitrosyl-heme complexes of a prokaryotic nitric oxide synthase (NOS) from Bacillus subtilis (bsNOS) reveal changes in active-site hydrogen bonding in the presence of the intermediate N(omega)-hydroxy-l-arginine (NOHA) compared to the substrate l-arginine (l-Arg). Correlating with a Val-to-Ile residue substitution in the bsNOS heme pocket, the Fe(II)-NO complex with both l-Arg and NOHA is more bent than the Fe(II)-NO, l-Arg complex of mammalian eNOS [Li, H., Raman, C. S., Martasek, P., Masters, B. S. S., and Poulos, T. L. (2001) Biochemistry 40, 5399-5406]. Structures of the Fe(III)-NO complex with NOHA show a nearly linear nitrosyl group, and in one subunit, partial nitrosation of bound NOHA. In the Fe(II)-NO complexes, the protonated NOHA N(omega) atom forms a short hydrogen bond with the heme-coordinated NO nitrogen, but active-site water molecules are out of hydrogen bonding range with the distal NO oxygen. In contrast, the l-Arg guanidinium interacts more weakly and equally with both NO atoms, and an active-site water molecule hydrogen bonds to the distal NO oxygen. This difference in hydrogen bonding to the nitrosyl group by the two substrates indicates that interactions provided by NOHA may preferentially stabilize an electrophilic peroxo-heme intermediate in the second step of NOS catalysis.

摘要

来自枯草芽孢杆菌的原核生物一氧化氮合酶(bsNOS)的亚硝酰血红素复合物的晶体结构显示,与底物L-精氨酸(L-Arg)相比,在中间产物N(ω)-羟基-L-精氨酸(NOHA)存在的情况下,活性位点的氢键发生了变化。与bsNOS血红素口袋中的缬氨酸到异亮氨酸残基取代相关,与L-Arg和NOHA形成的Fe(II)-NO复合物比哺乳动物eNOS的Fe(II)-NO、L-Arg复合物更弯曲[Li, H., Raman, C. S., Martasek, P., Masters, B. S. S., and Poulos, T. L. (2001) Biochemistry 40, 5399 - 5406]。与NOHA形成的Fe(III)-NO复合物的结构显示亚硝酰基团几乎呈线性,并且在一个亚基中,结合的NOHA发生了部分亚硝化。在Fe(II)-NO复合物中,质子化的NOHA的N(ω)原子与血红素配位的NO氮形成短氢键,但活性位点的水分子与远端的NO氧不在氢键作用范围内。相比之下,L-Arg胍基与两个NO原子的相互作用较弱且相同,并且一个活性位点的水分子与远端的NO氧形成氢键。两种底物与亚硝酰基团氢键作用的这种差异表明,NOHA提供 的相互作用可能在NOS催化的第二步中优先稳定亲电过氧血红素中间体。

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