Li H, Raman C S, Glaser C B, Blasko E, Young T A, Parkinson J F, Whitlow M, Poulos T L
Department of Molecular Biology and Biochemistry, University of California at Irvine, Irvine, California 92697, USA.
J Biol Chem. 1999 Jul 23;274(30):21276-84. doi: 10.1074/jbc.274.30.21276.
The crystal structures of the heme domain of human inducible nitric-oxide synthase (NOS-2) in zinc-free and -bound states have been solved. In the zinc-free structure, two symmetry-related cysteine residues form a disulfide bond. In the zinc-bound state, these same two cysteine residues form part of a zinc-tetrathiolate (ZnS(4)) center indistinguishable from that observed in the endothelial isoform (NOS-3). As in NOS-3, ZnS(4) plays a key role in stabilizing intersubunit contacts and in maintaining the integrity of the cofactor (tetrahydrobiopterin) binding site of NOS-2. A comparison of NOS-2 and NOS-3 structures illustrates the conservation of quaternary structure, tertiary topology, and substrate and cofactor binding sites, in addition to providing insights on isoform-specific inhibitor design. The structural comparison also reveals that pterin binding does not preferentially stabilize the dimer interface of NOS-2 over NOS-3.
已解析出人诱导型一氧化氮合酶(NOS - 2)血红素结构域在无锌和结合锌状态下的晶体结构。在无锌结构中,两个对称相关的半胱氨酸残基形成一个二硫键。在结合锌状态下,这相同的两个半胱氨酸残基构成一个锌 - 四硫醇盐(ZnS(4))中心的一部分,该中心与在内皮型异构体(NOS - 3)中观察到的中心无法区分。与NOS - 3一样,ZnS(4)在稳定亚基间接触以及维持NOS - 2辅因子(四氢生物蝶呤)结合位点的完整性方面起关键作用。对NOS - 2和NOS - 3结构的比较不仅说明了四级结构、三级拓扑结构以及底物和辅因子结合位点的保守性,还为异构体特异性抑制剂设计提供了见解。结构比较还表明,蝶呤结合对NOS - 2二聚体界面的稳定作用并不比NOS - 3更具优势。