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一种自身抑制控制元件定义了一氧化氮合酶的钙调节同工型。

An autoinhibitory control element defines calcium-regulated isoforms of nitric oxide synthase.

作者信息

Salerno J C, Harris D E, Irizarry K, Patel B, Morales A J, Smith S M, Martasek P, Roman L J, Masters B S, Jones C L, Weissman B A, Lane P, Liu Q, Gross S S

机构信息

Department of Biology, Rensselaer Polytechnic Institute, Troy, New York 12180, USA.

出版信息

J Biol Chem. 1997 Nov 21;272(47):29769-77. doi: 10.1074/jbc.272.47.29769.

Abstract

Nitric oxide synthases (NOSs) are classified functionally, based on whether calmodulin binding is Ca2+-dependent (cNOS) or Ca2+-independent (iNOS). This key dichotomy has not been defined at the molecular level. Here we show that cNOS isoforms contain a unique polypeptide insert in their FMN binding domains which is not shared with iNOS or other related flavoproteins. Previously identified autoinhibitory domains in calmodulin-regulated enzymes raise the possibility that the polypeptide insert is the autoinhibitory domain of cNOSs. Consistent with this possibility, three-dimensional molecular modeling suggested that the insert originates from a site immediately adjacent to the calmodulin binding sequence. Synthetic peptides derived from the 45-amino acid insert of endothelial NOS were found to potently inhibit binding of calmodulin and activation of cNOS isoforms. This inhibition was associated with peptide binding to NOS, rather than free calmodulin, and inhibition could be reversed by increasing calmodulin concentration. In contrast, insert-derived peptides did not interfere with the arginine site of cNOS, as assessed from [3H]NG-nitro-L-arginine binding, nor did they potently effect iNOS activity. Limited proteolysis studies showed that calmodulin's ability to gate electron flow through cNOSs is associated with displacement of the insert polypeptide; this is the first specific calmodulin-induced change in NOS conformation to be identified. Together, our findings strongly suggest that the insert is an autoinhibitory control element, docking with a site on cNOSs which impedes calmodulin binding and enzymatic activation. The autoinhibitory control element molecularly defines cNOSs and offers a unique target for developing novel NOS activators and inhibitors.

摘要

一氧化氮合酶(NOSs)根据钙调蛋白结合是否依赖Ca2+(cNOS)或不依赖Ca2+(iNOS)进行功能分类。这种关键的二分法在分子水平上尚未明确。在此我们表明,cNOS亚型在其FMN结合结构域中含有一个独特的多肽插入片段,该片段不与iNOS或其他相关黄素蛋白共享。先前在钙调蛋白调节酶中鉴定出的自抑制结构域增加了多肽插入片段是cNOS自抑制结构域的可能性。与这种可能性一致,三维分子建模表明该插入片段起源于紧邻钙调蛋白结合序列的位点。发现源自内皮型NOS的45个氨基酸插入片段的合成肽能有效抑制钙调蛋白的结合和cNOS亚型的激活。这种抑制与肽与NOS的结合有关,而不是与游离钙调蛋白的结合,并且通过增加钙调蛋白浓度可以逆转抑制作用。相比之下,从[3H]NG-硝基-L-精氨酸结合评估,源自插入片段的肽不干扰cNOS的精氨酸位点,它们也没有显著影响iNOS的活性。有限的蛋白水解研究表明,钙调蛋白控制电子通过cNOS流动的能力与插入多肽的位移有关;这是首次鉴定出的NOS构象中钙调蛋白诱导的特异性变化。总之,我们的研究结果强烈表明该插入片段是一个自抑制控制元件,与cNOS上的一个位点对接,该位点阻碍钙调蛋白结合和酶激活。自抑制控制元件在分子水平上定义了cNOS,并为开发新型NOS激活剂和抑制剂提供了独特的靶点。

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