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首页> 外文期刊>Biochemistry >Nitric oxide-generated P420 nitric oxide synthase: characterization and roles for tetrahydrobiopterin and substrate in protecting against or reversing the P420 conversion.
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Nitric oxide-generated P420 nitric oxide synthase: characterization and roles for tetrahydrobiopterin and substrate in protecting against or reversing the P420 conversion.

机译:一氧化氮生成的P420一氧化氮合酶:四氢生物蝶呤和底物在防止或逆转P420转化中的表征及作用。

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摘要

The neuronal NO synthase (nNOS) heme binds self-generated NO, and this negatively regulates NO synthesis. Here we utilized the nNOS oxygenase domain and full-length nNOS along with various spectroscopic methods to (1) study formation of the six-coordinate ferrous NO complex and its conversion to a five-coordinate NO complex and (2) investigate the spectral and catalytic properties of the five-coordinate NO complex following its air oxidation to a ferric enzyme. NO bound quickly to ferrous nNOS oxygenase to form a six-coordinate NO complex (kon and koff values of 1.25 x 10(-)3 mM-1 s-1 and 128 s-1 at 10 degreesC, respectively) that was stable in the presence of L-arginine or tetrahydrobiopterin (BH4) but was converted to a five-coordinate NO complex in a biphasic process (k = 0.1 and 0.01 s-1 at 10 degreesC) in the absence of these molecules. Air oxidation of the ferrous six-coordinate NO complex generated an enzyme with full activity and ferrous-CO Soret absorbance at 444 nm. In contrast, oxidation of the five-coordinate NO complex generated an inactive dimer with ferrous-CO Soret absorbance at 420 nm, indicating nNOS was converted to a ferric P420 form. Incubation of ferric P420 nNOS with BH4 alone or BH4 and L-arginine resulted in time-dependent reactivation of catalysis and associated recovery of P450 character. Thus, nNOS is a heme-thiolate protein that can undergo a reversible P450-P420 conversion. BH4 has important roles in preventing P420 formation during NO synthesis, and in rescuing P420 nNOS.
机译:神经元一氧化氮合酶(nNOS)血红素结合自身生成的一氧化氮,从而对一氧化氮的合成产生负面影响。在这里,我们利用nNOS加氧酶结构域和全长nNOS以及各种光谱方法,来(1)研究六配位亚铁NO配合物的形成及其向五配位NO配合物的转化,以及(2)研究光谱和催化作用空气氧化成三价铁酶后五配位NO配合物的化学性质NO快速与亚铁nNOS加氧酶结合形成六配位NO络合物(在10摄氏度时kon和koff值分别为1.25 x 10(-)3 mM-1 s-1和128 s-1),在L-精氨酸或四氢生物蝶呤(BH4)的存在,但在不存在这些分子的情况下,在两相过程中(在10摄氏度下k = 0.1和0.01 s-1)转化为五配位NO络合物。六配位亚铁基亚铁络合物的空气氧化产生了一种酶,该酶具有完整的活性,并且在444 nm处具有亚铁-CO Soret吸光度。相反,五坐标NO配合物的氧化生成了一个惰性二聚体,在420 nm处具有亚铁-CO Soret吸光度,表明nNOS已转化为三价铁P420形式。将P420 nNOS与单独的BH4或BH4和L-精氨酸一起孵育会导致时间依赖性的催化再激活和相关的P450特性恢复。因此,nNOS是可以经历可逆的P450-P420转换的血红素硫醇盐蛋白。 BH4在防止NO合成过程中形成P420和挽救P420 nNOS方面具有重要作用。

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