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Accelerated ubiquitination and proteasome degradation of a genetic variant of inducible nitric oxide synthase

机译:诱导型一氧化氮合酶遗传变异的加速泛素化和蛋白酶体降解

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pBiochemical and pharmacological studies have suggested that NOS2 (inducible nitric oxide synthase) has a functional role in the blood pressure response to increases in dietary salt intake. On a high-salt diet, the Dahl/Rapp salt-sensitive (S) strain of rat, a genetic model of salt-sensitive hypertension, did not show increased nitric oxide production. NOS2 from S rats possesses a point mutation that results in substitution of proline for serine at position 714. In the present study, rat NOS2 was shown to be ubiquitinated iin vitro/i and iin vivo/i and to be degraded by the proteasome; this process was accelerated for the S714P mutant. Accelerated degradation of the S714P mutant enzyme accounted for the diminished enzyme activity of this mutant. Hsp90 (heat-shock protein 90) associated with NOS2 and modulated degradation, but was not responsible for the accentuated degradation of the S714P mutant enzyme. The combined findings demonstrate the integral role of ubiquitination and degradation by the proteasome in the regulation of NO production by rat NOS2. Demonstrating that this process is responsible for the abnormal function of the S714P mutant NOS2 in S rats confirms the physiological importance of the proteasome in NOS2 function./p
机译:>生化和药理研究表明,NOS2(诱导型一氧化氮合酶)在血压对饮食盐摄入量增加的反应中具有功能性作用。在高盐饮食中,大鼠Dahl / Rapp盐敏感性(S)菌株(一种盐敏感性高血压的遗传模型)未显示一氧化氮的产生增加。来自S大鼠的NOS2具有点突变,可导致脯氨酸取代714位的丝氨酸。在本研究中,大鼠NOS2被证明在体外和体内遍在泛素化>并被蛋白酶体降解;对于S714P突变体,此过程得以加速。 S714P突变体酶的加速降解导致该突变体的酶活性降低。 Hsp90(热休克蛋白90)与NOS2和调节的降解有关,但与S714P突变酶的加剧降解无关。结合的发现表明蛋白酶体的泛素化和降解在调节大鼠NOS2产生NO的过程中起着不可或缺的作用。证明此过程是造成S大鼠S714P突变型NOS2功能异常的原因,这证实了蛋白酶体在NOS2功能中的生理重要性。

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