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本文引用的文献

1
The Crystal Structure of Cytochrome P450 4B1 (CYP4B1) Monooxygenase Complexed with Octane Discloses Several Structural Adaptations for ω-Hydroxylation.与辛烷复合的细胞色素P450 4B1(CYP4B1)单加氧酶的晶体结构揭示了ω-羟基化的几种结构适应性。
J Biol Chem. 2017 Mar 31;292(13):5610-5621. doi: 10.1074/jbc.M117.775494. Epub 2017 Feb 6.
2
Recent developments on the vascular effects of 20-hydroxyeicosatetraenoic acid.20-羟基二十碳四烯酸血管效应的最新进展
Curr Opin Nephrol Hypertens. 2017 Mar;26(2):74-82. doi: 10.1097/MNH.0000000000000302.
3
Protein cysteine oxidation in redox signaling: Caveats on sulfenic acid detection and quantification.氧化还原信号传导中的蛋白质半胱氨酸氧化:亚磺酸检测与定量的注意事项
Arch Biochem Biophys. 2017 Mar 1;617:26-37. doi: 10.1016/j.abb.2016.09.013. Epub 2016 Sep 28.
4
20-Hydroxyeicosatetraenoic Acid (HETE)-dependent Hypertension in Human Cytochrome P450 (CYP) 4A11 Transgenic Mice: NORMALIZATION OF BLOOD PRESSURE BY SODIUM RESTRICTION, HYDROCHLOROTHIAZIDE, OR BLOCKADE OF THE TYPE 1 ANGIOTENSIN II RECEPTOR.人细胞色素P450(CYP)4A11转基因小鼠中20-羟基二十碳四烯酸(HETE)依赖性高血压:限钠、氢氯噻嗪或阻断1型血管紧张素II受体使血压正常化
J Biol Chem. 2016 Aug 5;291(32):16904-19. doi: 10.1074/jbc.M116.732297. Epub 2016 Jun 13.
5
Molecular mechanisms and cell signaling of 20-hydroxyeicosatetraenoic acid in vascular pathophysiology.20-羟二十碳四烯酸在血管病理生理学中的分子机制和细胞信号转导。
Front Biosci (Landmark Ed). 2016 Jun 1;21(7):1427-63. doi: 10.2741/4465.
6
20-HETE-induced mitochondrial superoxide production and inflammatory phenotype in vascular smooth muscle is prevented by glucose-6-phosphate dehydrogenase inhibition.6-磷酸葡萄糖脱氢酶抑制可预防20-羟基二十碳四烯酸诱导的血管平滑肌线粒体超氧化物生成和炎症表型。
Am J Physiol Heart Circ Physiol. 2016 May 1;310(9):H1107-17. doi: 10.1152/ajpheart.00961.2015. Epub 2016 Feb 26.
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Biological chemistry and functionality of protein sulfenic acids and related thiol modifications.蛋白质亚磺酸及相关硫醇修饰的生物化学与功能
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8
Arachidonic acid monooxygenase: Genetic and biochemical approaches to physiological/pathophysiological relevance.花生四烯酸单加氧酶:生理/病理生理相关性的遗传与生化研究方法
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9
Human Cytochrome P450 21A2, the Major Steroid 21-Hydroxylase: STRUCTURE OF THE ENZYME·PROGESTERONE SUBSTRATE COMPLEX AND RATE-LIMITING C-H BOND CLEAVAGE.人细胞色素P450 21A2,主要的类固醇21-羟化酶:酶-孕酮底物复合物的结构及限速C-H键裂解
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10
Incidence and physiological relevance of protein thiol switches.蛋白质硫醇开关的发生率及生理相关性。
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人细胞色素P450 4A11的血红素-硫醇盐亚磺酰化作为催化抑制的氧化还原开关。

Heme-thiolate sulfenylation of human cytochrome P450 4A11 functions as a redox switch for catalytic inhibition.

作者信息

Albertolle Matthew E, Kim Donghak, Nagy Leslie D, Yun Chul-Ho, Pozzi Ambra, Savas Üzen, Johnson Eric F, Guengerich F Peter

机构信息

From the Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146.

the Department of Biological Sciences, Konkuk University, Seoul 05025, Korea.

出版信息

J Biol Chem. 2017 Jul 7;292(27):11230-11242. doi: 10.1074/jbc.M117.792200. Epub 2017 May 22.

DOI:10.1074/jbc.M117.792200
PMID:28533430
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5500791/
Abstract

Cytochrome P450 (P450, CYP) 4A11 is a human fatty acid ω-hydroxylase that catalyzes the oxidation of arachidonic acid to the eicosanoid 20-hydroxyeicosatetraenoic acid (20-HETE), which plays important roles in regulating blood pressure regulation. Variants of P450 4A11 have been associated with high blood pressure and resistance to anti-hypertensive drugs, and 20-HETE has both pro- and antihypertensive properties relating to increased vasoconstriction and natriuresis, respectively. These physiological activities are likely influenced by the redox environment, but the mechanisms are unclear. Here, we found that reducing agents ( dithiothreitol and tris(2-carboxyethyl)phosphine) strongly enhanced the catalytic activity of P450 4A11, but not of 10 other human P450s tested. Conversely, added HO attenuated P450 4A11 catalytic activity. Catalytic roles of five of the potentially eight implicated Cys residues of P450 4A11 were eliminated by site-directed mutagenesis. Using an isotope-coded dimedone/iododimedone-labeling strategy and mass spectrometry of peptides, we demonstrated that the heme-thiolate cysteine (Cys-457) is selectively sulfenylated in an HO concentration-dependent manner. This sulfenylation could be reversed by reducing agents, including dithiothreitol and dithionite. Of note, we observed heme ligand cysteine sulfenylation of P450 4A11 e in kidneys and livers derived from transgenic mice. We also detected sulfenylation of murine P450 4a12 and 4b1 heme peptides in kidneys. To our knowledge, reversible oxidation of the heme thiolate has not previously been observed in P450s and may have relevance for 20-HETE-mediated functions.

摘要

细胞色素P450(P450,CYP)4A11是一种人类脂肪酸ω-羟化酶,可催化花生四烯酸氧化为类二十烷酸20-羟基二十碳四烯酸(20-HETE),其在调节血压中发挥重要作用。P450 4A11的变体与高血压及抗高血压药物耐药性有关,且20-HETE分别具有与血管收缩增加和利钠作用相关的升压和降压特性。这些生理活性可能受氧化还原环境影响,但其机制尚不清楚。在此,我们发现还原剂(二硫苏糖醇和三(2-羧乙基)膦)强烈增强了P450 4A11的催化活性,但对所测试的其他10种人类P450则无此作用。相反,添加的HO会减弱P450 4A11的催化活性。通过定点诱变消除了P450 4A11潜在的8个相关半胱氨酸残基中5个的催化作用。使用同位素编码的二甲苯磺酰/碘代二甲苯磺酰标记策略和肽段质谱分析,我们证明血红素硫醇盐半胱氨酸(Cys-457)以HO浓度依赖的方式被选择性亚磺酰化。这种亚磺酰化可被包括二硫苏糖醇和连二亚硫酸盐在内的还原剂逆转。值得注意的是,我们在源自转基因小鼠的肾脏和肝脏中观察到P450 4A11 e的血红素配体半胱氨酸亚磺酰化。我们还在肾脏中检测到小鼠P450 4a12和4b1血红素肽段的亚磺酰化。据我们所知,此前尚未在P450中观察到血红素硫醇盐的可逆氧化,其可能与20-HETE介导的功能相关。