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本文引用的文献

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Exploiting the RNA interference pathway to counter hepatitis B virus replication.利用RNA干扰途径对抗乙型肝炎病毒复制。
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In vivo selection for human and murine hematopoietic cells transduced with a therapeutic MGMT lentiviral vector that inhibits HIV replication.对用抑制HIV复制的治疗性MGMT慢病毒载体转导的人和小鼠造血细胞进行体内筛选。
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In vivo correction of murine tyrosinemia type I by DNA-mediated transposition.通过DNA介导的转座对小鼠I型酪氨酸血症进行体内校正。
Mol Ther. 2002 Dec;6(6):759-69. doi: 10.1006/mthe.2002.0812.
6
Maleylacetoacetate isomerase (MAAI/GSTZ)-deficient mice reveal a glutathione-dependent nonenzymatic bypass in tyrosine catabolism.马来酰乙酰乙酸异构酶(MAAI/GSTZ)缺陷型小鼠揭示了酪氨酸分解代谢中谷胱甘肽依赖性非酶旁路。
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MDB: the Metalloprotein Database and Browser at The Scripps Research Institute.MDB:斯克里普斯研究所的金属蛋白数据库与浏览器。
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Mechanistic inferences from the crystal structure of fumarylacetoacetate hydrolase with a bound phosphorus-based inhibitor.基于结合磷基抑制剂的富马酰乙酰乙酸水解酶晶体结构的机制推断
J Biol Chem. 2001 May 4;276(18):15284-91. doi: 10.1074/jbc.M007621200. Epub 2001 Jan 11.
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Purified hematopoietic stem cells can differentiate into hepatocytes in vivo.纯化的造血干细胞在体内可分化为肝细胞。
Nat Med. 2000 Nov;6(11):1229-34. doi: 10.1038/81326.
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In vivo suppressor mutations correct a murine model of hereditary tyrosinemia type I.体内抑制突变纠正了I型遗传性酪氨酸血症的小鼠模型。
Proc Natl Acad Sci U S A. 1999 Oct 12;96(21):11928-33. doi: 10.1073/pnas.96.21.11928.

四面体中间体的次膦酸酯类似物对富马酰乙酰乙酸水解酶的缓慢起效抑制作用:动力学、晶体结构和药代动力学

Slow-onset inhibition of fumarylacetoacetate hydrolase by phosphinate mimics of the tetrahedral intermediate: kinetics, crystal structure and pharmacokinetics.

作者信息

Bateman Raynard L, Ashworth Justin, Witte John F, Baker L-J, Bhanumoorthy Pullooru, Timm David E, Hurley Thomas D, Grompe Markus, McClard Ronald W

机构信息

Arthur F. Scott Laboratory of Chemistry, Reed College, 3203 SE Woodstock Blvd, Portland, OR 97202, USA.

出版信息

Biochem J. 2007 Mar 1;402(2):251-60. doi: 10.1042/BJ20060961.

DOI:10.1042/BJ20060961
PMID:17064256
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1798426/
Abstract

FAH (fumarylacetoacetate hydrolase) catalyses the final step of tyrosine catabolism to produce fumarate and acetoacetate. HT1 (hereditary tyrosinaemia type 1) results from deficiency of this enzyme. Previously, we prepared a partial mimic of the putative tetrahedral intermediate in the reaction catalysed by FAH co-crystallized with the enzyme to reveal details of the mechanism [Bateman, Bhanumoorthy, Witte, McClard, Grompe and Timm (2001) J. Biol. Chem. 276, 15284-15291]. We have now successfully synthesized complete mimics CEHPOBA {4-[(2-carboxyethyl)-hydroxyphosphinyl]-3-oxobutyrate} and COPHPAA {3-[(3-carboxy-2-oxopropyl)hydroxyphosphinyl]acrylate}, which inhibit FAH in slow-onset tight-binding mode with K(i) values of 41 and 12 nM respectively. A high-resolution (1.35 A; 1 A=0.1 nm) crystal structure of the FAH.CEHPOBA complex was solved to reveal the affinity determinants for these compounds and to provide further insight into the mechanism of FAH catalysis. These compounds are active in vivo, and CEHPOBA demonstrated a notable dose-dependent increase in SA (succinylacetone; a metabolite seen in patients with HT1) in mouse serum after repeated injections, and, following a single injection (1 mumol/g; intraperitoneal), only a modest regain of FAH enzyme activity was detected in liver protein isolates after 24 h. These potent inhibitors provide a means to chemically phenocopy the metabolic defects of either HT1 or FAH knockout mice and promise future pharmacological utility for hepatocyte transplantation.

摘要

富马酰乙酰乙酸水解酶(FAH)催化酪氨酸分解代谢的最后一步,生成富马酸和乙酰乙酸。1型遗传性酪氨酸血症(HT1)是由该酶缺乏引起的。此前,我们制备了FAH催化反应中假定四面体中间体的部分模拟物,并使其与该酶共结晶,以揭示其作用机制的细节[贝特曼、巴努莫尔蒂、维特、麦克拉德、格龙佩和蒂姆(2001年)《生物化学杂志》276卷,第15284 - 15291页]。我们现已成功合成了完整的模拟物CEHPOBA{4 - [(2 - 羧乙基)-羟基膦酰基]-3 - 氧代丁酸}和COPHPAA{3 - [(3 - 羧基 - 2 - 氧代丙基)羟基膦酰基]丙烯酸酯},它们以缓慢起效的紧密结合模式抑制FAH,其抑制常数(K(i))值分别为41和12 nM。解析了FAH - CEHPOBA复合物的高分辨率(1.35 Å;1 Å = 0.1 nm)晶体结构,以揭示这些化合物的亲和力决定因素,并进一步深入了解FAH催化机制。这些化合物在体内具有活性,重复注射后,CEHPOBA使小鼠血清中的琥珀酰丙酮(HT1患者体内可见的一种代谢物,简称SA)显著呈剂量依赖性增加,单次注射(1 μmol/g;腹腔注射)后,24小时后在肝脏蛋白质分离物中仅检测到FAH酶活性有适度恢复。这些强效抑制剂提供了一种化学模拟HT1或FAH基因敲除小鼠代谢缺陷的方法,并有望在肝细胞移植的未来药理学应用中发挥作用。