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INHERITED DISORDERS OF HEPATIC BILIRUBIN GLUCORONIDATION

INHERITED DISORDERS OF HEPATIC BILIRUBIN GLUCORONIDATION
遗传性肝胆红素葡萄糖酸化障碍
批准号:
7102583
负责人:
NAMITA ROY-CHOWDHURY
金额:
$31.6万
依托单位国家:
美国
项目类别:
财政年份:
1987
资助国家:
美国
项目状态:
已结题
起止时间:
1987-07-01 至 2009-06-30

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中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Bilirubin is the toxic end product of heme breakdown. Efficient biliary excretion of bilirubin requires glucuronidation mediated by uridinediphosphoglucuronate glucuronosyltransferase-1A1 (UGT1A1), the catalytic site of which is located inside the hepatocyte endoplasmic reticulum (ER) lumen. Inherited UGT1A1 deficiency leads to the accumulation of unconjugated bilirubin, causing the potentially lethal Crigler-Najjar syndrome type 1. UGT1A1 also detoxifies estrogen and several drugs and carcinogens. Specific Aim 1 is to characterize the structure-function relationship of UGT1A1. We have shown that UGT1A1 forms dimers, and will test the hypothesis that dimerization is required for activation of the enzyme by stimulation of the import of UDP-glucuronic acid (UDPGA) into the ER lumen by the physiological UGT activator, UDP-N-acetyl glucosamine (UDP-gluc-Nac). We will test whether dimerization explains the dominant negative function of some mutant forms of UGT1A1. Another hypothesis to be tested is that UGT1A1 activity is regulated by phosphorylation. ER localization is important in UGT1A1 function. Therefore, we will delineate the motifs required for membrane incorporation and specific ER localization. Since several drugs cause hyperbilirubinemia by inhibiting UGT1A1 activity, we will delineate domains involved in binding the substrtes, UDPGA and bilirubin. Specific Aim 2 is to characterize UGT1A1 gene expression. We hypothesize that the interaction of cis-acting elements within the regulatory upstream region of UGT1A1 with hepatocellular transactivating factors determine the tissue-specificity of UGT1A1 expression, its induction by Phenobarbital and clofibrate, and its down-regulation by thryroid hormone. We will test this DNase foot-printing, electrophoretic mobility shift assays and expression of promoter-reporter constructs in differentiated human hepatoma cells and immortalized human hepatocytes. Successful completion of this study will elucidate the mechanism of UGT1A1 function in health and inherited disorders. Understanding the regulatory mechanisms of UGT1A1 should assist in identifying enzyme-inducing drugs for improved treatment of neonatal hyperbilirubinemia mad incomplete UGT1A1 deficiency (Crigler-Najjar syndrome type 2).
期刊论文(76)
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会议论文
DOI: --
发表时间: 1994-07
期刊: The Journal of biological chemistry
影响因子: --
作者: [P. Bosma;J. Seppen;B. Goldhoorn;C. Bakker;R. Elferink;J. Chowdhury;N. Chowdhury;N. Chowdhury;P. Jansen]
通讯作者: P. Bosma;J. Seppen;B. Goldhoorn;C. Bakker;R. Elferink;J. Chowdhury;N. Chowdhury;N. Chowdhury;P. Jansen
Genetic heterogeneity of Crigler-Najjar syndrome type I: a study of 14 cases.
I 型 Crigler-Najjar 综合征的遗传异质性:14 例病例的研究。
DOI: 10.1007/bf00206965
发表时间: 1994
期刊: Human genetics
影响因子: 5.3
作者: [Labrune,P, Myara,A, Hadchouel,M, Ronchi,F, Bernard,O, Trivin,F, Chowdhury,NR, Chowdhury,JR, Munnich,A, Odièvre,M]
通讯作者: Odièvre,M
Bilirubin conjugates produced by human, dog, and rat hepatocytes transplanted into athymic Gunn rats.
由人、狗和大鼠肝细胞移植到无胸腺 Gunn 大鼠体内产生的胆红素结合物。
DOI: --
发表时间: 1991
期刊: Journal of the Association for Academic Minority Physicians : the official publication of the Association for Academic Minority Physicians
影响因子: --
作者: [Lahiri,P, Yerneni,PR, Khan,Z, Demetriou,AA, Moscioni,AD, Shouval,D, Chowdhury,JR, Chowdhury,NR]
通讯作者: Chowdhury,NR
Microtubular disruption prolongs the expression of human bilirubin-uridinediphosphoglucuronate-glucuronosyltransferase-1 gene transferred into Gunn rat livers.
微管破坏延长了转移至 Gunn 大鼠肝脏中的人胆红素-尿苷二磷酸葡萄糖醛酸-葡萄糖醛酸基转移酶-1 基因的表达。
DOI: 10.1074/jbc.271.4.2341
发表时间: 1996
期刊: The Journal of biological chemistry
影响因子: --
作者: [Chowdhury,NR, Hays,RM, Bommineni,VR, Franki,N, Chowdhury,JR, Wu,CH, Wu,GY]
通讯作者: Wu,GY
47
    Deriving hepatocytes from disease specific iPS to treat metabolic liver disorders
    Deriving hepatocytes from disease specific iPS to treat metabolic liver disorders
    Deriving hepatocytes from disease specific iPS to treat metabolic liver disorders
    Deriving hepatocytes from disease specific iPS to treat metabolic liver disorders
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