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The mPlrp2 and mClps genes are involved in the hydrolysis of retinyl esters in the mouse liver

机译:mPlrp2和mClps基因参与小鼠肝脏中视黄酯的水解

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摘要

Retinyl esters are the major chemical forms of vitamin A stored in the liver, and can be delivered to peripheral tissues for conversion into biologically active forms. The function and regulation of the hepatic genes that are potentially involved in catalyzing the hydrolysis of retinyl esters remain unclear. Here we show that two lipid hydrolytic genes, pancreatic-related protein 2 (mPlrp2) and procolipase (mClps), expressed specifically in the mouse pancreas, are associated with the ratio of S-adenosylmethionine (AdoMet) to S-adenosylhomocysteine (AdoHcy). Light illumination deficiency or administration of 5′-AMP elevated the ratio of AdoMet to AdoHcy and induced the expression in the liver of mPlrp2 and mClps, which was blocked by all-trans retinoic acid. Mice fed a vitamin A-free diet exhibited increased activation of hepatic mPlrp2 and mClps expression, which was associated with increased methylation of histone H3K4 residues located near the mPlrp2 and mClps promoters. Inhibition of hepatic mPlrp2 and mClps expression by a methylase inhibitor, methylthioadenosine, markedly decreased plasma retinol levels in these mice. The activated hepatic stellate cell (HSC)-T6 cell line specifically expressed mClps and mPlrp2. Inhibition of mClps gene expressions by short hairpin RNA (shRNA) decreased hydrolysis of retinyl esters in the HSC-T6 cell line. These data suggest that the conditional expression of mPlrp2 and mClps is involved in the hydrolysis of retinyl esters in the mouse liver.
机译:视黄酯是储存在肝脏中的维生素A的主要化学形式,可以传递至周围组织以转化为生物活性形式。尚不清楚可能参与催化视黄酯水解的肝基因的功能和调节。在这里我们显示了两个脂质水解基因,胰腺相关蛋白2(mPlrp2)和原脂酶(mClps),在小鼠胰腺中特异性表达,与S-腺苷甲硫氨酸(AdoMet)与S-腺苷同型半胱氨酸(AdoHcy)的比率有关。光照不足或给予5'-AMP会增加AdoMet与AdoHcy的比率,并诱导mPlrp2和mClps在肝脏中的表达,这被全反式维甲酸所阻断。喂食无维生素A饮食的小鼠肝mPlrp2和mClps表达的激活增加,这与位于mPlrp2和mClps启动子附近的组蛋白H3K4残基的甲基化增加有关。甲基化酶抑制剂甲基硫代腺苷对肝mPlrp2和mClps表达的抑制作用明显降低了这些小鼠的血浆视黄醇水平。活化的肝星状细胞(HSC)-T6细胞系特异性表达mClps和mPlrp2。短发夹RNA(shRNA)抑制mClps基因表达可减少HSC-T6细胞系中视黄酯的水解。这些数据表明 mPlrp2 mClps 的条件表达与小鼠肝脏中视黄酯的水解有关。

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