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Downregulation of hepatic betaine:homocysteine methyltransferase (BHMT) expression in taurine-deficient mice is reversed by taurine supplementation in vivo

机译:牛磺酸在体内的补充可逆转牛磺酸缺乏小鼠肝甜菜碱:同型半胱氨酸甲基转移酶(BHMT)的表达

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摘要

The cysteine dioxygenase (Cdo1)-null and the cysteine sulfinic acid decarboxylase (Csad)-null mouse are not able to synthesize hypotaurine/taurine by the cysteine/cysteine sulfinate pathway and have very low tissue taurine levels. These mice provide excellent models for studying the effects of taurine on biological processes. Using these mouse models, we identified betaine:homocysteine methyltransferase (BHMT) as a protein whose in vivo expression is robustly regulated by taurine. BHMT levels are low in liver of both Cdo1-null and Csad-null mice, but are restored to wild-type levels by dietary taurine supplementation. A lack of BHMT activity was indicated by an increase in the hepatic betaine level. In contrast to observations in liver of Cdo1-null and Csad-null mice, BHMT was not affected by taurine supplementation of primary hepatocytes from these mice. Likewise, CSAD abundance was not affected by taurine supplementation of primary hepatocytes, although it was robustly upregulated in liver of Cdo1-null and Csad-null mice and lowered to wild-type levels by dietary taurine supplementation. The mechanism by which taurine status affects hepatic CSAD and BHMT expression appears to be complex and to require factors outside of hepatocytes. Within the liver, mRNA abundance for both CSAD and BHMT was upregulated in parallel with protein levels, indicating regulation of BHMT and CSAD mRNA synthesis or degradation.
机译:半胱氨酸双加氧酶(Cdo1)为空和半胱氨酸亚硫酸脱羧酶(Csad)-无效的小鼠无法通过半胱氨酸/半胱氨酸亚磺酸途径合成亚牛磺酸/牛磺酸,并且组织牛磺酸水平非常低。这些小鼠为研究牛磺酸对生物过程的影响提供了极好的模型。使用这些小鼠模型,我们确定了甜菜碱:同型半胱氨酸甲基转移酶(BHMT)是一种蛋白质,其体内表达受到牛磺酸的强烈调节。在Cdo1-null和Csad-null小鼠的肝脏中,BHMT水平均较低,但通过补充牛磺酸饮食可将其恢复至野生型水平。肝脏甜菜碱水平升高表明缺乏BHMT活性。与在Cdo1-null和Csad-null小鼠的肝脏中观察到的相反,牛磺酸补充了这些小鼠的原代肝细胞对BHMT的影响。同样,CSAD的丰度不受牛磺酸补充原代肝细胞的影响,尽管它在Cdo1-null和Csad-null小鼠的肝脏中被强烈上调,并通过饮食牛磺酸来降低至野生型水平。牛磺酸状态影响肝脏CSAD和BHMT表达的机制似乎很复杂,需要肝细胞以外的因子。在肝脏中,CSAD和BHMT的mRNA丰度与蛋白质水平平行上调,表明BHMT和CSAD mRNA合成或降解受到调控。

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