Bossuyt X, Blanckaert N
Laboratory of Biological Chemistry, Department of Molecular Cell Biology, Catholic University of Leuven, Belgium.
Biochem J. 1996 Apr 1;315 ( Pt 1)(Pt 1):189-93. doi: 10.1042/bj3150189.
The UDP-glucuronosyltransferase (UGT) system fulfils a pivotal role in the biotransformation of potentially toxic endogenous and exogenous compounds. Here we report that the activity of UGT in rat liver is stimulated by UDP-xylose. This stimulation was found in native microsomal vesicles as well as in the intact endoplasmic reticulum (ER) membrane, as studied in permeabilized hepatocytes, indicating the potential physiological importance of UDP-xylose in the regulation of UGT. We present evidence that UDP-xylose enhances UGT activity by stimulation of (i) the uptake of UDP-glucuronic acid across the ER membrane and (ii) the elimination of the UDP and/or UMP reaction product out of the ER lumen. UDP-xyloe produced a marked trans-stimulation of microsomal UDP-glucuronic acid uptake when it was present within the lumen of the ER. When UDP-xylose was presented at the cytosolic side of the ER, it acted as a weak inhibitor of UDP-glucuronic acid uptake. Likewise, cytosolic UDP-glucuronic acid strongly trans-stimulated efflux of intravesicular UDP-xylose, whereas cytosolic UDP-xylose was inefficient in trans-stimulating efflux of UDP-glucuronic acid. Microsomal UDP-xylose influx was markedly stimulated by UMP and UDP. Such stimulation was only apparent when microsomes had been preincubated and thereby preloaded with UMP or UDP, indicating that UMP and UDP exeted their effect on UDP-xylose uptake by trans-stimulation from the luminal side of the ER membrane.
UDP-葡萄糖醛酸基转移酶(UGT)系统在潜在毒性内源性和外源性化合物的生物转化中起着关键作用。在此,我们报告UDP-木糖可刺激大鼠肝脏中UGT的活性。在天然微粒体囊泡以及完整的内质网(ER)膜中均发现了这种刺激作用,这是在透化肝细胞中进行研究得出的结果,表明UDP-木糖在UGT调节中具有潜在的生理重要性。我们提供的证据表明,UDP-木糖通过刺激以下过程来增强UGT活性:(i)UDP-葡萄糖醛酸跨ER膜的摄取;(ii)将UDP和/或UMP反应产物从ER腔中清除。当UDP-木糖存在于ER腔内时,它对微粒体UDP-葡萄糖醛酸的摄取产生显著的反式刺激作用。当UDP-木糖出现在ER的胞质侧时,它作为UDP-葡萄糖醛酸摄取的弱抑制剂起作用。同样,胞质UDP-葡萄糖醛酸强烈反式刺激囊泡内UDP-木糖的流出,而胞质UDP-木糖在反式刺激UDP-葡萄糖醛酸流出方面效率较低。UMP和UDP可显著刺激微粒体UDP-木糖的流入。只有当微粒体预先孵育并因此预先加载了UMP或UDP时,这种刺激才明显,这表明UMP和UDP通过从ER膜腔侧的反式刺激作用来影响UDP-木糖的摄取。