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ACAT1 and ACAT2 Membrane Topology Segregates a Serine Residue Essential for Activity to Opposite Sides of the Endoplasmic Reticulum Membrane

机译:ACAT1和ACAT2膜拓扑隔离丝氨酸残基 内质网对侧活动必不可少的 膜

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摘要

A second form of the enzyme acyl-CoA:cholesterol acyltransferase, ACAT2, has been identified. To explore the hypothesis that the two ACAT enzymes have separate functions, the membrane topologies of ACAT1 and ACAT2 were examined. A glycosylation reporter and FLAG epitope tag sequence was appended to a series of ACAT cDNAs truncated after each predicted transmembrane domain. Fusion constructs were assembled into microsomal membranes, in vitro, and topologies were determined based on glycosylation site use and accessibility to exogenous protease. The accessibility of the C-terminal FLAG epitope in constructs was determined by immunofluorescence microscopy of permeabilized transfected cells. Both ACAT1 and ACAT2 span the membrane five times with their N termini in the cytosol and C termini in the ER lumen. The fourth transmembrane domain is located in a different region for each protein, placing the putative active site ACAT1 serine (Ser269) in the cytosol and the analogous residue in ACAT2 (Ser249) in the ER lumen. Mutation of these serines inactivated the ACAT enzymes. The outcome is consistent with the hypothesis that cholesterol ester formation by ACAT2 may be coupled to lipoprotein particle assembly and secretion, whereas ACAT1 may function primarily to maintain the balance of free and esterified cholesterol intracellularly.
机译:已经鉴定出第二种形式的酰基辅酶A:胆固醇酰基转移酶ACAT2。为了探究两种ACAT酶具有独立功能的假说,研究了ACAT1和ACAT2的膜拓扑。糖基化报告基因和FLAG表位标签序列被附加到在每个预测的跨膜结构域后被截短的一系列ACAT cDNA。将融合构建体组装到微粒体膜中,在体外,并基于糖基化位点的使用和对外源蛋白酶的可及性确定拓扑。通过透化转染的细胞的免疫荧光显微镜检查确定构建体中C末端FLAG表位的可及性。 ACAT1和ACAT2跨膜五次,其N末端位于细胞溶质中,C末端位于ER管腔中。对于每种蛋白质,第四个跨膜结构域位于不同的区域,将假定的活性位点ACAT1丝氨酸(Ser269)置于胞质溶胶中,并将类似的残基置于ER管腔的ACAT2(Ser249)中。这些丝氨酸的突变使ACAT酶失活。结果与 ACAT2形成胆固醇酯可能与 脂蛋白颗粒的组装和分泌,而ACAT1可能起作用 主要是为了维持游离和酯化胆固醇的平衡 细胞内。

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