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两种对O-聚糖具有特异性的脑唾液酸转移酶对溶血磷脂酰胆碱、DIDS和胰蛋白酶的不同反应性:其在内质网膜上的拓扑结构的结果

Different reactivity to lysophosphatidylcholine, DIDS and trypsin of two brain sialyltransferases specific for O-glycans: a consequence of their topography in the endoplasmic membranes.

作者信息

Baubichon-Cortay H, Serres-Guillaumond M, Broquet P, Louisot P

出版信息

Biochim Biophys Acta. 1986 Nov 17;862(2):243-53. doi: 10.1016/0005-2736(86)90225-7.

Abstract

Some properties of two distinct rat brain sialyltransferases, acting on fetuin and asialofetuin, respectively, were investigated. These two membrane-bound enzymes were both strongly inhibited by charged phospholipids. Neutral phospholipids were without effect except lysophosphatidylcholine (lysoPC) which modulated these two enzymes in a different way. At 5 mM lysoPC, the fetuin sialyltransferase was solubilized and highly activated while the asialofetuin sialyltransferase was inhibited. Preincubation of brain microsomes with 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid (DIDS), known as a specific anion inhibitor and a non-penetrating probe, led to a moderate inhibition of the asialofetuin sialyltransferase just as in the case of the ovomucoid galactosyltransferase (used here as a marker for the luminal side of the Golgi membrane); under similar conditions, the fetuin sialyltransferase was strongly inhibited. In the presence of Triton X-100, which induced a disruption of membranes, all three enzymes were strongly inhibited by DIDS. Trypsin action on intact membranes showed that asialofetuin sialyltransferase, galactosyltransferase and fetuin sialyltransferase were all slightly inhibited. After membrane disruption by Triton X-100, the first two enzymes were completely inactivated by trypsin while the fetuin sialyltransferase was quite insensitive to trypsin treatment. From these data, we suggest that the fetuin sialyltransferase, accessible to DIDS, is an external enzyme, oriented closely towards the cytoplasmic side of the brain microsomal vesicles (endoplasmic and Golgi membranes), whereas the asialofetuin sialyltransferase is an internal enzyme, oriented in a similar manner to the galactosyltransferase. Moreover, the anion site (nucleotide sugar binding site) of the fetuin sialyltransferase must be different from its active site, as this enzyme, when solubilized, is strongly inhibited by DIDS while no degradation is observed in the presence of trypsin.

摘要

分别作用于胎球蛋白和去唾液酸胎球蛋白的两种不同大鼠脑唾液酸转移酶的一些特性进行了研究。这两种膜结合酶均受到带电荷磷脂的强烈抑制。中性磷脂无作用,但溶血磷脂酰胆碱(lysoPC)以不同方式调节这两种酶。在5 mM lysoPC时,胎球蛋白唾液酸转移酶被溶解并高度激活,而去唾液酸胎球蛋白唾液酸转移酶则被抑制。脑微粒体与4,4'-二异硫氰基芪-2,2'-二磺酸(DIDS,一种已知的特异性阴离子抑制剂和非穿透性探针)预孵育,导致去唾液酸胎球蛋白唾液酸转移酶受到适度抑制,就像卵类粘蛋白半乳糖基转移酶(在此用作高尔基体膜腔面的标志物)的情况一样;在类似条件下,胎球蛋白唾液酸转移酶受到强烈抑制。在Triton X-100存在下,它会导致膜的破坏,所有三种酶都受到DIDS的强烈抑制。胰蛋白酶对完整膜的作用表明,去唾液酸胎球蛋白唾液酸转移酶、半乳糖基转移酶和胎球蛋白唾液酸转移酶均受到轻微抑制。在Triton X-100破坏膜后,前两种酶被胰蛋白酶完全灭活,而胎球蛋白唾液酸转移酶对胰蛋白酶处理相当不敏感。根据这些数据,我们认为可被DIDS作用的胎球蛋白唾液酸转移酶是一种外部酶,紧密朝向脑微粒体囊泡(内质网和高尔基体膜)的细胞质侧,而去唾液酸胎球蛋白唾液酸转移酶是一种内部酶,其取向与半乳糖基转移酶类似。此外,胎球蛋白唾液酸转移酶的阴离子位点(核苷酸糖结合位点)必须与其活性位点不同,因为这种酶在溶解时受到DIDS的强烈抑制,而在胰蛋白酶存在下未观察到降解。

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