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大鼠胰岛和HIT细胞对外源糖三肽的无调节分泌。

Unregulated secretion of an exogenous glycotripeptide by rat islets and HIT cells.

作者信息

Gold G, Wieland F T, Grodsky G M

机构信息

Eli Lilly and Company, Lilly Corporate Center, Indianapolis, IN 46285.

出版信息

Biochem Biophys Res Commun. 1988 Oct 14;156(1):457-62. doi: 10.1016/s0006-291x(88)80863-5.

Abstract

Freshly isolated rat islets and cultured hamster insulinoma cells (HIT T15) were incubated with a membrane-permeable octanoyl tripeptide (N-octanoyl-ASN-TYR-THR-NH2), which contains an acceptor sequence for ASN-linked glycosylation. Labeled octanoyltripeptide (125[I]TYR) was glycosylated by both islets and HIT cells. The carbohydrate moiety of this glycotripeptide was removed by N-glycanase indicating that glycotripeptide was formed in the lumen of endoplasmic reticulum and, subsequently was secreted via the route for secretory protein. Secretion of glycotripeptide began more rapidly than that of insulin newly synthesized from 3[H]leucine. At 30 min glycotripeptide secretion was already significant but, over a 3-h period, it never represented more than 21% of glycotripeptide produced. Glycotripeptide secretion was not affected by compounds shown to regulate insulin secretion (glucose, forskolin, EGTA and streptozotocin). Thus in beta cells, it appears that glycotripeptide secretion is unregulated and that its cellular secretory pathway is different from that for insulin.

摘要

将新鲜分离的大鼠胰岛和培养的仓鼠胰岛素瘤细胞(HIT T15)与一种膜通透性辛酰三肽(N-辛酰-天冬酰胺-酪氨酸-苏氨酸-氨基)一起孵育,该辛酰三肽含有N-连接糖基化的受体序列。标记的辛酰三肽(125[I]酪氨酸)在胰岛和HIT细胞中均发生了糖基化。用N-聚糖酶去除了这种糖基化三肽的碳水化合物部分,这表明糖基化三肽是在内质网腔中形成的,随后通过分泌蛋白的途径分泌。糖基化三肽的分泌比新合成的3[H]亮氨酸胰岛素的分泌开始得更快。在30分钟时,糖基化三肽的分泌已经很显著,但在3小时内,其分泌量从未超过所产生糖基化三肽的21%。糖基化三肽的分泌不受已证明可调节胰岛素分泌的化合物(葡萄糖、福斯可林、乙二醇双乙胺醚和链脲佐菌素)的影响。因此,在β细胞中,糖基化三肽的分泌似乎不受调节,并且其细胞分泌途径与胰岛素的不同。

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