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胰岛素受体的可变糖基化可阻止寡聚化以及胰岛素依赖性酪氨酸激酶活性的获得。

Alternative glycosylation of the insulin receptor prevents oligomerization and acquisition of insulin-dependent tyrosine kinase activity.

作者信息

Hwang J B, Hernandez J, Leduc R, Frost S C

出版信息

Biochim Biophys Acta. 2000 Dec 11;1499(1-2):74-84. doi: 10.1016/s0167-4889(00)00109-9.

DOI:10.1016/s0167-4889(00)00109-9
PMID:11118640
Abstract

Glucose deprivation leads to the synthesis of an aberrantly glycosylated ('alternative') and inefficiently processed form of the insulin proreceptor in 3T3-L1 adipocytes. To further explore the effect of aberrant (rather than absent) N-linked glycosylation of the insulin receptor, we examined the relationship of processing to function. Our studies show that the alternative form of the proreceptor does not oligomerize nor does it acquire the ability to undergo insulin-sensitive autophosphorylation. This along with an interaction with the glucose-regulated stress protein GRP78/BiP implies inappropriate folding/dimerization and retention in the ER. Glucose refeeding causes the post-translational modification of the alternative form of the proreceptor to a novel 'intermediate' form which is independent of new protein synthesis. As little as 100 microM glucose (or mannose) can induce this modification. In vitro digestion of the alternative and intermediate proreceptors with SPC1/furin shows that both the alpha- and beta-subunit domains are glycosylated, albeit aberrantly. This implies that the aberrantly glycosylated proreceptor could serve as a substrate for SPC1 in a physiological setting if the receptor was able to interact with the enzyme in the appropriate compartment (i.e., the trans-Golgi network). Based on inhibitor studies, however, both the alternative and intermediate forms of the proreceptor appear to be primarily targeted to the proteasome for degradation.

摘要

葡萄糖剥夺会导致3T3-L1脂肪细胞中胰岛素前受体合成异常糖基化(“替代”)且加工效率低下的形式。为了进一步探究胰岛素受体异常(而非缺失)的N-连接糖基化的影响,我们研究了加工与功能之间的关系。我们的研究表明,前受体的替代形式不会寡聚化,也无法获得进行胰岛素敏感的自磷酸化的能力。这与它与葡萄糖调节应激蛋白GRP78/BiP的相互作用一起,意味着折叠/二聚化不适当并滞留在内质网中。重新提供葡萄糖会导致前受体的替代形式进行翻译后修饰,转变为一种新的“中间”形式,这种转变与新蛋白质合成无关。低至100微摩尔的葡萄糖(或甘露糖)就能诱导这种修饰。用SPC1/弗林蛋白酶对替代和中间前受体进行体外消化显示,α和β亚基结构域都被糖基化了,尽管是异常糖基化。这意味着,如果受体能够在适当的区室(即反式高尔基体网络)中与该酶相互作用,那么异常糖基化的前受体在生理环境中可能作为SPC1的底物。然而,基于抑制剂研究,前受体的替代形式和中间形式似乎主要靶向蛋白酶体进行降解。

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Alternative glycosylation of the insulin receptor prevents oligomerization and acquisition of insulin-dependent tyrosine kinase activity.胰岛素受体的可变糖基化可阻止寡聚化以及胰岛素依赖性酪氨酸激酶活性的获得。
Biochim Biophys Acta. 2000 Dec 11;1499(1-2):74-84. doi: 10.1016/s0167-4889(00)00109-9.
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