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

  • Hwang, Joseph B.
  • Hernandez, Jonathan
  • Leduc, Richard
  • Frost, Susan C.
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Publication date
December 2000
Publisher
Elsevier Science B.V.

Abstract

AbstractGlucose 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 ...

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