D-glucose or 2-deoxyglucose inhibit the insulin receptor and it is spe'/> The inhibitory effect of 2‐deoxyglucose on insulin receptor autophosphorylation does not depend on known serine phosphorylation sites or other conserved serine residues of the receptor β‐subunit
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The inhibitory effect of 2‐deoxyglucose on insulin receptor autophosphorylation does not depend on known serine phosphorylation sites or other conserved serine residues of the receptor β‐subunit

机译:2-脱氧葡萄糖对胰岛素受体自身磷酸化的抑制作用并不取决于已知的丝氨酸磷酸化位点或受体β-亚基的其他保守丝氨酸残基

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>Hyperglycemia induces insulin resistance in diabetic patients. It is known that supraphysiological levels of class="smallCaps">D-glucose or 2-deoxyglucose inhibit the insulin receptor and it is speculated that this effect is mediated by serine phosphorylation of the insulin receptor β-subunit and other proteins of the insulin signaling chain. To test this hypothesis we prepared point mutations of the human insulin receptor where serine was exchanged to alanine at 16 different positions, either at known phosphorylation sites or at positions which are conserved in different tyrosine kinase receptors. These receptor constructs were expressed in HEK 293 cells and the effect of 2-deoxyglucose (25 mM) on insulin (100 nM) induced receptor autophosphorylation was studied. 2-Deoxyglucose consistently inhibits insulin stimulated autophosphorylation of all constructs to the same degree as observed in wild-type human insulin receptor. The data suggest that none of the chosen serine positions are involved in 2-deoxyglucose induced receptor inhibition.
机译:高血糖症可在糖尿病患者中诱导胰岛素抵抗。众所周知, class =“ smallCaps”> D -葡萄糖或2-脱氧葡萄糖的超生理水平会抑制胰岛素受体,推测这种作用是由胰岛素受体β-亚基的丝氨酸磷酸化介导的。胰岛素信号链的其他蛋白质。为了检验该假设,我们制备了人胰岛素受体的点突变,其中在已知的磷酸化位点或在不同的酪氨酸激酶受体中保守的位置,丝氨酸在16个不同的位置被交换为丙氨酸。这些受体构建体在HEK 293细胞中表达,并研究了2-脱氧葡萄糖(25 mM)对胰岛素(100 nM)诱导的受体自磷酸化的影响。 2-脱氧葡萄糖以与野生型人胰岛素受体相同的程度持续抑制胰岛素刺激的所有构建体的自磷酸化。数据表明,所选的丝氨酸位置均不参与2-脱氧葡萄糖诱导的受体抑制。

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