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鉴定蛋白激酶D为一种与GLUT4介导的葡萄糖摄取相关的新型收缩激活激酶,独立于AMPK。

Identification of protein kinase D as a novel contraction-activated kinase linked to GLUT4-mediated glucose uptake, independent of AMPK.

作者信息

Luiken Joost J F P, Vertommen Didier, Coort Susan L M, Habets Daphna D J, El Hasnaoui Mohammed, Pelsers Maurice M L, Viollet Benoit, Bonen Arend, Hue Louis, Rider Mark H, Glatz Jan F C

机构信息

Department of Molecular Genetics, Cardiovascular Research Institute Maastricht (CARIM), Maastricht University, Maastricht, The Netherlands.

出版信息

Cell Signal. 2008 Mar;20(3):543-56. doi: 10.1016/j.cellsig.2007.11.007. Epub 2007 Nov 26.

Abstract

Contraction-induced glucose uptake is only partly mediated by AMPK activation. We examined whether the diacylglycerol-sensitive protein kinase D (PKD; also known as novel PKC isoform mu) is also involved in the regulation of glucose uptake in the contracting heart. As an experimental model, we used suspensions of cardiac myocytes, which were electrically stimulated to contract or treated with the contraction-mimicking agent oligomycin. Induction of contraction at 4 Hz in cardiac myocytes or treatment with 1 microM oligomycin enhanced (i) autophosphorylation of PKD at Ser916 by 5.1- and 3.8-fold, respectively, (ii) phosphorylation of PKD's downstream target cardiac-troponin-I (cTnI) by 2.9- and 2.1-fold, respectively, and (iii) enzymatic activity of immunoprecipitated PKD towards the substrate peptide syntide-2 each by 1.5-fold. Although AMPK was also activated under these same conditions, in vitro phosphorylation assays and studies with cardiac myocytes from AMPKalpha2(-/-) mice indicated that activation of PKD occurs independent of AMPK activation. CaMKKbeta, and the cardiac-specific PKC isoforms alpha, delta, and epsilon were excluded as upstream kinases for PKD in contraction signaling because none of these kinases were activated by oligomycin. Stimulation of glucose uptake and induction of GLUT4 translocation in cardiac myocytes by contraction and oligomycin each were sensitive to inhibition by the PKC/PKD inhibitors staurosporin and calphostin-C. Together, these data elude to a role of PKD in contraction-induced GLUT4 translocation. Finally, the combined actions of PKD on cTnI phosphorylation and on GLUT4 translocation would efficiently link accelerated contraction mechanics to increased energy production when the heart is forced to increase its contractile activity.

摘要

收缩诱导的葡萄糖摄取仅部分由AMPK激活介导。我们研究了二酰基甘油敏感蛋白激酶D(PKD;也称为新型蛋白激酶C亚型μ)是否也参与收缩期心脏葡萄糖摄取的调节。作为实验模型,我们使用心肌细胞悬液,对其进行电刺激使其收缩或用模拟收缩的药物寡霉素处理。心肌细胞以4 Hz频率诱导收缩或用1 μM寡霉素处理分别使(i)PKD在Ser916位点的自磷酸化增加5.1倍和3.8倍,(ii)PKD的下游靶点心肌肌钙蛋白I(cTnI)的磷酸化分别增加2.9倍和2.1倍,以及(iii)免疫沉淀的PKD对底物肽syntide-2的酶活性各增加1.5倍。尽管在相同条件下AMPK也被激活,但体外磷酸化实验以及对来自AMPKα2基因敲除小鼠的心肌细胞的研究表明,PKD的激活独立于AMPK的激活。CaMKKβ以及心脏特异性蛋白激酶C亚型α、δ和ε被排除在收缩信号中作为PKD的上游激酶,因为这些激酶均未被寡霉素激活。收缩和寡霉素刺激心肌细胞摄取葡萄糖并诱导GLUT4转位均对蛋白激酶C/PKD抑制剂星形孢菌素和钙磷蛋白C的抑制敏感。总之,这些数据表明PKD在收缩诱导的GLUT4转位中起作用。最后,当心脏被迫增加其收缩活动时,PKD对cTnI磷酸化和GLUT4转位的联合作用将有效地将加速的收缩力学与增加的能量产生联系起来。

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