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首页> 外文期刊>The FEBS journal >Coiled-coil interactions modulate multimerization, mitochondrial binding and kinase activity of myotonic dystrophy protein kinase splice isoforms
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Coiled-coil interactions modulate multimerization, mitochondrial binding and kinase activity of myotonic dystrophy protein kinase splice isoforms

机译:螺旋线圈相互作用调节强直性营养不良蛋白激酶剪接异构体的多聚,线粒体结合和激酶活性

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摘要

The myotonic dystrophy protein kinase polypeptide repertoire in mice and humans consists of six different splice isoforms that vary in the nature of their C-terminal tails and in the presence or absence of an internal Val-Ser-Gly-Gly-Gly motif. Here, we demonstrate that myotonic dystrophy protein kinase isoforms exist in high-molecular-weight complexes controlled by homo- and heteromultimerization. This multimerization is mediated by coiled-coil interactions in the tail-proximal domain and occurs independently of alternatively spliced protein segments or myotonic dystrophy protein kinase activity. Complex formation was impaired in myotonic dystrophy protein kinase mutants in which three leucines at positions a and d in the coiled-coil heptad repeats were mutated to glycines. These coiled-coil mutants were still capable of autophosphorylation and transphosphorylation of peptides, but the rates of their kinase activities were significantly lowered. Moreover, phosphorylation of the natural myotonic dystrophy protein kinase substrate, myosin phosphatase targeting subunit, was preserved, even though binding of the myotonic dystrophy protein kinase to the myosin phosphatase targeting subunit was strongly reduced. Furthermore, the association of myotonic dystrophy protein kinase isoform C to the mitochondrial outer membrane was weakened when the coiled-coil interaction was perturbed. Our findings indicate that the coiled-coil domain modulates myotonic dystrophy protein kinase multimerization, substrate binding, kinase activity and subcellular localization characteristics.
机译:小鼠和人类中的强直性肌营养不良蛋白激酶多肽库由六个不同的剪接同工型组成,这些剪接同工型的C末端尾巴的性质以及是否存在内部Val-Ser-Gly-Gly-Gly基序都不同。在这里,我们证明强直性营养不良蛋白激酶同工型存在于由均聚和异源多聚化控制的高分子量复合物中。这种多聚化是由尾部近端结构域中的卷曲螺旋相互作用介导的,并且独立于交替剪接的蛋白片段或强直性营养不良蛋白激酶活性而发生。在强直性肌营养不良蛋白激酶突变体中,复合物的形成被削弱,其中在卷曲螺旋七肽重复序列的a和d位置的三个亮氨酸被突变为甘氨酸。这些卷曲螺旋突变体仍具有肽的自磷酸化和转磷酸化能力,但其激酶活性速率显着降低。此外,天然肌强直性营养不良蛋白激酶底物,肌球蛋白磷酸酶靶向亚基的磷酸化被保留,即使强直肌营养不良蛋白激酶与肌球蛋白磷酸酶靶向亚基的结合也被保留。此外,当盘绕线圈相互作用被扰动时,肌强直性营养不良蛋白激酶同工型C与线粒体外膜的结合减弱。我们的发现表明,卷曲螺旋结构域调节强直性营养不良蛋白激酶的多聚化,底物结合,激酶活性和亚细胞定位特性。

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