首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Increased Laforin and Laforin Binding to Glycogen Underlie Lafora Body Formation in Malin-deficient Lafora Disease
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Increased Laforin and Laforin Binding to Glycogen Underlie Lafora Body Formation in Malin-deficient Lafora Disease

机译:马林缺乏性拉福拉病中拉福林和拉福林与糖原的结合增加了拉福拉身体的形成。

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摘要

The solubility of glycogen, essential to its metabolism, is a property of its shape, a sphere generated through extensive branching during synthesis. Lafora disease (LD) is a severe teenage-onset neurodegenerative epilepsy and results from multiorgan accumulations, termed Lafora bodies (LB), of abnormally structured aggregation-prone and digestion-resistant glycogen. LD is caused by loss-of-function mutations in the EPM2A or EPM2B gene, encoding the interacting laforin phosphatase and malin E3 ubiquitin ligase enzymes, respectively. The substrate and function of malin are unknown; an early counterintuitive observation in cell culture experiments that it targets laforin to proteasomal degradation was not pursued until now. The substrate and function of laforin have recently been elucidated. Laforin dephosphorylates glycogen during synthesis, without which phosphate ions interfere with and distort glycogen construction, leading to LB. We hypothesized that laforin in excess or not removed following its action on glycogen also interferes with glycogen formation. We show in malin-deficient mice that the absence of malin results in massively increased laforin preceding the appearance of LB and that laforin gradually accumulates in glycogen, which corresponds to progressive LB generation. We show that increasing the amounts of laforin in cell culture causes LB formation and that this occurs only with glycogen binding-competent laforin. In summary, malin deficiency causes increased laforin, increased laforin binding to glycogen, and LB formation. Furthermore, increased levels of laforin, when it can bind glycogen, causes LB. We conclude that malin functions to regulate laforin and that malin deficiency at least in part causes LB and LD through increased laforin binding to glycogen.
机译:糖原的溶解性对其代谢至关重要,它是糖原形状的一种特性,是合成过程中通过大量分支产生的球形。 Lafora病(LD)是一种严重的青少年发作性神经退行性癫痫病,由多器官堆积(称为Lafora体(LB))导致,其结构异常易聚集且具有消化抗性糖原。 LD是由EPM2A或EPM2B基因的功能丧失突变引起的,该基因分别编码相互作用的laforin磷酸酶和malin E3泛素连接酶。马林的底物和功能尚不清楚。直到现在,仍未在细胞培养实验中发现将laforin靶向蛋白酶体降解的早期反直觉观察。最近已经阐明了laforin的底物和功能。 Laforin在合成过程中使糖原去磷酸化,否则,磷酸根离子会干扰并扭曲糖原的构建,从而导致LB。我们假设,laforin对糖原的作用过量或未清除后,也会干扰糖原的形成。我们显示在缺乏马林蛋白的小鼠中,缺乏马林蛋白会导致LB出现之前大量增加的laforin,并且laforin逐渐在糖原中积累,这与进行性LB生成相对应。我们表明,增加细胞培养物中laforin的数量会导致LB的形成,并且这种情况仅在具有糖原结合能力的laforin中发生。总而言之,马林蛋白缺乏症会导致laforin增加,laforin与糖原结合增加以及LB形成。此外,当laforin可以结合糖原时,其水平升高会导致LB。我们得出结论,马林蛋白具有调节laforin的功能,并且马林蛋白缺乏至少部分通过增加laforin与糖原的结合而导致LB和LD。

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