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MTMR2 和 FIG4 磷脂酶之间的遗传相互作用与遗传性运动感觉神经病有关。

Genetic interaction between MTMR2 and FIG4 phospholipid phosphatases involved in Charcot-Marie-Tooth neuropathies.

机构信息

Human Inherited Neuropathies Unit, INSPE-Institute for Experimental Neurology, Division of Neuroscience, San Raffaele Scientific Institute, Milan, Italy.

出版信息

PLoS Genet. 2011 Oct;7(10):e1002319. doi: 10.1371/journal.pgen.1002319. Epub 2011 Oct 20.

Abstract

We previously reported that autosomal recessive demyelinating Charcot-Marie-Tooth (CMT) type 4B1 neuropathy with myelin outfoldings is caused by loss of MTMR2 (Myotubularin-related 2) in humans, and we created a faithful mouse model of the disease. MTMR2 dephosphorylates both PtdIns3P and PtdIns(3,5)P(2), thereby regulating membrane trafficking. However, the function of MTMR2 and the role of the MTMR2 phospholipid phosphatase activity in vivo in the nerve still remain to be assessed. Mutations in FIG4 are associated with CMT4J neuropathy characterized by both axonal and myelin damage in peripheral nerve. Loss of Fig4 function in the plt (pale tremor) mouse produces spongiform degeneration of the brain and peripheral neuropathy. Since FIG4 has a role in generation of PtdIns(3,5)P(2) and MTMR2 catalyzes its dephosphorylation, these two phosphatases might be expected to have opposite effects in the control of PtdIns(3,5)P(2) homeostasis and their mutations might have compensatory effects in vivo. To explore the role of the MTMR2 phospholipid phosphatase activity in vivo, we generated and characterized the Mtmr2/Fig4 double null mutant mice. Here we provide strong evidence that Mtmr2 and Fig4 functionally interact in both Schwann cells and neurons, and we reveal for the first time a role of Mtmr2 in neurons in vivo. Our results also suggest that imbalance of PtdIns(3,5)P(2) is at the basis of altered longitudinal myelin growth and of myelin outfolding formation. Reduction of Fig4 by null heterozygosity and downregulation of PIKfyve both rescue Mtmr2-null myelin outfoldings in vivo and in vitro.

摘要

我们之前报道过,伴有髓鞘折叠的常染色体隐性脱髓鞘性夏科-马里-图思病(CMT)4B1 神经病是由人类 MTMR2(肌管相关蛋白 2)的缺失引起的,并且我们创建了该疾病的忠实小鼠模型。MTMR2 去磷酸化 PtdIns3P 和 PtdIns(3,5)P(2),从而调节膜运输。然而,MTMR2 的功能以及 MTMR2 磷脂磷酸酶活性在体内神经中的作用仍有待评估。FIG4 突变与 CMT4J 神经病有关,其特征是周围神经中的轴突和髓鞘损伤。plt(苍白震颤)小鼠中 Fig4 功能的丧失会导致大脑和周围神经的海绵状变性。由于 FIG4 在产生 PtdIns(3,5)P(2 中具有作用,并且 MTMR2 催化其去磷酸化,因此这两种磷酸酶可能在控制 PtdIns(3,5)P(2 平衡方面具有相反的作用,并且它们的突变在体内可能具有补偿作用。为了探索 MTMR2 磷脂磷酸酶活性在体内的作用,我们生成并表征了 Mtmr2/Fig4 双缺失突变小鼠。在这里,我们提供了强有力的证据表明,MTMR2 和 Fig4 在 Schwann 细胞和神经元中具有功能相互作用,并且我们首次揭示了 MTMR2 在体内神经元中的作用。我们的结果还表明,PtdIns(3,5)P(2 的失衡是改变纵向髓鞘生长和髓鞘折叠形成的基础。通过 null 杂合性降低 Fig4 和下调 PIKfyve 都可以在体内和体外挽救 Mtmr2 缺失型的髓鞘折叠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3777/3197679/eb2e555f6051/pgen.1002319.g001.jpg

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