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Mtmr13/Sbf2基因缺陷小鼠:一种CMT4B2的动物模型。

Mtmr13/Sbf2-deficient mice: an animal model for CMT4B2.

作者信息

Tersar Kristian, Boentert Matthias, Berger Philipp, Bonneick Sonja, Wessig Carsten, Toyka Klaus V, Young Peter, Suter Ueli

机构信息

Institute of Cell Biology, Department of Biology, ETH Zürich, Switzerland.

出版信息

Hum Mol Genet. 2007 Dec 15;16(24):2991-3001. doi: 10.1093/hmg/ddm257. Epub 2007 Sep 12.

Abstract

Charcot-Marie-Tooth (CMT) disease denotes a large group of genetically heterogeneous hereditary motor and sensory neuropathies and ranks among the most common inherited neurological disorders. Mutations in the Myotubularin-Related Protein-2 (MTMR2) or MTMR13/Set-Binding Factor-2 (SBF2) genes are associated with the autosomal recessive disease subtypes CMT4B1 or CMT4B2. Both forms of CMT share similar features including a demyelinating neuropathy associated with reduced nerve conduction velocity (NCV) and focally folded myelin. Consistent with a common disease mechanism, the homodimeric MTMR2 acts as a phosphoinositide D3-phosphatase with phosphatidylinositol (PtdIns) 3-phosphate and PtdIns 3,5-bisphosphate as substrates while MTMR13/SBF2 is catalytically inactive but can form a tetrameric complex with MTMR2, resulting in a strong increase of the enzymatic activity of complexed MTMR2. To prove that MTMR13/SBF2 is the disease-causing gene in CMT4B2 and to provide a suitable animal model, we have generated Mtmr13/Sbf2-deficient mice. These animals reproduced myelin outfoldings and infoldings in motor and sensory peripheral nerves as the pathological hallmarks of CMT4B2, concomitant with decreased motor performance. The number and complexity of myelin misfoldings increased with age, associated with axonal degeneration, and decreased compound motor action potential amplitude. Prolonged F-wave latency indicated a mild NCV impairment. Loss of Mtmr13/Sbf2 did not affect the levels of its binding partner Mtmr2 and the Mtmr2-binding Dlg1/Sap97 in peripheral nerves. Mice deficient in Mtmr13/Sbf2 together with known Mtmr2-deficient animals will be of major value to unravel the disease mechanism in CMT4B and to elucidate the critical functions of protein complexes that are involved in phosphoinositide-controlled processes in peripheral nerves.

摘要

夏科-马里-图斯(CMT)病是一大类具有遗传异质性的遗传性运动和感觉神经病变,是最常见的遗传性神经疾病之一。与常染色体隐性疾病亚型CMT4B1或CMT4B2相关的是肌管素相关蛋白2(MTMR2)或MTMR13/Set结合因子2(SBF2)基因的突变。两种形式的CMT具有相似的特征,包括与神经传导速度(NCV)降低和局灶性折叠髓鞘相关的脱髓鞘性神经病变。与常见疾病机制一致,同型二聚体MTMR2作为一种磷酸肌醇D3磷酸酶,以磷脂酰肌醇(PtdIns)3-磷酸和PtdIns 3,5-二磷酸为底物,而MTMR13/SBF2无催化活性,但可与MTMR2形成四聚体复合物,导致复合MTMR2酶活性大幅增加。为了证明MTMR13/SBF2是CMT4B2中的致病基因并提供合适的动物模型,我们培育了Mtmr13/Sbf2基因缺陷小鼠。这些动物在运动和感觉外周神经中重现了髓鞘的外折叠和内折叠,作为CMT4B2的病理特征,同时伴有运动能力下降。髓鞘错折叠的数量和复杂性随年龄增加而增加,并伴有轴突变性和复合运动动作电位幅度降低。F波潜伏期延长表明轻度NCV受损。Mtmr13/Sbf2的缺失不影响其结合伴侣Mtmr2和外周神经中与Mtmr2结合的Dlg1/Sap97水平。Mtmr13/Sbf2基因缺陷小鼠与已知的Mtmr2基因缺陷动物一起,对于阐明CMT4B中的疾病机制以及阐明参与外周神经磷酸肌醇控制过程的蛋白质复合物的关键功能具有重要价值。

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