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首页> 外文期刊>Human Molecular Genetics >Calcium binding is essential for plastin 3 function in Smn-deficient motoneurons
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Calcium binding is essential for plastin 3 function in Smn-deficient motoneurons

机译:钙结合对于Smn缺乏的运动神经元中促塑质素3的功能至关重要

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The actin-binding and bundling protein, plastin 3 (PLS3), was identified as a protective modifier of spinal muscular atrophy (SMA) in some patient populations and as a disease modifier in animal models of SMA. How it functions in this process, however, is not known. Because PLS3 is an actin-binding/bundling protein, we hypothesized it would likely act via modification of the actin cytoskeleton in axons and neuromuscular junctions to protect motoneurons in SMA. To test this, we examined the ability of other known actin cytoskeleton organizing proteins to modify motor axon outgrowth phenotypes in an smn morphant zebrafish model of SMA. While PLS3 can fully compensate for low levels of smn, cofilin 1, profilin 2 and -actinin 1 did not affect smn morphant motor axon outgrowth. To determine how PLS3 functions in SMA, we generated deletion constructs of conserved PLS3 structural domains. The EF hands were essential for PLS3 rescue of smn morphant phenotypes, and mutation of the Ca-2-binding residues within the EF hands resulted in a complete loss of PLS3 rescue. These results indicate that Ca-2 regulation is essential for the function of PLS3 in motor axons. Remarkably, PLS3 mutants lacking both actin-binding domains were still able to rescue motor axons in smn morphants, although not as well as full-length PLS3. Therefore, PLS3 function in this process may have an actin-independent component.
机译:肌动蛋白结合和捆绑蛋白plastin 3(PLS3)在某些患者群体中被确定为脊髓性肌萎缩症(SMA)的保护性修饰剂,在SMA动物模型中被视为疾病修饰剂。但是,如何在此过程中发挥作用尚不清楚。因为PLS3是一种肌动蛋白结合/捆绑蛋白,所以我们推测它可能通过修饰轴突和神经肌肉接头中的肌动蛋白细胞骨架来保护SMA中的运动神经元而发挥作用。为了测试这一点,我们检查了其他已知的肌动蛋白细胞骨架组织蛋白在SMA的smn morphant斑马鱼模型中修饰运动轴突生长表型的能力。虽然PLS3可以完全补偿低水平的smn,但cofilin 1,profilin 2和-actinin 1不会影响smn morphant运动轴突的生长。为了确定PLS3在SMA中的功能,我们生成了保守PLS3结构域的缺失构建体。 EF手对于SLS形态表型的PLS3拯救至关重要,EF手上Ca-2结合残基的突变导致PLS3拯救完全丧失。这些结果表明,Ca-2调节对于运动轴突中PLS3的功能至关重要。值得注意的是,虽然没有全长PLS3,但缺乏两个肌动蛋白结合域的PLS3突变体仍能够挽救smn形态发生子中的运动轴突。因此,此过程中的PLS3功能可能具有肌动蛋白独立组件。

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