The Power of Human Protective Modifiers: PLS3 and CORO1C Unravel Impaired Endocytosis in Spinal Muscular Atrophy and Rescue SMA Phenotype

被引:129
作者
Hosseinibarkooie, Seyyedmohsen [1 ,2 ,3 ]
Peters, Miriam [1 ,2 ,3 ]
Torres-Benito, Laura [1 ,2 ,3 ]
Rastetter, Raphael H.
Hupperich, Kristina [1 ,2 ,3 ]
Hoffmann, Andrea [1 ,2 ,3 ]
Mendoza-Ferreira, Natalia [1 ,2 ,3 ]
Kaczmarek, Anna [1 ,2 ,3 ]
Janzen, Eva [1 ,2 ,3 ]
Milbradt, Janine [1 ,2 ,3 ]
Lamkemeyer, Tobias [4 ]
Rigo, Frank [6 ]
Bennett, C. Frank [6 ]
Guschlbauer, Christoph [7 ]
Bueschges, Ansgar [7 ]
Hammerschmidt, Matthias [3 ,8 ]
Riessland, Markus [1 ,2 ,3 ,9 ]
Kye, Min Jeong [1 ]
Clemen, Christoph S. [5 ]
Wirth, Brunhilde [1 ,2 ,3 ]
机构
[1] Univ Cologne, Inst Human Genet, D-50931 Cologne, Germany
[2] Univ Cologne, Inst Genet, D-50674 Cologne, Germany
[3] Univ Cologne, Ctr Mol Med Cologne, D-50931 Cologne, Germany
[4] Univ Cologne, Cologne Excellence Cluster Cellular Stress Respon, D-50931 Cologne, Germany
[5] Univ Cologne, Ctr Biochem, Inst Biochem 1, Fac Med, D-50931 Cologne, Germany
[6] IONIS Pharmaceut, Carlsbad, CA 92008 USA
[7] Univ Cologne, Inst Zool, Bioctr, Neurophysiol, D-50674 Cologne, Germany
[8] Univ Cologne, Inst Zool, Bioctr, Dev Biol, D-50674 Cologne, Germany
[9] Rockefeller Univ, Lab Mol & Cellular Neurosci, New York, NY 10065 USA
关键词
SURVIVAL-MOTOR-NEURON; MORPHOLINO ANTISENSE OLIGOMER; DISEASE GENE-PRODUCT; MOUSE MODEL; NEUROMUSCULAR-JUNCTION; MESSENGER-RNA; STEP PURIFICATION; NERVE-TERMINALS; ACTIN DYNAMICS; CELL-DEATH;
D O I
10.1016/j.ajhg.2016.07.014
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Homozygous loss of SMN1 causes spinal muscular atrophy (SMA), the most common and devastating childhood genetic motor-neuron disease. The copy gene SMN2 produces only similar to 10% functional SMN protein, insufficient to counteract development of SMA. In contrast, the human genetic modifier plastin 3 (PLS3), an actin-binding and-bundling protein, fully protects against SMA in SMN/-deleted individuals carrying 3-4 SMN2 copies. Here, we demonstrate that the combinatorial effect of suboptimal SMN antisense oligonucleotide treatment and PLS3 overexpression a situation resembling the human condition in asymptomatic SMN1-deleted individuals rescues survival (from 14 to >250 days) and motoric abilities in a severe SMA mouse model. Because PLS3 knockout in yeast impairs endocytosis, we hypothesized that disturbed endocytosis might be a key cellular mechanism underlying impaired neurotransmission and neuromuscular junction maintenance in SMA. Indeed, SMN deficit dramatically reduced endocytosis, which was restored to normal levels by PLS3 overexpression. Upon low-frequency electro-stimulation, endocytotic FM1-43 (SynaptoGreen) uptake in the presynaptic terminal of neuromuscular junctions was restored to control levels in SMA-PLS3 mice. Moreover, proteomics and biochemical analysis revealed CORO1C, another F-actin binding protein, whose direct binding to PLS3 is dependent on calcium. Similar to PLS3 overexpression, CORO1C overexpression restored fluid-phase endocytosis in SMN-knockdown cells by elevating F-actin amounts and rescued the axonal truncation and branching phenotype in Smn-depleted zebrafish. Our findings emphasize the power of genetic modifiers to unravel the cellular pathomechanisms underlying SMA and the power of combinatorial therapy based on splice correction of SMN2 and endocytosis improvement to efficiently treat SMA.
引用
收藏
页码:647 / 665
页数:19
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