Tail-anchored membrane protein SLMAP3 is essential for targeting centrosomal proteins to the nuclear envelope in skeletal myogenesis

被引:2
作者
Dias, Ana Paula [1 ]
Rehmani, Taha [1 ]
Salih, Maysoon [1 ]
Tuana, Balwant [1 ]
机构
[1] Univ Ottawa, Dept Cellular & Mol Med, Ottawa K1H 8M5, ON, Canada
关键词
SLMAP3; skeletal myogenesis; non-centrosomal microtubule-organizing centre; Golgi; LINC complex; nuclear envelope; SARCOLEMMAL-ASSOCIATED PROTEINS; MICROTUBULE-ORGANIZING CENTERS; GOLGI-COMPLEX; LAMIN-A/C; MUSCLE DIFFERENTIATION; EXPRESSION; EMERIN; NESPRIN-1-ALPHA; QUANTIFICATION; REORGANIZATION;
D O I
10.1098/rsob.240094
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The positioning and communication between the nucleus and centrosomes are essential in cell division, differentiation and tissue formation. During skeletal myogenesis, the nuclei become evenly spaced with the switch of the microtubule-organizing centre (MTOC) from the centrosome to the nuclear envelope (NE). We report that the tail-anchored sarcolemmal membrane associated protein 3 (SLMAP3), a component of the MTOC and NE, is crucial for myogenesis because its deletion in mice leads to a reduction in the NE-MTOC formation, mislocalization of the nuclei, dysregulation of the myogenic programme and abnormal embryonic myofibres. SLMAP3-/- myoblasts also displayed a similar disorganized distribution of nuclei with an aberrant NE-MTOC and defective myofibre formation and differentiation programming. We identified novel interactors of SLMAP3, including pericentrin, PCM1 (pericentriolar material 1), AKAP9 (A-kinase anchoring protein 9), kinesin-1 members Kif5B (kinesin family member 5B), KCL1 (kinesin light chain 1), KLC2 (kinesin light chain 2) and nuclear lamins, and observed that the distribution of centrosomal proteins at the NE together with Nesprin-1 was significantly altered by the loss of SLMAP3 in differentiating myoblasts. SLMAP3 is believed to negatively regulate Hippo signalling, but its loss was without impact on this pathway in developing muscle. These results reveal that SLMAP3 is essential for skeletal myogenesis through unique mechanisms involving the positioning of nuclei, NE-MTOC dynamics and gene programming.
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页数:18
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