Specific Deletion of the FHA Domain Containing SLMAP3 Isoform in Postnatal Myocardium Has No Impact on Structure or Function

IF 0.5 Q4 CARDIAC & CARDIOVASCULAR SYSTEMS Cardiogenetics Pub Date : 2021-10-04 DOI:10.3390/cardiogenetics11040018
Taha Rehmani, Jana Mlynarova, J. Byers, M. Salih, B. Tuana
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引用次数: 1

Abstract

Sarcolemmal membrane-associated proteins (SLMAPs) belong to the superfamily of tail-anchored membrane proteins known to regulate diverse biological processes, including protein trafficking and signal transduction. Mutations in SLMAP have been linked to Brugada and defective sodium channel Nav1.5 shuttling. The SLMAP gene is alternatively spliced to generate numerous isoforms, broadly defined as SLMAP1 (~35 kDa), SLMAP2 (~45 kDa) and SLMAP3 (~80–95 kDa), which are highly expressed in the myocardium. The SLMAP3 isoform exhibits ubiquitous expression carrying an FHA domain and is believed to negatively regulate Hippo signaling to dictate cell growth/death and differentiation. Using the αMHC-MerCreMer-flox system to target the SLMAP gene, we specifically deleted the SLMAP3 isoform in postnatal mouse hearts without any changes in the expression of SLMAP1/SLMAP2 isoforms. The in vivo analysis of mice with SLMAP3 cardiac deficiency revealed no significant changes to heart structure or function in young or aged mice without or with isoproterenol-induced stress. SLMAP3-deficient hearts revealed no obvious differences in cardiac size, function or hypertrophic response. Further, the molecular analysis indicated that SLMAP3 loss had a minor impact on sodium channel (Nav1.5) expression without affecting cardiac electrophysiology in postnatal myocardium. Surprisingly, the loss of SLMAP3 did not impact Hippo signaling in postnatal myocardium. We conclude that the FHA domain-containing SLMAP3 isoform has no impact on Hippo signaling or sodium channels in postnatal myocardium, which is able to function and respond normally to stress in its absence. Whether SLMAP1/SMAP2 isoforms can compensate for the loss of SLMAP3 in the affairs of the postnatal heart remains to be determined.
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产后心肌中含有SLMAP3异构体的FHA结构域的特异性缺失对结构或功能没有影响
肌鞘膜相关蛋白(SLMAP)属于尾锚定膜蛋白的超家族,已知其调节多种生物过程,包括蛋白质运输和信号转导。SLMAP的突变与Brugada和钠通道Nav1.5穿梭缺陷有关。SLMAP基因交替剪接产生许多亚型,广泛定义为SLMAP1(~35 kDa)、SLMAP2(~45 kDa)和SLMAP3(~80–95 kDa,在心肌中高度表达)。SLMAP3亚型表现出携带FHA结构域的普遍表达,并且被认为负调控Hippo信号传导以支配细胞生长/死亡和分化。使用αMHC-MerCreMer-flox系统靶向SLMAP基因,我们特异性地删除了出生后小鼠心脏中的SLMAP3亚型,而SLMAP1/SLMAP2亚型的表达没有任何变化。对SLMAP3心脏缺陷小鼠的体内分析显示,在没有或有异丙肾上腺素诱导的应激的年轻或老年小鼠中,心脏结构或功能没有显著变化。SLMAP3缺陷心脏在心脏大小、功能或肥大反应方面没有明显差异。此外,分子分析表明,SLMAP3的缺失对钠通道(Nav1.5)的表达影响较小,而不影响出生后心肌的心脏电生理。令人惊讶的是,SLMAP3的缺失并没有影响出生后心肌中Hippo信号传导。我们得出的结论是,含有FHA结构域的SLMAP3亚型对出生后心肌中的Hippo信号传导或钠通道没有影响,后者能够在没有压力的情况下正常发挥功能并对压力做出反应。SLMAP1/SMAP2亚型是否能补偿出生后心脏事务中SLMAP3的损失还有待确定。
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来源期刊
Cardiogenetics
Cardiogenetics CARDIAC & CARDIOVASCULAR SYSTEMS-
自引率
0.00%
发文量
26
审稿时长
11 weeks
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