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Monoclonal antibodies against muscle actin isoforms: epitope identification and analysis of isoform expression by immunoblot and immunostaining in normal and regenerating skeletal muscle

机译:抗肌动蛋白亚型的单克隆抗体:通过免疫印迹和免疫染色在正常和再生骨骼肌中进行抗原表位鉴定和亚型表达分析

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摘要

Higher vertebrates (mammals and birds) express six different highly conserved actin isoforms that can be classified in three subgroups: 1) sarcomeric actins, α-skeletal (α-SKA) and α-cardiac (α-CAA), 2) smooth muscle actins (SMAs), α-SMA and γ-SMA, and 3) cytoplasmic actins (CYAs), β-CYA and γ-CYA. The variations among isoactins, in each subgroup, are due to 3-4 amino acid differences located in their acetylated N-decapeptide sequence. The first monoclonal antibody (mAb) against an actin isoform (α-SMA) was produced and characterized in our laboratory in 1986 (Skalli  et al., 1986) . We have further obtained mAbs against the 5 other isoforms. In this report, we focus on the mAbs anti-α-SKA and anti-α-CAA obtained after immunization of mice with the respective acetylated N-terminal decapeptides using the Repetitive Immunizations at Multiple Sites Strategy (RIMMS). In addition to the identification of their epitope by immunoblotting, we describe the expression of the 2 sarcomeric actins in mature skeletal muscle and during muscle repair after micro-lesions. In particular, we analyze the expression of α-CAA, α-SKA and α-SMA by co-immunostaining in a time course frame during the muscle repair process. Our results indicate that a restricted myocyte population expresses α-CAA and suggest a high capacity of self-regeneration in muscle cells. These antibodies may represent a helpful tool for the follow-up of muscle regeneration and pathological changes.
机译:高等脊椎动物(哺乳动物和鸟类)表达六种不同的高度保守的肌动蛋白同工型,可分为三个亚组:1)肌节肌动蛋白,α-骨骼肌(α-SKA)和α-心脏(α-CAA),2)平滑肌肌动蛋白(SMAs),α-SMA和γ-SMA,以及3)胞质肌动蛋白(CYA),β-CYA和γ-CYA。每个亚组中异肌动蛋白之间的差异是由于位于其乙酰化N-十肽序列中的3-4个氨基酸不同。第一个针对肌动蛋白同工型(α-SMA)的单克隆抗体(mAb)于1986年在我们的实验室中生产并鉴定(Skalli et al。,1986)。我们进一步获得了针对其他5种亚型的单克隆抗体。在本报告中,我们集中于使用多部位重复免疫策略(RIMMS)用相应的乙酰化N末端十肽对小鼠进行免疫后获得的单克隆抗体抗α-SKA和抗α-CAA。除了通过免疫印迹鉴定其表位外,我们还描述了2种肌节肌动蛋白在成熟骨骼肌中以及微损伤后肌肉修复过程中的表达。特别地,我们通过在肌肉修复过程中的时间过程中进行免疫共染色来分析α-CAA,α-SKA和α-SMA的表达。我们的结果表明,受限制的心肌细胞群表达α-CAA,并暗示了肌肉细胞中自我再生的能力强。这些抗体可能代表了肌肉再生和病理变化的后续追踪的有用工具。

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