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两块快肌肌球蛋白模式的发育转变

Developmental transitions in the myosin patterns of two fast muscles.

作者信息

Gauthier G F, Orfanos G

机构信息

Department of Cell Biology, University of Massachusetts Medical School, Worcester 01655.

出版信息

J Muscle Res Cell Motil. 1993 Feb;14(1):99-109. doi: 10.1007/BF00132184.

Abstract

Transitions in myosin patterns were examined in situ by immunofluorescence in two fast muscles of the developing chicken, the pectoralis and the posterior latissimus dorsi. Myosin isoforms were localized using stage-specific monoclonal antibodies against the heavy chain of pectoralis myosin. Two antibodies (12C5 and 10H10) recognize adult and late embryonic myosin. They reacted weakly with both the pectoralis and posterior latissimus dorsi at 10 days in ovo, but intensely at 18 days in ovo. Both muscles were completely unreactive with an adult-specific antibody (5C3), indicating that the staining with 12C5 and 10H10 at 18 days in ovo reflects embryonic myosin. Thus two different embryonic isoforms are expressed sequentially in each muscle. Both 12C5 and 10H10 reacted weakly again with these muscles after hatching. The reappearance of a strong positive response to both antibodies, at 28 days in the pectoralis and after 60 days in the posterior latissimus dorsi, correlated well with the first appearance of a response to the adult-specific antibody, 5C3, signalling the beginning of the adult pattern. Both muscles reacted strongly with an antibody (5B4) specific for 'neonatal' myosin between 18 days in ovo and 60 days after hatching. In the pectoralis, embryonic was replaced by neonatal myosin in most fibres by 14 days after hatching; by 28 days, both adult and neonatal myosin were expressed in most fibres; and in the adult, neonatal myosin was replaced entirely by the adult isoform. In contrast, many fibres in the posterior latissimus dorsi still expressed both embryonic and neonatal myosins up to at least 60 days post-hatch, and the remaining fibres expressed the neonatal isoform; the neonatal isoform was present in some fibres even in the adult posterior latissimus dorsi. We have therefore demonstrated in situ four different heavy chain isoforms in two different fast muscles. 'Early embryonic', 'late embryonic', 'neonatal' and eventually 'adult' isoforms are expressed in each muscle and more than one isoform often coexists in the same fibre.

摘要

通过免疫荧光原位检测了发育中的鸡的两块快肌(胸肌和背阔肌后部)中肌球蛋白模式的转变。使用针对胸肌肌球蛋白重链的阶段特异性单克隆抗体定位肌球蛋白异构体。两种抗体(12C5和10H10)识别成年和晚期胚胎肌球蛋白。它们在胚胎发育10天时与胸肌和背阔肌后部的反应都很弱,但在胚胎发育18天时反应强烈。这两块肌肉对成年特异性抗体(5C3)完全无反应,表明在胚胎发育18天时用12C5和10H10染色反映的是胚胎肌球蛋白。因此,两种不同的胚胎异构体在每块肌肉中依次表达。孵化后,12C5和10H10对这些肌肉的反应再次变弱。胸肌在28天时以及背阔肌后部在60天后对这两种抗体再次出现强阳性反应,这与对成年特异性抗体5C3的反应首次出现密切相关,标志着成年模式的开始。在胚胎发育18天至孵化后60天之间,这两块肌肉对“新生儿”肌球蛋白特异性抗体(5B4)反应强烈。在胸肌中,大多数纤维在孵化后14天时胚胎肌球蛋白被新生儿肌球蛋白取代;到28天时,大多数纤维中同时表达成年和新生儿肌球蛋白;在成年期,新生儿肌球蛋白完全被成年异构体取代。相比之下,背阔肌后部的许多纤维在孵化后至少60天仍同时表达胚胎和新生儿肌球蛋白,其余纤维表达新生儿异构体;即使在成年背阔肌后部的一些纤维中也存在新生儿异构体。因此,我们在原位证明了两块不同的快肌中存在四种不同的重链异构体。“早期胚胎”、“晚期胚胎”、“新生儿”以及最终的“成年”异构体在每块肌肉中表达,并且通常不止一种异构体共存于同一纤维中。

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