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歪脖侏儒(cn)突变鸡低密度原代培养的骨骼肌细胞无法表达正常的α-兰尼碱受体,并表现出部分突变表型。

Crooked neck dwarf (cn) mutant chicken skeletal muscle cells in low density primary cultures fail to express normal alpha ryanodine receptor and exhibit a partial mutant phenotype.

作者信息

Airey J A, Deerinck T J, Ellisman M H, Houenou L J, Ivanenko A, Kenyon J L, McKemy D D, Sutko J L

机构信息

Department of Pharmacology, University of Nevada School of Medicine, Reno 89557.

出版信息

Dev Dyn. 1993 Jul;197(3):189-202. doi: 10.1002/aja.1001970304.

Abstract

The Crooked Neck Dwarf (cn) mutation in chickens causes marked changes in intact embryonic skeletal muscle. We have investigated whether the cn/cn phenotype develops in vitro, and if cultured muscle cells are suitable for studies of this mutation. The properties of cn/cn muscle cells maintained in low density primary cultures (6.25 x 10(3) cells/cm2) are described in this report. In normal muscle cells, the alpha ryanodine receptor (RyR) isoform appears prior to, and at greater levels than, the beta RyR, and is detected in mononucleated myocytes. The beta RyR isoform appears within 24 hr after the initiation of myotube formation, which is earlier than anticipated from studies with intact embryonic muscle. Normal alpha RyR protein is not detected in cultured cn/cn muscle cells, whereas the beta RyR, the alpha 1-subunit of the dihydropyridine receptor, the sarcoplasmic reticulum Ca(2+)-ATPase, and calsequestrin are expressed at comparable levels in normal and mutant muscle cells. Calcium transients elicited by electrical stimulation, acetylcholine, and caffeine are similar in normal and cn/cn cultured myotubes and are blocked by ryanodine in both cell types. In addition, comparable L- and T-type calcium currents are observed in normal and mutant muscle cells, suggesting that both the alpha 1-subunit of the dihydropyridine receptor and the beta RyR in mutant muscle cells are functional. Normal and cn/cn muscle cells proliferate and form myotubes in a similar manner. These latter events do not appear to depend on sarcoplasmic reticulum calcium release, as they also occur in normal muscle cells in which calcium release is prevented by chronic treatment with 100 microM ryanodine. Both cn/cn and ryanodine-treated normal muscle cells exhibit morphological changes similar to those observed in intact cn/cn skeletal muscle. Thus, the mutant phenotype observed in ovo is partially expressed under low density culture conditions, and neither beta RyR protein nor its function appear to be capable of preventing the associated changes.

摘要

鸡的弯颈侏儒(cn)突变导致完整胚胎骨骼肌发生显著变化。我们研究了cn/cn表型是否在体外发育,以及培养的肌肉细胞是否适合对该突变进行研究。本报告描述了维持在低密度原代培养(6.25×10³个细胞/cm²)中的cn/cn肌肉细胞的特性。在正常肌肉细胞中,α-兰尼碱受体(RyR)同工型比β-RyR出现得早且水平更高,并且在单核肌细胞中可检测到。β-RyR同工型在肌管形成开始后24小时内出现,这比完整胚胎肌肉研究预期的要早。在培养的cn/cn肌肉细胞中未检测到正常的α-RyR蛋白,而β-RyR、二氢吡啶受体的α1亚基、肌浆网Ca²⁺-ATP酶和肌集钙蛋白在正常和突变肌肉细胞中的表达水平相当。电刺激、乙酰胆碱和咖啡因引发的钙瞬变在正常和cn/cn培养的肌管中相似,并且在两种细胞类型中都被兰尼碱阻断。此外,在正常和突变肌肉细胞中观察到相当的L型和T型钙电流,表明突变肌肉细胞中的二氢吡啶受体α1亚基和β-RyR都是有功能的。正常和cn/cn肌肉细胞以相似的方式增殖并形成肌管。后述这些事件似乎不依赖于肌浆网钙释放,因为它们也发生在经100μM兰尼碱长期处理而阻止钙释放的正常肌肉细胞中。cn/cn和经兰尼碱处理的正常肌肉细胞都表现出与完整cn/cn骨骼肌中观察到的相似的形态变化。因此,在卵内观察到的突变表型在低密度培养条件下部分表达,并且β-RyR蛋白及其功能似乎都无法阻止相关变化。

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