Takeshima H, Yamazawa T, Ikemoto T, Takekura H, Nishi M, Noda T, Iino M
Department of Neurochemistry, Tokyo Institute of Psychiatry, Japan.
EMBO J. 1995 Jul 3;14(13):2999-3006. doi: 10.1002/j.1460-2075.1995.tb07302.x.
While subtypes 1 and 2 of the ryanodine receptor (RyR) function as intracellular Ca2+ release channels, little is known about the function of the third subtype (RyR-3), first identified in brain. Myocytes from mice homozygous for a targeted mutation in the RyR-1 gene (dyspedic mice) can now be used for a study on the function of RyR-3, which is predominantly expressed in these cells according to our reverse transcription-polymerase chain reaction analysis. We here demonstrate in these myocytes caffeine-, ryanodine- and adenine nucleotide-sensitive Ca(2+)-induced Ca2+ release with approximately 10 times lower sensitivity to Ca2+ than that of RyR-1. Although RyR-3 does not mediate excitation-contraction coupling of the skeletal muscle type, we propose that RyR-3 may induce intracellular Ca2+ release in response to a Ca2+ rise with a high threshold.
尽管兰尼碱受体(RyR)的1型和2型作为细胞内Ca2+释放通道发挥作用,但对首次在脑中发现的第三种亚型(RyR-3)的功能却知之甚少。根据我们的逆转录-聚合酶链反应分析,RyR-1基因发生靶向突变的纯合子小鼠(dyspedic小鼠)的心肌细胞现在可用于研究RyR-3的功能,RyR-3在这些细胞中大量表达。我们在此证明,在这些心肌细胞中,咖啡因、兰尼碱和腺嘌呤核苷酸敏感的Ca(2+)诱导的Ca2+释放对Ca2+的敏感性比RyR-1低约10倍。尽管RyR-3不介导骨骼肌类型的兴奋-收缩偶联,但我们认为RyR-3可能在Ca2+升高且阈值较高时诱导细胞内Ca2+释放。