Miyakawa T, Maeda A, Yamazawa T, Hirose K, Kurosaki T, Iino M
Department of Pharmacology, Faculty of Medicine, The University of Tokyo, CREST, Japan.
EMBO J. 1999 Mar 1;18(5):1303-8. doi: 10.1093/emboj/18.5.1303.
Inositol 1,4,5-trisphosphate (IP3) plays a key role in Ca2+ signalling, which exhibits a variety of spatio-temporal patterns that control important cell functions. Multiple subtypes of IP3 receptors (IP3R-1, -2 and -3) are expressed in a tissue- and development-specific manner and form heterotetrameric channels through which stored Ca2+ is released, but the physiological significance of the differential expression of IP3R subtypes is not known. We have studied the Ca2+-signalling mechanism in genetically engineered B cells that express either a single or a combination of IP3R subtypes, and show that Ca2+-signalling patterns depend on the IP3R subtypes, which differ significantly in their response to agonists, i.e. IP3, Ca2+ and ATP. IP3R-2 is the most sensitive to IP3 and is required for the long lasting, regular Ca2+ oscillations that occur upon activation of B-cell receptors. IP3R-1 is highly sensitive to ATP and mediates less regular Ca2+ oscillations. IP3R-3 is the least sensitive to IP3 and Ca2+, and tends to generate monophasic Ca2+ transients. Furthermore, we show for the first time functional interactions between coexpressed subtypes. Our results demonstrate that differential expression of IP3R subtypes helps to encode IP3-mediated Ca2+ signalling.
肌醇1,4,5 -三磷酸(IP3)在Ca2+信号传导中起关键作用,Ca2+信号传导呈现出多种时空模式,这些模式控制着重要的细胞功能。IP3受体的多种亚型(IP3R - 1、- 2和- 3)以组织和发育特异性的方式表达,并形成异源四聚体通道,储存的Ca2+通过这些通道释放,但IP3R亚型差异表达的生理学意义尚不清楚。我们研究了表达单一或多种IP3R亚型组合的基因工程B细胞中的Ca2+信号传导机制,结果表明Ca2+信号传导模式取决于IP3R亚型,它们对激动剂(即IP3、Ca2+和ATP)的反应存在显著差异。IP3R - 2对IP3最为敏感,是B细胞受体激活时发生的持久、规则的Ca2+振荡所必需的。IP3R - 1对ATP高度敏感,并介导不太规则的Ca2+振荡。IP3R - 3对IP3和Ca2+最不敏感,倾向于产生单相Ca2+瞬变。此外,我们首次展示了共表达亚型之间的功能相互作用。我们的结果表明,IP3R亚型的差异表达有助于编码IP3介导的Ca2+信号传导。