Thorogate Richard, Török Katalin
Division of Basic Medical Sciences, St George's University of London, London SW17 0RE, UK.
Biochem J. 2007 Feb 15;402(1):71-80. doi: 10.1042/BJ20061111.
Ca2+ signalling to the nucleus is thought to occur by calmodulin entry into the nucleus where calmodulin has many functions. In the present study we have investigated the role of Ca2+ and the N- and C-terminal lobes of calmodulin in its subnuclear targeting by using fluorescently labelled calmodulin and its mutants and confocal microscopy. Our data show, first, that Ca2+ stimulation induces a reorganization of subnuclear structures to which apo-calmodulin can bind. Secondly, Ca2+-independent association of the C-terminal lobe is seen with subnuclear structures such as chromatin, the nuclear envelope and the nucleoli. Thirdly, Ca2+-dependent accumulation of both calmodulin and the C-terminal calmodulin lobe occurs in the nucleoli. The N-terminal lobe of calmodulin does not show significant binding to subnuclear structures although, similarly to the C-terminal lobe, it accumulates in the nucleoplasm of wheat germ agglutinin-blocked nuclei suggesting that a facilitated nuclear export mechanism exists for calmodulin.
钙离子向细胞核的信号传导被认为是通过钙调蛋白进入细胞核来实现的,在细胞核中钙调蛋白具有多种功能。在本研究中,我们使用荧光标记的钙调蛋白及其突变体和共聚焦显微镜,研究了钙离子以及钙调蛋白的N端和C端叶在其亚核靶向中的作用。我们的数据首先表明,钙离子刺激会诱导亚核结构的重组,脱辅基钙调蛋白可以结合到这些结构上。其次,观察到C端叶与染色质、核膜和核仁等亚核结构存在不依赖钙离子的结合。第三,钙调蛋白和C端钙调蛋白叶在核仁中发生依赖钙离子的积累。钙调蛋白的N端叶与亚核结构没有明显的结合,尽管与C端叶类似,它在小麦胚芽凝集素阻断的细胞核的核质中积累,这表明钙调蛋白存在一种促进性的核输出机制。