Zhao X, Ito A, Kane C D, Liao T S, Bolger T A, Lemrow S M, Means A R, Yao T P
Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, North Carolina 27710, USA.
J Biol Chem. 2001 Sep 14;276(37):35042-8. doi: 10.1074/jbc.M105086200. Epub 2001 Jul 24.
In C2C12 myoblasts, endogenous histone deacetylase HDAC4 shuttles between cytoplasmic and nuclear compartments, supporting the hypothesis that its subcellular localization is dynamically regulated. However, upon differentiation, this dynamic equilibrium is disturbed and we find that HDAC4 accumulates in the nuclei of myotubes, suggesting a positive role of nuclear HDAC4 in muscle differentiation. Consistent with the notion of regulation of HDAC4 intracellular trafficking, we reveal that HDAC4 contains a modular structure consisting of a C-terminal autonomous nuclear export domain, which, in conjunction with an internal regulatory domain responsive to calcium/calmodulin-dependent protein kinase IV (CaMKIV), determines its subcellular localization. CaMKIV phosphorylates HDAC4 in vitro and promotes its nuclear-cytoplasmic shuttling in vivo. However, although 14-3-3 binding of HDAC4 has been proposed to be important for its cytoplasmic retention, we find this interaction to be independent of CaMKIV. Rather, the HDAC4.14-3-3 complex exists in the nucleus and is required to confer CaMKIV responsiveness. Our results suggest that the subcellular localization of HDAC4 is regulated by sequential phosphorylation events. The first event is catalyzed by a yet to be identified protein kinase that promotes 14-3-3 binding, and the second event, involving protein kinases such as CaMKIV, leads to efficient nuclear export of the HDAC4.14-3-3 complex.
在C2C12成肌细胞中,内源性组蛋白脱乙酰酶HDAC4在细胞质和细胞核区室之间穿梭,支持其亚细胞定位受到动态调控这一假说。然而,在分化过程中,这种动态平衡被打破,我们发现HDAC4在肌管细胞核中积累,表明细胞核中的HDAC4在肌肉分化中发挥积极作用。与HDAC4细胞内运输的调控概念一致,我们发现HDAC4包含一个模块化结构,由一个C端自主核输出结构域组成,该结构域与一个对钙/钙调蛋白依赖性蛋白激酶IV(CaMKIV)有反应的内部调节结构域共同决定其亚细胞定位。CaMKIV在体外使HDAC4磷酸化,并在体内促进其核质穿梭。然而,尽管有人提出HDAC4与14-3-3的结合对其在细胞质中的滞留很重要,但我们发现这种相互作用与CaMKIV无关。相反,HDAC4-14-3-3复合物存在于细胞核中,是赋予CaMKIV反应性所必需的。我们的结果表明,HDAC4的亚细胞定位受连续磷酸化事件的调控。第一个事件由一种尚未确定的蛋白激酶催化,该激酶促进14-3-3结合,第二个事件涉及CaMKIV等蛋白激酶,导致HDAC4-14-3-3复合物有效地核输出。