Loyola Alejandra, Almouzni Genevieve
Institut Curie/Section de Recherche, UMR 21826, rue d'Ulm, 75231 Paris Cedex 05, France.
Biochim Biophys Acta. 2004 Mar 15;1677(1-3):3-11. doi: 10.1016/j.bbaexp.2003.09.012.
In eukaryotic cells, highly basic histone proteins are associated with the DNA to form the nucleosome, the fundamental unit of chromatin. Histones are closely escorted by histone chaperones from their point of synthesis up to their delivery site. We will present an overview of the histone chaperones identified to date with their various roles, in an attempt to highlight their importance in cellular metabolism. Nucleoplasmin will illustrate a role in histone storage and Nap-1, a histone translocator. CAF-1 and Hira will provide examples of distinct histone deposition factors coupled to and uncoupled from DNA synthesis, respectively, while Asf1 could act as a histone donor. We then will illustrate with two examples how histone chaperones can be associated with chromatin remodeling activities. Finally, we will discuss how the RbAp46/48 proteins, as escort factors, are part of multiple complexes with various functions. Based on these examples, we will propose a scheme in which the diverse roles of histone chaperones are integrated within an assembly line for chromatin formation and regulation. Finally, we discuss how these chaperones may have more than a supporting role in a histone metabolic pathway.
在真核细胞中,高度碱性的组蛋白与DNA结合形成核小体,即染色质的基本单位。从合成位点到递送位点,组蛋白伴侣紧密陪伴着组蛋白。我们将概述迄今已鉴定出的组蛋白伴侣及其各种作用,以强调它们在细胞代谢中的重要性。核质蛋白将说明其在组蛋白储存中的作用,而Nap-1是一种组蛋白转运蛋白。CAF-1和Hira将分别提供与DNA合成相关和不相关的不同组蛋白沉积因子的例子,而Asf1可以作为组蛋白供体。然后,我们将通过两个例子说明组蛋白伴侣如何与染色质重塑活动相关联。最后,我们将讨论RbAp46/48蛋白作为护送因子如何成为具有各种功能的多种复合物的一部分。基于这些例子,我们将提出一个方案,其中组蛋白伴侣的不同作用整合在染色质形成和调控的装配线中。最后,我们讨论这些伴侣在组蛋白代谢途径中可能如何发挥不仅仅是支持性的作用。