Department of Pharmacology, University of Medicine and Dentistry of New Jersey (UMDNJ)-Robert Wood Johnson Medical School, Piscataway, New Jersey 08854, USA.
J Biol Chem. 2010 Nov 19;285(47):36828-35. doi: 10.1074/jbc.M110.157792. Epub 2010 Sep 21.
Msc1, a member of the Jarid1 family of putative histone demethylases, is required for chromosome stability in fission yeast. Msc1 associates with the Swr1 complex that facilitates deposition of histone H2A.Z into chromatin. To assess the function of Msc1 in the Swr1 complex, domains of Msc1 necessary for interaction with Swr1 were identified. The C-terminal plant homeodomain (PHD) 2 and PHD3 of Msc1 are sufficient to confer association with Swr1 and allow Msc1 to function in the context of kinetochore mutants. On the other hand, a mutant with a single amino acid substitution in PHD2 within the full-length Msc1 protein retains the ability to bind to Swr1 but eliminates the function of Msc1 in combination with kinetochore mutants. Thus, Swr1 association is critical but not sufficient for Msc1 function. An activity of Msc1 that depends on the cysteine residue within PHD2 of Msc1 is likewise critical for function. On the basis of our observation that the PHDs of Msc1 act as E3 ubiquitin ligases and that mutations of cysteine residues within those domains abolish ligase activity, we speculate that the ability of Msc1 to facilitate ubiquitin transfer is critical for the function it mediates through its association with Swr1.
Msc1 是组蛋白去甲基酶 Jarid1 家族的成员,它在裂殖酵母中维持染色体稳定性是必需的。Msc1 与 Swr1 复合物结合,促进组蛋白 H2A.Z 沉积到染色质中。为了评估 Msc1 在 Swr1 复合物中的功能,确定了与 Swr1 相互作用所需的 Msc1 结构域。Msc1 的 C 端植物同源结构域(PHD)2 和 PHD3 足以与 Swr1 结合,并允许 Msc1 在动粒突变体的背景下发挥作用。另一方面,全长 Msc1 蛋白中 PHD2 内单个氨基酸替换的突变体保留与 Swr1 结合的能力,但消除了 Msc1 与动粒突变体结合的功能。因此,Swr1 结合对于 Msc1 功能至关重要,但不是必需的。Msc1 的一种依赖于 Msc1 的 PHD2 内半胱氨酸残基的活性对于功能同样至关重要。基于我们观察到 Msc1 的 PHD 作为 E3 泛素连接酶,并且这些结构域内的半胱氨酸残基的突变消除了连接酶活性,我们推测 Msc1 促进泛素转移的能力对于其通过与 Swr1 结合介导的功能至关重要。