Lady Davis Institute for Medical Research, Jewish General Hospital, McGill University, Montréal, Quebec, Canada.
McGill University, Montréal, Quebec, Canada.
Mol Cell Biol. 2021 Mar 24;41(4). doi: 10.1128/MCB.00464-20.
The nuclear and subnuclear compartmentalization of the telomerase-associated protein and H/ACA ribonucleoprotein component dyskerin is an important although incompletely understood aspect of H/ACA ribonucleoprotein function. Four SUMOylation sites were previously identified in the C-terminal nuclear/nucleolar localization signal (N/NoLS) of dyskerin. We found that a cytoplasmic localized C-terminal truncation variant of dyskerin lacking most of the C-terminal N/NoLS represents an under-SUMOylated variant of dyskerin compared to wild-type dyskerin. We demonstrate that mimicking constitutive SUMOylation of dyskerin using a SUMO3 fusion construct can drive nuclear accumulation of this variant and that the SUMO site K467 in this N/NoLS is particularly important for the subnuclear localization of dyskerin to the nucleolus in a mature H/ACA complex assembly- and SUMO-dependent manner. We also characterize a novel SUMO-interacting motif in the mature H/ACA complex component GAR1 that mediates the interaction between dyskerin and GAR1. Mislocalization of dyskerin, either in the cytoplasm or excluded from the nucleolus, disrupts dyskerin function and leads to reduced interaction of dyskerin with the telomerase RNA. These data indicate a role for dyskerin C-terminal N/NoLS SUMOylation in regulating the nuclear and subnuclear localization of dyskerin, which is essential for dyskerin function as both a telomerase-associated protein and as an H/ACA ribonucleoprotein.
端粒酶相关蛋白和 H/ACA 核糖核蛋白成分 dyskerin 的核和亚核区室化是 H/ACA 核糖核蛋白功能的一个重要但尚未完全理解的方面。先前在 dyskerin 的 C 端核/核仁定位信号(N/NoLS)中鉴定了四个 SUMOylation 位点。我们发现 dyskerin 的缺乏大多数 C 端 N/NoLS 的细胞质定位 C 端截断变体与野生型 dyskerin 相比代表了 dyskerin 的低 SUMO 化变体。我们证明,使用 SUMO3 融合构建物模拟 dyskerin 的组成性 SUMOylation 可以驱动该变体的核积累,并且该 N/NoLS 中的 SUMO 位点 K467 对于成熟 H/ACA 复合物组装和 SUMO 依赖性方式下 dyskerin 向核仁的亚核定位特别重要。我们还在成熟的 H/ACA 复合物成分 GAR1 中表征了一个新的 SUMO 相互作用基序,该基序介导了 dyskerin 和 GAR1 之间的相互作用。dyskerin 的定位错误,无论是在细胞质中还是从核仁中排除,都会破坏 dyskerin 的功能,并导致 dyskerin 与端粒酶 RNA 的相互作用减少。这些数据表明 dyskerin C 端 N/NoLS SUMOylation 在调节 dyskerin 的核和亚核定位中起作用,这对于 dyskerin 作为端粒酶相关蛋白和 H/ACA 核糖核蛋白的功能至关重要。