Hellerschmied Doris, Roessler Max, Lehner Anita, Gazda Linn, Stejskal Karel, Imre Richard, Mechtler Karl, Dammermann Alexander, Clausen Tim
Research Institute of Molecular Pathology (IMP), Vienna BioCenter (VBC), Campus-Vienna-Biocenter 1, 1030, Vienna, Austria.
Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, CT, 06511, USA.
Nat Commun. 2018 Feb 2;9(1):484. doi: 10.1038/s41467-018-02924-7.
Muscle development requires the coordinated activities of specific protein folding and degradation factors. UFD-2, a U-box ubiquitin ligase, has been reported to play a central role in this orchestra regulating the myosin chaperone UNC-45. Here, we apply an integrative in vitro and in vivo approach to delineate the substrate-targeting mechanism of UFD-2 and elucidate its distinct mechanistic features as an E3/E4 enzyme. Using Caenorhabditis elegans as model system, we demonstrate that UFD-2 is not regulating the protein levels of UNC-45 in muscle cells, but rather shows the characteristic properties of a bona fide E3 ligase involved in protein quality control. Our data demonstrate that UFD-2 preferentially targets unfolded protein segments. Moreover, the UNC-45 chaperone can serve as an adaptor protein of UFD-2 to poly-ubiquitinate unfolded myosin, pointing to a possible role of the UFD-2/UNC-45 pair in maintaining proteostasis in muscle cells.
肌肉发育需要特定蛋白质折叠和降解因子的协同活动。UFD-2是一种U-box泛素连接酶,据报道在调节肌球蛋白伴侣UNC-45的这一过程中发挥核心作用。在此,我们采用体外和体内相结合的方法来阐明UFD-2的底物靶向机制,并阐明其作为E3/E4酶的独特机制特征。以秀丽隐杆线虫为模型系统,我们证明UFD-2并非调节肌肉细胞中UNC-45的蛋白质水平,而是表现出参与蛋白质质量控制的真正E3连接酶的特征特性。我们的数据表明,UFD-2优先靶向未折叠的蛋白质片段。此外,UNC-45伴侣蛋白可作为UFD-2的衔接蛋白,使未折叠的肌球蛋白多聚泛素化,这表明UFD-2/UNC-45对在维持肌肉细胞蛋白质稳态中可能发挥作用。