Yu Clinton, Mao Haibin, Novitsky Eric J, Tang Xiaobo, Rychnovsky Scott D, Zheng Ning, Huang Lan
Department of Physiology and Biophysics, University of California, Irvine, California 92697, USA.
Department of Pharmacology and Howard Hughes Medical Institute, University of Washington, Seattle, Washington 98195, USA.
Nat Commun. 2015 Dec 3;6:10053. doi: 10.1038/ncomms10053.
The full enzymatic activity of the cullin-RING ubiquitin ligases (CRLs) requires a ubiquitin-like protein (that is, Nedd8) modification. By deamidating Gln40 of Nedd8 to glutamate (Q40E), the bacterial cycle-inhibiting factor (Cif) family is able to inhibit CRL E3 activities, thereby interfering with cellular functions. Despite extensive structural studies on CRLs, the molecular mechanism by which Nedd8 Gln40 deamidation affects CRL functions remains unclear. We apply a new quantitative cross-linking mass spectrometry approach to characterize three different types of full-length human Cul1-Rbx1 complexes and uncover major Nedd8-induced structural rearrangements of the CRL1 catalytic core. More importantly, we find that those changes are not induced by Nedd8(Q40E) conjugation, indicating that the subtle change of a single Nedd8 amino acid is sufficient to revert the structure of the CRL catalytic core back to its unmodified form. Our results provide new insights into how neddylation regulates the conformation and activity of CRLs.
泛素连接酶(CRLs)的完整酶活性需要一种类泛素蛋白(即Nedd8)修饰。通过将Nedd8的Gln40脱酰胺化为谷氨酸(Q40E),细菌周期抑制因子(Cif)家族能够抑制CRL E3活性,从而干扰细胞功能。尽管对CRLs进行了广泛的结构研究,但Nedd8 Gln40脱酰胺影响CRL功能的分子机制仍不清楚。我们应用一种新的定量交联质谱方法来表征三种不同类型的全长人Cul1-Rbx1复合物,并揭示Nedd8诱导的CRL1催化核心的主要结构重排。更重要的是,我们发现这些变化不是由Nedd8(Q40E)缀合诱导的,这表明单个Nedd8氨基酸的细微变化足以使CRL催化核心的结构恢复到未修饰的形式。我们的结果为泛素化如何调节CRLs的构象和活性提供了新的见解。