Haririnia Aydin, Verma Rati, Purohit Nisha, Twarog Michael Z, Deshaies Raymond J, Bolon Dan, Fushman David
Department of Chemistry and Biochemistry, Center for Biomolecular Structure and Organization, University of Maryland, College Park, MD 20742, USA.
J Mol Biol. 2008 Jan 25;375(4):979-96. doi: 10.1016/j.jmb.2007.11.016. Epub 2007 Nov 13.
Ubiquitin (Ub) is one of the most highly conserved signaling proteins in eukaryotes. In carrying out its myriad functions, Ub conjugated to substrate proteins interacts with dozens of receptor proteins that link the Ub signal to various biological outcomes. Here we report mutations in conserved residues of Ub's hydrophobic core that have surprisingly potent and specific effects on molecular recognition. Mutant Ubs bind tightly to the Ub-associated domain of the receptor proteins Rad23 and hHR23A but fail to bind the Ub-interacting motif present in the receptors Rpn10 and S5a. Moreover, chains assembled on target substrates with mutant Ubs are unable to support substrate degradation by the proteasome in vitro or sustain viability of yeast cells. The mutations have relatively little effect on Ub's overall structure but reduce its rigidity and cause a slight displacement of the C-terminal beta-sheet, thereby compromising association with Ub-interacting motif but not with Ub-associated domains. These studies emphasize an unexpected role for Ub's core in molecular recognition and suggest that the diversity of protein-protein interactions in which Ub engages placed enormous constraints on its evolvability.
泛素(Ub)是真核生物中最高度保守的信号蛋白之一。在执行其众多功能时,与底物蛋白结合的泛素会与数十种受体蛋白相互作用,这些受体蛋白将泛素信号与各种生物学结果联系起来。在此,我们报告了泛素疏水核心保守残基中的突变,这些突变对分子识别具有惊人的强大且特异性的影响。突变型泛素紧密结合受体蛋白Rad23和hHR23A的泛素相关结构域,但无法结合受体Rpn10和S5a中存在的泛素相互作用基序。此外,用突变型泛素在靶底物上组装的链在体外无法支持蛋白酶体对底物的降解,也无法维持酵母细胞的活力。这些突变对泛素的整体结构影响相对较小,但降低了其刚性并导致C末端β折叠的轻微位移,从而损害了与泛素相互作用基序的结合,但不影响与泛素相关结构域的结合。这些研究强调了泛素核心在分子识别中的意外作用,并表明泛素参与的蛋白质 - 蛋白质相互作用的多样性对其进化能力施加了巨大限制。