Beal R, Deveraux Q, Xia G, Rechsteiner M, Pickart C
Department of Biochemistry, School of Medicine and Biomedical Sciences, State University of New York, Buffalo 14214, USA.
Proc Natl Acad Sci U S A. 1996 Jan 23;93(2):861-6. doi: 10.1073/pnas.93.2.861.
Ubiquitin conjugation is a signal for degradation of eukaryotic proteins by the 26S protease. Conjugation of a homopolymeric multiubiquitin chain to a substrate lysine residue results in 10-fold faster degradation than does conjugation of monoubiquitin, but the molecular basis of enhanced targeting by chains is unknown. We show that ubiquitin residues L8, I44, and V70 are critical for targeting. Mutation of pairs of these residues to alanine had little effect on attachment of ubiquitin to substrates but severely inhibited degradation of the resulting conjugates. The same mutations blocked the binding of chains to a specific subunit (S5a) of the regulatory complex of the 26S protease. The side chains implicated in this binding--L8, I44, and V70--form repeating patches on the chain surface. Thus, hydrophobic interactions between these patches and S5a apparently contribute to enhanced proteolytic targeting by multiubiquitin chains.
泛素缀合是真核生物蛋白质被26S蛋白酶降解的信号。将同聚多泛素链缀合到底物赖氨酸残基上,其导致的降解速度比单泛素缀合快10倍,但链增强靶向作用的分子基础尚不清楚。我们发现泛素残基L8、I44和V70对于靶向作用至关重要。将这些残基成对突变为丙氨酸对泛素与底物的附着影响不大,但严重抑制了所得缀合物的降解。相同的突变阻断了链与26S蛋白酶调节复合物的特定亚基(S5a)的结合。与这种结合相关的侧链——L8、I44和V70——在链表面形成重复的斑块。因此,这些斑块与S5a之间的疏水相互作用显然有助于多泛素链增强蛋白水解靶向作用。