Seong Ihn Sik, Kang Min Suk, Choi Min Kyung, Lee Jung Wook, Koh Ohn Jo, Wang Jimin, Eom Soo Hyun, Chung Chin Ha
National Research Laboratory of Protein Biochemistry, School of Biological Sciences, Seoul National University, Seoul 151-742, Korea.
J Biol Chem. 2002 Jul 19;277(29):25976-82. doi: 10.1074/jbc.M202793200. Epub 2002 May 14.
The bacterial HslVU ATP-dependent protease is a homolog of the eukaryotic 26 S proteasome. HslU ATPase forms a hexameric ring, and HslV peptidase is a dodecamer consisting of two stacked hexameric rings. In HslVU complex, the HslU and HslV central pores are aligned, and the proteolytic active sites are sequestered in an internal chamber of HslV, with access to this chamber restricted to small axial pores. Here we show that the C-terminal tails of HslU play a critical role in the interaction with and activation of HslV peptidase. A synthetic tail peptide of 10 amino acids could replace HslU in supporting the HslV-mediated hydrolysis of unfolded polypeptide substrates such as alpha-casein, as well as of small peptides, suggesting that the HslU C terminus is involved in the opening of the HslV pore for substrate entry. Moreover, deletion of 7 amino acids from the C terminus prevented the ability of HslU to form an HslVU complex with HslV. In addition, deletion of the C-terminal 10 residues prevented the formation of an HslU hexamer, indicating that the C terminus is required for HslU oligomerization. These results suggest that the HslU C-terminal tails act as a molecular switch for the assembly of HslVU complex and the activation of HslV peptidase.
细菌的HslVU ATP依赖性蛋白酶是真核生物26S蛋白酶体的同源物。HslU ATP酶形成一个六聚体环,而HslV肽酶是一个由两个堆叠的六聚体环组成的十二聚体。在HslVU复合物中,HslU和HslV的中央孔对齐,蛋白水解活性位点被隔离在HslV的一个内腔中,只有通过小的轴向孔才能进入这个腔。在这里,我们表明HslU的C末端尾巴在与HslV肽酶的相互作用和激活中起关键作用。一个10个氨基酸的合成尾巴肽可以替代HslU,支持HslV介导的对未折叠多肽底物(如α-酪蛋白)以及小肽的水解,这表明HslU的C末端参与了HslV孔的打开以允许底物进入。此外,从C末端缺失7个氨基酸会阻止HslU与HslV形成HslVU复合物的能力。另外,缺失C末端的10个残基会阻止HslU六聚体的形成,表明C末端是HslU寡聚化所必需的。这些结果表明,HslU的C末端尾巴作为HslVU复合物组装和HslV肽酶激活的分子开关。