Zhong Nan, Zhang Shengnan, Xue Fei, Kang Xue, Zou Peng, Chen Jiaxuan, Liang Chao, Rao Zihe, Jin Changwen, Lou Zhiyong, Xia Bin
Beijing Nuclear Magnetic Resonance Center, Peking University, Beijing 100871, People' Republic of China.
Protein Sci. 2009 Apr;18(4):839-44. doi: 10.1002/pro.76.
SARS coronavirus main protease (M(pro)) plays an essential role in the extensive proteolytic processing of the viral polyproteins (pp1a and pp1ab), and it is an important target for anti-SARS drug development. We have reported that both the M(pro) C-terminal domain alone (M(pro)-C) and the N-finger deletion mutant of M(pro) (M(pro)-Delta7) exist as a stable dimer and a stable monomer (Zhong et al., J Virol 2008; 82:4227-4234). Here, we report structures of both M(pro)-C monomer and dimer. The structure of the M(pro)-C monomer is almost identical to that of the C-terminal domain in the crystal structure of M(pro). Interestingly, the M(pro)-C dimer structure is characterized by 3D domain-swapping, in which the first helices of the two protomers are interchanged and each is enwrapped by four other helices from the other protomer. Each folding subunit of the M(pro)-C domain-swapped dimer still has the same general fold as that of the M(pro)-C monomer. This special dimerization elucidates the structural basis for the observation that there is no exchange between monomeric and dimeric forms of M(pro)-C and M(pro)-Delta7.
严重急性呼吸综合征冠状病毒主要蛋白酶(M蛋白酶)在病毒多聚蛋白(pp1a和pp1ab)的广泛蛋白水解加工过程中发挥着至关重要的作用,并且它是抗严重急性呼吸综合征药物研发的重要靶点。我们已经报道,单独的M蛋白酶C末端结构域(M蛋白酶-C)和M蛋白酶的N指缺失突变体(M蛋白酶-Δ7)均以稳定的二聚体和稳定的单体形式存在(钟等人,《病毒学杂志》2008年;82:4227 - 4234)。在此,我们报道了M蛋白酶-C单体和二聚体的结构。M蛋白酶-C单体的结构与M蛋白酶晶体结构中的C末端结构域几乎相同。有趣的是,M蛋白酶-C二聚体结构的特征在于三维结构域交换,其中两个原体的第一个螺旋相互交换,并且每个都被来自另一个原体的其他四个螺旋包裹。M蛋白酶-C结构域交换二聚体的每个折叠亚基仍然具有与M蛋白酶-C单体相同的总体折叠。这种特殊的二聚化阐明了M蛋白酶-C和M蛋白酶-Δ7的单体形式和二聚体形式之间不存在交换这一观察结果的结构基础。