Li Jinzhao, He Xiang, Gao Shuang, Liang Yuchao, Qi Zhi, Xi Qilemuge, Zuo Yongchun, Xing Yongqiang
The Key Laboratory of Mammalian Reproductive Biology and Biotechnology of the Ministry of Education, College of Life Sciences, Inner Mongolia University, Hohhot 010021, China.
The Key Laboratory of Mammalian Reproductive Biology and Biotechnology of the Ministry of Education, College of Life Sciences, Inner Mongolia University, Hohhot 010021, China; Key Laboratory of Forage and Endemic Crop Biotechnology, Ministry of Education, School of Life Sciences, Inner Mongolia University, Hohhot 010021, China.
J Mol Biol. 2023 Jul 15;435(14):168117. doi: 10.1016/j.jmb.2023.168117. Epub 2023 Apr 21.
Metal-binding proteins are essential for the vital activities and engage in their roles by acting in concert with metal cations. MbPA (The Metal-binding Protein Atlas) is the most comprehensive resource up to now dedicated to curating metal-binding proteins. Currently, it contains 106,373 entries and 440,187 sites related to 54 metals and 8169 species. Users can view all metal-binding proteins and species-specific proteins in MbPA. There are also metal-proteomics data that quantitatively describes protein expression in different tissues and organs. By analyzing the data of the amino acid residues at the metal-binding site, it is found that about 80% of the metal ions tend to bind to cysteine, aspartic acid, glutamic acid, and histidine. Moreover, we use Diversity Measure to confirm that the diversity of metal-binding is specific in different area of periodic table, and further elucidate the binding modes of 19 transition metals on 20 amino acids. In addition, MbPA also embraces 6855 potential pathogenic mutations related to metalloprotein. The resource is freely available at http://bioinfor.imu.edu.cn/mbpa.
金属结合蛋白对生命活动至关重要,并通过与金属阳离子协同作用来发挥其功能。MbPA(金属结合蛋白图谱)是目前致力于整理金属结合蛋白的最全面资源。目前,它包含与54种金属和8169个物种相关的106373个条目和440187个位点。用户可以在MbPA中查看所有金属结合蛋白和物种特异性蛋白。还有金属蛋白质组学数据定量描述了不同组织和器官中的蛋白质表达。通过分析金属结合位点处氨基酸残基的数据,发现约80%的金属离子倾向于与半胱氨酸、天冬氨酸、谷氨酸和组氨酸结合。此外,我们使用多样性度量来确认金属结合的多样性在元素周期表的不同区域具有特异性,并进一步阐明了19种过渡金属与20种氨基酸的结合模式。此外,MbPA还包含6855个与金属蛋白相关的潜在致病突变。该资源可在http://bioinfor.imu.edu.cn/mbpa免费获取。