Handa Noriko, Terada Takaho, Kamewari Yuki, Hamana Hiroaki, Tame Jeremy R H, Park Sam-Yong, Kinoshita Kengo, Ota Motonori, Nakamura Haruki, Kuramitsu Seiki, Shirouzu Mikako, Yokoyama Shigeyuki
RIKEN Genomic Sciences Center, 1-7-22 Suehiro-cho, Tsurumi, Yokohama 230-0045, Japan.
Protein Sci. 2003 Aug;12(8):1621-32. doi: 10.1110/gad.03104003.
The TT1542 protein from Thermus thermophilus HB8 is annotated as a conserved hypothetical protein, and belongs to the DUF158 family in the Pfam database. A BLAST search revealed that homologs of TT1542 are present in a wide range of organisms. The TT1542 homologs in eukaryotes, PIG-L in mammals, and GPI12 in yeast and protozoa, have N-acetylglucosaminylphosphatidylinositol (GlcNAc-PI) de-N-acetylase activity. Although most of the homologs in prokaryotes are hypothetical and have no known function, Rv1082 and Rv1170 from Mycobacterium tuberculosis are enzymes involved in the mycothiol detoxification pathway. Here we report the crystal structure of the TT1542 protein at 2.0 A resolution, which represents the first structure for this superfamily of proteins. The structure of the TT1542 monomer consists of a twisted beta-sheet composed of six parallel beta-strands and one antiparallel beta-strand (with the strand order 3-2-1-4-5-7-6) sandwiched between six alpha-helices. The N-terminal five beta-strands and four alpha-helices form an incomplete Rossmann fold-like structure. The structure shares some similarity to the sugar-processing enzymes with Rossmann fold-like domains, especially those of the GPGTF (glycogen phosphorylase/glycosyl transferase) superfamily, and also to the NAD(P)-binding Rossmann fold domains. TT1542 is a homohexamer in the crystal and in solution, the six monomers forming a cylindrical structure. Putative active sites are suggested by the structure and conserved amino acid residues.
嗜热栖热菌HB8的TT1542蛋白被注释为保守的假设蛋白,属于Pfam数据库中的DUF158家族。BLAST搜索显示,TT1542的同源物存在于多种生物中。真核生物中的TT1542同源物、哺乳动物中的PIG-L以及酵母和原生动物中的GPI12具有N-乙酰葡糖胺基磷脂酰肌醇(GlcNAc-PI)脱N-乙酰酶活性。尽管原核生物中的大多数同源物都是假设的且功能未知,但结核分枝杆菌的Rv1082和Rv1170是参与巯基乙醇解毒途径的酶。在此,我们报告了TT1542蛋白在2.0 Å分辨率下的晶体结构,这是该蛋白超家族的首个结构。TT1542单体的结构由一个扭曲的β-折叠组成,该β-折叠由六条平行的β-链和一条反平行的β-链(链序为3-2-1-4-5-7-6)夹在六个α-螺旋之间。N端的五条β-链和四个α-螺旋形成一个不完整的类Rossmann折叠结构。该结构与具有类Rossmann折叠结构域的糖加工酶,特别是GPGTF(糖原磷酸化酶/糖基转移酶)超家族的酶,以及与NAD(P)结合的Rossmann折叠结构域有一些相似之处。TT1542在晶体和溶液中都是同六聚体,六个单体形成一个圆柱形结构。结构和保守氨基酸残基表明了可能的活性位点。