Zhang Haiyu, Ishige Kazuya, Kornberg Arthur
Department of Biochemistry, Stanford University School of Medicine, Stanford, CA 94305-5307, USA.
Proc Natl Acad Sci U S A. 2002 Dec 24;99(26):16678-83. doi: 10.1073/pnas.262655199. Epub 2002 Dec 16.
Synthesis of inorganic polyphosphate (poly P) from the terminal phosphate of ATP is catalyzed reversibly by poly P kinase (PPK, now designated PPK1) initially isolated from Escherichia coli. PPK1 is highly conserved in many bacteria, including some of the major pathogens such as Pseudomonas aeruginosa. In a null mutant of P. aeruginosa lacking ppk1, we have discovered a previously uncharacterized PPK activity (designated PPK2) distinguished from PPK1 by the following: synthesis of poly P from GTP or ATP, a preference for Mn2+ over Mg2+, and a stimulation by poly P. The reverse reaction, a poly P-driven nucleoside diphosphate kinase synthesis of GTP from GDP, is 75-fold greater than the forward reaction, poly P synthesis from GTP. The gene encoding PPK2 (ppk2) was identified from the amino acid sequence of the protein purified near 1,000-fold, to homogeneity. The 5'-end is 177 bp upstream of the annotated genome sequence of a "conserved hypothetical protein"; ppk2 (1,074 bp) encodes a protein of 357 aa with a molecular mass of 40.8 kDa. Sequences homologous to PPK2 are present in two other proteins in P. aeruginosa, in two Archaea, and in 32 other bacteria (almost all with PPK1 as well); these include rhizobia, cyanobacteria, Streptomyces, and several pathogenic species. Distinctive features of the poly P-driven nucleoside diphosphate kinase activity and structural aspects of PPK2 are among the subjects of an accompanying report.
最初从大肠杆菌中分离得到的多聚磷酸激酶(PPK,现命名为PPK1)可催化由ATP的末端磷酸合成无机多聚磷酸(多聚P),该反应是可逆的。PPK1在许多细菌中高度保守,包括一些主要病原体,如铜绿假单胞菌。在缺乏ppk1的铜绿假单胞菌缺失突变体中,我们发现了一种以前未被鉴定的PPK活性(命名为PPK2),它与PPK1的区别如下:由GTP或ATP合成多聚P,对Mn2+的偏好高于Mg2+,以及受多聚P的刺激。其逆反应,即由多聚P驱动的核苷二磷酸激酶从GDP合成GTP的反应,比正向反应(由GTP合成多聚P)大75倍。通过对纯化至近1000倍纯度的蛋白质的氨基酸序列分析,鉴定出了编码PPK2(ppk2)的基因。其5'端位于一个“保守的假定蛋白”注释基因组序列上游177 bp处;ppk2(1074 bp)编码一个357个氨基酸的蛋白质,分子量为40.8 kDa。与PPK2同源的序列存在于铜绿假单胞菌的另外两种蛋白质、两种古细菌以及其他32种细菌中(几乎所有这些细菌也都有PPK1);这些细菌包括根瘤菌、蓝细菌、链霉菌以及几种致病菌种。多聚P驱动的核苷二磷酸激酶活性的独特特征以及PPK2的结构方面是一篇随附报告的主题。