Bermúdez-Cruz Rosa María, Fernández-Ramírez Fernando, Kameyama-Kawabe Luis, Montañez Cecilia
Departamento de Genética y Biología Molecular, Centro de Investigación y de Estudios Avanzados del I.P.N., Apartado postal 14-740, D.F. C.P. 07360 Mexico, Mexico.
Biochimie. 2005 Aug;87(8):737-45. doi: 10.1016/j.biochi.2005.03.005. Epub 2005 Apr 8.
Polynucleotide phosphorylase (PNPase) is a polynucleotide nucleotidyl transferase (E. C. 2.7.7.8) that is involved in mRNA degradation in prokaryotes. PNPase structure analysis has been performed in Streptomyces antibioticus; this revealed the presence of five domains: two ribonuclease PH (RPH)-like (pnp1 and pnp2), one alpha helical, one KH, and one S1 domains. The trimeric nature of this enzyme was also confirmed. In this work, we have investigated conserved domains or subdomains in bacterial PNPases (55), for this structure-based sequence homology analysis between predicted amino acid sequences from bacterial PNPases and that of S. antibioticus was performed. Our findings indicate that while pnp2 (% similarity average S = 84/% identity average I = 22), KH (S = 74.3%/I = 5.3%), S1 (S = 71.3%/I = 1.2%); and pnp1 (S = 52.8%/I = 0.3%) domain; structure and sequence are well conserved among different bacteria, alpha helical domain (S = 39.5%/I = 0) although conservation of the structure is somewhat maintained, the sequence is not conserved at all. Implications of such findings in PNPase activity will be discussed.
多核苷酸磷酸化酶(PNPase)是一种多核苷酸核苷酸转移酶(酶学委员会编号:2.7.7.8),参与原核生物中的mRNA降解。已对抗生链霉菌中的PNPase结构进行了分析;结果显示存在五个结构域:两个核糖核酸酶PH(RPH)样结构域(pnp1和pnp2)、一个α螺旋结构域、一个KH结构域和一个S1结构域。该酶的三聚体性质也得到了证实。在这项工作中,我们研究了细菌PNPase中的保守结构域或亚结构域(55个),为此对细菌PNPase预测的氨基酸序列与抗生链霉菌的氨基酸序列进行了基于结构的序列同源性分析。我们的研究结果表明,虽然pnp2结构域(平均相似性S = 84%/平均同一性I = 22%)、KH结构域(S = 74.3%/I = 5.3%)、S1结构域(S = 71.3%/I = 1.2%)以及pnp1结构域(S = 52.8%/I = 0.3%)的结构和序列在不同细菌中保守性良好,但α螺旋结构域(S = 39.5%/I = 0%)虽然结构的保守性有所保留,但其序列完全不保守。将讨论这些发现对PNPase活性的影响。