4.5 Article

Large-Scale Molecular Evolutionary Analysis Uncovers a Variety of Polynucleotide Kinase Clp1 Family Proteins in the Three Domains of Life

期刊

GENOME BIOLOGY AND EVOLUTION
卷 11, 期 10, 页码 2713-2726

出版社

OXFORD UNIV PRESS
DOI: 10.1093/gbe/evz195

关键词

protein family; multidomain protein; experimental verification; molecular evolution; large protein; comprehensive identification

资金

  1. JSPS KAKENHI [17K07517, 26106003]
  2. Yamagata Prefectural Government and Tsuruoka City, Japan
  3. Grants-in-Aid for Scientific Research [26106003, 17K07517] Funding Source: KAKEN

向作者/读者索取更多资源

Clp1, a polyribonucleotide 51 -hydroxyl kinase n eukaryotes, is nvolved in pretRNA splicing and mRNA 3' -end formation. Enzymes similar in amino acid sequence to Clp1, NoI9, and Grc3, are present in some eukaryotes and are involved in prerRNA processing. However, our knowledge of how these Clp1 family proteins evolved and diversified is limited. We conducted a large-scale molecular evolutionary analysis of the Clp1 family proteins in all living organisms for which protein sequences are available in public databases. The phylogenetic distribution and frequencies of the Clp1 family proteins were investigated in complete genomes of Bacteria. Archaea and Fukarya. In total, 3,557 Clp1 family proteins vvere detected in the three domains of life, Bacteria, Archaea, and Fukarya. Many were from Archaea and Eukarya, but a few were found in restricted, phylogenetically diverse bacterial species. The domain structures of the Clp1 family proteins also differed among the three domains of life. Although the proteins were, on average, 555 amino acids long (range, 196-2,728), 122 large proteins with >1,000 amino acids were detected in eukaryotes. These novel proteins contain the conserved Clp1 polynucleotide kinase domain and various other functional domains. Of these proteins, >80% were from Fungi or Protostomia. The polyribonucleotide kinase activity of Thermus scotoductus Clp1 (Ts-C1p1) was characterized experimentally. Ts-C1p1 preferentially phosphorylates single-stranded RNA oligonucleotides (Km value for ATP, 2.5 M), or single -stranded DNA at higher enzyme concentrations. We propose a comprehensive assessment of the diversification of the Clp1 family proteins and the molecular evolution of their functional domains.

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