Distinct enzymic functional groups are required for the phosphomonoesterase and phosphodiesterase activities of Clostridium thermocellum polynucleotide kinase/phosphatase Journal Article


Authors: Keppetipola, N.; Shuman, S.
Article Title: Distinct enzymic functional groups are required for the phosphomonoesterase and phosphodiesterase activities of Clostridium thermocellum polynucleotide kinase/phosphatase
Abstract: The central phosphatase domain of Clostridium thermocellum polynucleotide kinase/phosphatase (CthPnkp) belongs to the dinuclear metallophosphoesterase superfamily. Prior mutational studies of CthPnkp identified 7 individual active site side chains (Asp-187, His-189, Asp-233, Asn-263, His-323, His-376, and Asp-392) required for Ni2+-dependent hydrolysis of p-nitrophenyl phosphate. Here we find that Mn2+-dependent phosphomonoesterase activity requires two additional residues, Arg-237 and His-264. We report that CthPnkp also converts bis-p-nitrophenyl phosphate to p-nitrophenol and inorganic phosphate via a processive two-step mechanism. The Ni2+-dependent phosphodiesterase activity of CthPnkp requires the same seven side chains as the Ni2+-dependent phosphomonoesterase. However, the Mn 2+-dependent phosphodiesterase activity does not require His-189, Arg-237, or His-264, each of which is critical for the Mn2+-dependent phosphomonoesterase. Mutations H189A, H189D, and D392N transform the metal and substrate specificity of CthPnkp such that it becomes a Mn2+- dependent phosphodiesterase. The H189E change results in a Mn 2+/Ni2+-dependent phosphodiesterase. Mutations H376N, H376D, and D392E convert the enzyme into a Mn2+-dependent phosphodiesterase-monoesterase. The phosphodiesterase activity is strongly stimulated compared with wild-type CthPnkp when His-189 is changed to Asp, Arg-237 is replaced by Ala or Gln, and His-264 is replaced by Ala, Asn, or Gln. Steady-state kinetic analysis of wild-type and mutated enzymes illuminates the structural features that affect substrate affinity and kcat. Our results highlight CthPnkp as an "undifferentiated" diesterase-monoesterase that can evolve toward narrower metal and substrate specificities via alterations of the active site milieu. © 2006 by The American Society for Biochemistry and Molecular Biology, Inc.
Keywords: mutation; nonhuman; steady state; phosphatase; cell differentiation; enzyme activity; structure activity relation; kinetics; substrate specificity; binding site; models, molecular; binding sites; dna mutational analysis; alanine; sodium; phosphate; phosphates; hydrolysis; phosphoric monoester hydrolases; mutagenesis; nickel; enzymes; glutamine; polynucleotide 5' hydroxyl kinase; polynucleotide 5'-hydroxyl-kinase; substrates; arginine; asparagine; histidine; functional group; clostridium thermocellum; manganese; phosphodiesterase; biomaterials; biomechanics; 4 nitrophenyl phosphate; phosphoric diester hydrolases; clostridium thermocellum polynucleotide; distinct enzymic functional groups; metallophosphoesterase; phosphomonoesterase; 4 nitrophenol; metal binding
Journal Title: Journal of Biological Chemistry
Volume: 281
Issue: 28
ISSN: 0021-9258
Publisher: American Society for Biochemistry and Molecular Biology  
Date Published: 2006-07-14
Start Page: 19251
End Page: 19259
Language: English
DOI: 10.1074/jbc.M602549200
PUBMED: 16675457
PROVIDER: scopus
DOI/URL:
Notes: --- - "Cited By (since 1996): 14" - "Export Date: 4 June 2012" - "CODEN: JBCHA" - "Source: Scopus"
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  1. Stewart H Shuman
    546 Shuman