Abstract
The putrescine biosynthetic enzyme agmatine ureohydrolase (AUH) (EC 3.5.3.11) catalyzes the conversion of agmatine to putrescine in Escherichia coli. AUH was purified approximately 1,600-fold from an E. coli strain transformed with the plasmid pKA5 bearing the speB gene encoding the enzyme. The purification procedure included ammonium sulfate precipitation, heat treatment, and DEAE-sephacel column chromatography. The molecular mass of nondenatured AUH is approximately 80,000 daltons as determined by gel-sieving column chromatography, while on denaturing polyacrylamide gels, the molecular mass is approximately 38,000 daltons; thus, native AUH is most likely a dimer. A radiolabeled protein extracted from minicells carrying the pKA5 plasmid comigrated with the purified AUH in both sodium dodecyl sulfate-polyacrylamide and native polyacrylamide gels. The pI of purified AUH is between 8.2 and 8.4, as determined by either chromatofocusing or isoelectric focusing. The Km of purified AUH for agmatine is 1.2 mM; the pH optimum is 7.3. Neither the numerous ions and nucleotides tested nor polyamines affected AUH activity in vitro. EDTA and EGTA [ethylene glycol-bis (beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid] at 1 mM inactivated AUH activity by 53 and 74%, respectively; none of numerous divalent cations tested restored AUH activity. Ornithine inhibited AUH activity noncompetitively (Ki = 6 X 10(-3) M), while arginine inhibited AUH activity competitively (Ki = 9 X 10(-3) M).
MeSH Terms
Agmatine/metabolism
Arginine/pharmacology
Edetic Acid/pharmacology
Egtazic Acid/pharmacology
Escherichia coli/enzymology
Hydrogen-Ion Concentration
Isoelectric Point
Kinetics
Metals/pharmacology
Molecular Weight
Nucleotides/pharmacology
Ornithine/pharmacology
Polyamines/pharmacology
Putrescine/biosynthesis
Temperature
Ureohydrolases/antagonists & inhibitors,isolation & purification,metabolism
Chemicals
Metals
Nucleotides
Polyamines
Egtazic Acid
Agmatine
Arginine
Edetic Acid
Ornithine
Ureohydrolases
agmatinase
Putrescine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Satishchandran C
Boyle S M
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