A DNA polymerase from Ustilago maydis. 1. Purification and properties of the polymerase activity. 1976

G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton

A DNA polymerase from Ustilago maydis has been purified to apparent homogeneity. The native enzyme possesses a subunit structure consisting of 50000 and 55000-dalton monomers. The apparent sedimentation coefficient of the polymerase activity in the absence of salt is 8.4 S (Mr=180000-200000), that in its presence (0.6 M NaCl or 0.12 M KCl) being 6.3 S (Mr=80000-100000). Low concentrations of EDTA also converted the 8.4-S to a 6.3-S form, whereas magnesium ions catalysed the reverse association. The enzyme has an absolute requirement for both a DNA or RNA template and a DNA primer. For homopolymer templates the primer requirement was satisified by a short complementary oligodeoxynucleotide, but oligoribonucleotides were extremely inefficient primers. With the template-primer poly(dA) X (dT)12, the enzyme added an average of 50 dTMP nucleotides on to each primer molecule, whereas with poly(rA) X (dT)12, this figure was 300. The enzyme also possesses an associated deoxyribonuclease activity. No other DNA polymerase activity was detected in cell-free extracts of U. maydis.

UI MeSH Term Description Entries
D007700 Kinetics The rate dynamics in chemical or physical systems.
D008970 Molecular Weight The sum of the weight of all the atoms in a molecule. Molecular Weights,Weight, Molecular,Weights, Molecular
D002413 Cations, Divalent Positively charged atoms, radicals or groups of atoms with a valence of plus 2, which travel to the cathode or negative pole during electrolysis. Divalent Cations
D002414 Cations, Monovalent Positively charged atoms, radicals or group of atoms with a valence of plus 1, which travel to the cathode or negative pole during electrolysis. Monovalent Cation,Cation, Monovalent,Monovalent Cations
D004254 DNA Nucleotidyltransferases Enzymes that catalyze the incorporation of deoxyribonucleotides into a chain of DNA. EC 2.7.7.-. Nucleotidyltransferases, DNA
D004261 DNA Replication The process by which a DNA molecule is duplicated. Autonomous Replication,Replication, Autonomous,Autonomous Replications,DNA Replications,Replication, DNA,Replications, Autonomous,Replications, DNA
D001487 Basidiomycota A phylum of fungi that produce their sexual spores (basidiospores) on the outside of the basidium. It includes forms commonly known as mushrooms, boletes, puffballs, earthstars, stinkhorns, bird's-nest fungi, jelly fungi, bracket or shelf fungi, and rust and smut fungi. Basidiomycetes,Basidiomycete,Basidiomycotas
D013698 Templates, Genetic Macromolecular molds for the synthesis of complementary macromolecules, as in DNA REPLICATION; GENETIC TRANSCRIPTION of DNA to RNA, and GENETIC TRANSLATION of RNA into POLYPEPTIDES. Genetic Template,Genetic Templates,Template, Genetic
D014588 Ustilago A genus of basidiomycetous smut fungi comprising the loose smuts. Ustilagos
D046911 Macromolecular Substances Compounds and molecular complexes that consist of very large numbers of atoms and are generally over 500 kDa in size. In biological systems macromolecular substances usually can be visualized using ELECTRON MICROSCOPY and are distinguished from ORGANELLES by the lack of a membrane structure. Macromolecular Complexes,Macromolecular Compounds,Macromolecular Compounds and Complexes,Complexes, Macromolecular,Compounds, Macromolecular,Substances, Macromolecular

Related Publications

G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
February 1976, European journal of biochemistry,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
May 1993, Chromosoma,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
October 1981, The Journal of biological chemistry,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
March 1984, The Journal of biological chemistry,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
January 1984, Molecular and cellular biology,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
March 1973, Nature: New biology,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
March 1975, Journal of molecular biology,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
December 1975, Molecular & general genetics : MGG,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
May 2004, FEMS microbiology letters,
G R Banks, and W K Holloman, and M V Kairis, and A Spanos, and G T Yarranton
October 1980, The Journal of biological chemistry,
Copied contents to your clipboard!