Results 311 to 320 of about 1,501,815 (329)
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Nature, 1968
EVIDENCE which has accumulated over the past decade from mammalian and non-mammalian sources about the enzyme(s) involved in DNA synthesis has indicated the possibility of a multiunit structure for this enzyme. Mammalian DNA polymerase DNA nucleotidyl-transferase (E.G.2.7.7.7) was first isolated from a high speed supernatant fraction of cell ...
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EVIDENCE which has accumulated over the past decade from mammalian and non-mammalian sources about the enzyme(s) involved in DNA synthesis has indicated the possibility of a multiunit structure for this enzyme. Mammalian DNA polymerase DNA nucleotidyl-transferase (E.G.2.7.7.7) was first isolated from a high speed supernatant fraction of cell ...
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1996
Publisher Summary This chapter describes DNA polymerases of mesophiles and covers DNA polymerases of thermophilic Eubacteria and Archaea. It covers both thermophiles, organisms that grow optimally in the range of 50–70oC, but not at 90oC, and hyperthermophiles, organisms with an optimal growth temperature of at least 80°C, which also grow at 90°C ...
F B, Perler, S, Kumar, H, Kong
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Publisher Summary This chapter describes DNA polymerases of mesophiles and covers DNA polymerases of thermophilic Eubacteria and Archaea. It covers both thermophiles, organisms that grow optimally in the range of 50–70oC, but not at 90oC, and hyperthermophiles, organisms with an optimal growth temperature of at least 80°C, which also grow at 90°C ...
F B, Perler, S, Kumar, H, Kong
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1975
Publisher Summary This chapter states that physiological experiments demonstrating variations of DNA polymerase activities were first done in mammalian systems, whereas the first relevant genetic experiments in bacteria came 12 years after the discovery of Escherichia coli DNA polymerase I.
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Publisher Summary This chapter states that physiological experiments demonstrating variations of DNA polymerase activities were first done in mammalian systems, whereas the first relevant genetic experiments in bacteria came 12 years after the discovery of Escherichia coli DNA polymerase I.
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Annals of the New York Academy of Sciences, 1992
K C, Sitney, M E, Budd, J L, Campbell
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K C, Sitney, M E, Budd, J L, Campbell
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2007
DNA polimeraze su enzimi koji sintetiziraju DNA u smjeru 5’ → 3' prema 3'→ 5' kalupu jednolančane DNA, a za početak sinteze im je potrebna slobodna 3'-OH skupina na drugom DNA lancu.
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DNA polimeraze su enzimi koji sintetiziraju DNA u smjeru 5’ → 3' prema 3'→ 5' kalupu jednolančane DNA, a za početak sinteze im je potrebna slobodna 3'-OH skupina na drugom DNA lancu.
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