20 results on '"Schlagman, Samuel L"'
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2. Comparative studies of the phage T2 and T4 DNA (N6-adenine) methyltransferase: amino acid changes that affect catalytic activity
3. Bacteriophage T4Dam (DNA-(Adenine-N)-methyltransferase)
4. Structure of the bacteriophage T4 DNA adenine methyltransferase
5. Bacteriophage T4 Dam DNA-(N 6-adenine)-methyltransferase
6. Bacteriophage T4 Dam DNA-[N6-adenine]Methyltransferase
7. Function of Pro‐185 in the ProCys of conserved motif IV in the EcoRII [cytosine‐C5]‐DNA methyltransferase
8. Phage T4 DNA [N]-adenine6Methyltransferase. OVEREXPRESSION, PURIFICATION, AND CHARACTERIZATION
9. Studies on the function of conserved sequence motifs in the T4 Dam-[N6-adenine] and EcoRII [C5-cytosine] DNA methyltransferases
10. Conserved sequence motif DPPY in region IV of the phage T4 Dam DNA-[N6-adenine]-methyltransferase is important for S-adenosyl-L-methionine binding
11. Structure of the bacteriophage T4 DNA adenine methyltransferase.
12. A dual role for substrate S-adenosyl-l-methionine in the methylation reaction with bacteriophage T4 Dam DNA-[N6-adenine]-methyltransferase.
13. Pre-steady state kinetics of bacteriophage T4 Dam DNA-[N6-adenine] methyltransferase: interaction with native (GATC) or modified sites.
14. Single amino acid changes that alter the DNA sequence specificity of the DNA-[N-adenine] methyltransferase (Dam) of bacteriophage T4.
15. The UV excision-repair system of Saccharomyces cerevisiae is involved in the removal of methylcytosines formed in vivo by a cloned prokaryotic DNA methyltransferase
16. In vivo methylation of yeast DNA by prokaryotic DNA methyltransferases
17. Molecular cloning of a functional dam+ gene coding for phage T4 DNA adenine methylase
18. The UV excision-repair system of Saccharomyces cerevisiae is involved in the removal of methylcytosines formed in vivo by a cloned prokaryotic DNA methyltransferase
19. The DNA [adenine-N6]methyltransferase (Dam) of bacteriophage T4
20. Bacteriophage T4 Dam DNA-(N6-adenine)-methyltransferase. Processivity and orientation to the methylation target.
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