2j6t: Difference between revisions

From Proteopedia
Jump to navigationJump to search
OCA (talk | contribs)
No edit summary
OCA (talk | contribs)
No edit summary
Line 4: Line 4:


==Overview==
==Overview==
We examined the effect of a single O6-methylguanine (O6-MeG) template, residue on catalysis by a model Y family polymerase, Dpo4 from Sulfolobus, solfataricus. Mass spectral analysis of Dpo4-catalyzed extension products, revealed that the enzyme accurately bypasses O6-MeG, with C being the, major product (approximately 70%) and T or A being the minor species, (approximately 20% or approximately 10%, respectively), consistent with, steady-state kinetic parameters. Transient-state kinetic experiments, revealed that kpol, the maximum forward rate constant describing, polymerization, for dCTP incorporation opposite O6-MeG was approximately, 6-fold slower than observed for unmodified G, and no measurable product, was observed for dTTP incorporation in the pre-steady state. The lack of, any structural information regarding how O6-MeG paired in a polymerase, active site led us to perform x-ray crystallographic studies, which show, that "wobble" pairing occurs between C and O6-MeG. A structure containing, T opposite O6-MeG was solved, but much of the ribose and pyrimidine base, density was disordered, in accordance with a much higher Km,dTTP that, drives the difference in efficiency between C and T incorporation. The, more stabilized C:O6-MeG pairing reinforces the importance of hydrogen, bonding with respect to nucleotide selection within a geometrically, tolerant polymerase active site.
We examined the effect of a single O6-methylguanine (O6-MeG) template residue on catalysis by a model Y family polymerase, Dpo4 from Sulfolobus solfataricus. Mass spectral analysis of Dpo4-catalyzed extension products revealed that the enzyme accurately bypasses O6-MeG, with C being the major product (approximately 70%) and T or A being the minor species (approximately 20% or approximately 10%, respectively), consistent with steady-state kinetic parameters. Transient-state kinetic experiments revealed that kpol, the maximum forward rate constant describing polymerization, for dCTP incorporation opposite O6-MeG was approximately 6-fold slower than observed for unmodified G, and no measurable product was observed for dTTP incorporation in the pre-steady state. The lack of any structural information regarding how O6-MeG paired in a polymerase active site led us to perform x-ray crystallographic studies, which show that "wobble" pairing occurs between C and O6-MeG. A structure containing T opposite O6-MeG was solved, but much of the ribose and pyrimidine base density was disordered, in accordance with a much higher Km,dTTP that drives the difference in efficiency between C and T incorporation. The more stabilized C:O6-MeG pairing reinforces the importance of hydrogen bonding with respect to nucleotide selection within a geometrically tolerant polymerase active site.


==About this Structure==
==About this Structure==
Line 15: Line 15:
[[Category: Sulfolobus solfataricus]]
[[Category: Sulfolobus solfataricus]]
[[Category: Egli, M.]]
[[Category: Egli, M.]]
[[Category: Eoff, R.L.]]
[[Category: Eoff, R L.]]
[[Category: Guengerich, F.P.]]
[[Category: Guengerich, F P.]]
[[Category: Irimia, A.]]
[[Category: Irimia, A.]]
[[Category: CA]]
[[Category: CA]]
Line 37: Line 37:
[[Category: translesion dna synthesis]]
[[Category: translesion dna synthesis]]


''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Sun Feb 3 10:42:15 2008''
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 17:59:50 2008''