1hd7: Difference between revisions

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==Overview==
==Overview==
The major human abasic endonuclease, Ape1, is an essential DNA repair, enzyme that initiates the removal of apurinic/apyrimidinic sites from DNA, excises 3' replication-blocking moieties, and modulates the DNA binding, activity of several transcriptional regulators. We have determined the, X-ray structure of the full-length human Ape1 enzyme in two new crystal, forms, one at neutral and one at acidic pH. The new structures are, generally similar to the previously determined structure of a truncated, Ape1 protein, but differ in the conformation of several loop regions and, in spans of residues with weak electron density. While only one, active-site metal ion is present in the structure determined at low pH, the structure determined from a crystal grown at the pH optimum of Ape1, nuclease activity, pH 7.5, has two metal ions bound 5 A apart in the, active site. Enzyme kinetic data indicate that at least two metal-binding, sites are functionally important, since Ca(2+) exhibits complex, stimulatory and inhibitory effects on the Mg(2+)-dependent catalysis of, Ape1, even though Ca(2+) itself does not serve as a cofactor. In, conjunction, the structural and kinetic data suggest that Ape1 catalyzes, hydrolysis of the DNA backbone through a two metal ion-mediated mechanism.
The major human abasic endonuclease, Ape1, is an essential DNA repair enzyme that initiates the removal of apurinic/apyrimidinic sites from DNA, excises 3' replication-blocking moieties, and modulates the DNA binding activity of several transcriptional regulators. We have determined the X-ray structure of the full-length human Ape1 enzyme in two new crystal forms, one at neutral and one at acidic pH. The new structures are generally similar to the previously determined structure of a truncated Ape1 protein, but differ in the conformation of several loop regions and in spans of residues with weak electron density. While only one active-site metal ion is present in the structure determined at low pH, the structure determined from a crystal grown at the pH optimum of Ape1 nuclease activity, pH 7.5, has two metal ions bound 5 A apart in the active site. Enzyme kinetic data indicate that at least two metal-binding sites are functionally important, since Ca(2+) exhibits complex stimulatory and inhibitory effects on the Mg(2+)-dependent catalysis of Ape1, even though Ca(2+) itself does not serve as a cofactor. In conjunction, the structural and kinetic data suggest that Ape1 catalyzes hydrolysis of the DNA backbone through a two metal ion-mediated mechanism.


==Disease==
==Disease==
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[[Category: Homo sapiens]]
[[Category: Homo sapiens]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Beernink, P.T.]]
[[Category: Beernink, P T.]]
[[Category: Hadi, M.]]
[[Category: Hadi, M.]]
[[Category: Ringhofer, S.]]
[[Category: Ringhofer, S.]]
[[Category: Segelke, B.W.]]
[[Category: Segelke, B W.]]
[[Category: Wilson, D.M.]]
[[Category: Wilson, D M.]]
[[Category: PB]]
[[Category: PB]]
[[Category: ape1]]
[[Category: ape1]]
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[[Category: ref-1]]
[[Category: ref-1]]


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