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1M08

Crystal structure of the unbound nuclease domain of ColE7

Summary for 1M08
Entry DOI10.2210/pdb1m08/pdb
Related1CEI 7CEI
DescriptorColicin E7, ZINC ION, PHOSPHATE ION, ... (4 entities in total)
Functional Keywordshnh motif, endonuclease, colicin, zn-binding protein, hydrolase
Biological sourceEscherichia coli str. K12 substr.
Total number of polymer chains2
Total formula weight30449.00
Authors
Cheng, Y.S.,Hsia, K.C.,Doudeva, L.G.,Chak, K.F.,Yuan, H.S. (deposition date: 2002-06-12, release date: 2002-12-11, Last modification date: 2023-11-08)
Primary citationCheng, Y.S.,Hsia, K.C.,Doudeva, L.G.,Chak, K.F.,Yuan, H.S.
The Crystal Structure of the Nuclease Domain of Colicin E7 Suggests a Mechanism for Binding to Double-stranded DNA by the H-N-H Endonucleases
J.mol.biol., 324:227-236, 2002
Cited by
PubMed Abstract: The bacterial toxin ColE7 contains an H-N-H endonuclease domain (nuclease ColE7) that digests cellular DNA or RNA non-specifically in target cells, leading to cell death. In the host cell, protein Im7 forms a complex with ColE7 to inhibit its nuclease activity. Here, we present the crystal structure of the unbound nuclease ColE7 at a resolution of 2.1A. Structural comparison between the unbound and bound nuclease ColE7 in complex with Im7, suggests that Im7 is not an allosteric inhibitor that induces backbone conformational changes in nuclease ColE7, but rather one that inhibits by blocking the substrate-binding site. There were two nuclease ColE7 molecules in the P1 unit cell in crystals and they appeared as a dimer related to each other by a non-crystallographic dyad symmetry. Gel-filtration and cross-linking experiments confirmed that nuclease ColE7 indeed formed dimers in solution and that the dimeric conformation was more favored in the presence of double-stranded DNA. Structural comparison of nuclease ColE7 with the His-Cys box homing endonuclease I-PpoI further demonstrated that H-N-H motifs in dimeric nuclease ColE7 were oriented in a manner very similar to that of the betabetaalpha-fold of the active sites found in dimeric I-PpoI. A mechanism for the binding of double-stranded DNA by dimeric H-N-H nuclease ColE7 is suggested.
PubMed: 12441102
DOI: 10.1016/S0022-2836(02)01092-6
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.1 Å)
Structure validation

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