Z-DNA
From Proteopedia
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Z-DNA binding proteins have common structural characteristics. The binding domains of these proteins can substitute one another and thus can act as competitive inhibitors against one another. As explained above, disruption in the Z-DNA binding region of E3L reduces its pathogenicity. All these observations are important pointers towards the biological importance of Z-DNA.<ref name ='Wang'>PMID:17485386</ref> | Z-DNA binding proteins have common structural characteristics. The binding domains of these proteins can substitute one another and thus can act as competitive inhibitors against one another. As explained above, disruption in the Z-DNA binding region of E3L reduces its pathogenicity. All these observations are important pointers towards the biological importance of Z-DNA.<ref name ='Wang'>PMID:17485386</ref> | ||
</StructureSection> | </StructureSection> | ||
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== Movie Depicting ADAR1 binding to Z-DNA == | == Movie Depicting ADAR1 binding to Z-DNA == | ||
<qt>file=Movie3_Z-DNA.mov|width=320|height=280|autoplay=false|controller=true</qt> | <qt>file=Movie3_Z-DNA.mov|width=320|height=280|autoplay=false|controller=true</qt> |
Revision as of 12:50, 25 February 2015
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Movie Depicting ADAR1 binding to Z-DNA
Comparison of the three helices and helical parameters of DNA
Sources[6]
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Parameter | A-DNA | B-DNA | Z-DNA |
---|---|---|---|
Helix sense | right-handed | right-handed | left-handed |
Residues per turn | 11 | 10.5 | 12 |
Axial rise [Å] | 2.55 | 3.4 | 3.7 |
Helix pitch(°) | 28 | 34 | 45 |
Base pair tilt(°) | 20 | −6 | 7 |
Rotation per residue (°) | 33 | 36 | -30 |
Diameter of helix [Å] | 23 | 20 | 18 |
Glycosidic bond configuration dA,dT,dC dG | anti anti | anti anti | anti syn |
Sugar pucker dA,dT,dC dG | C3'-endo C3'-endo | C2'-endo C2'-endo | C2'-endo C3'-endo |
Intrastrand phosphate-phosphate distance [Å] dA,dT,dC dG | 5.9 5.9 | 7.0 7.0 | 7.0 5.9 |
Sources:[7][8][9] |
3D structures of Z-DNA
Updated on 25-February-2015
1woe, 3qba – ZDNA hexamer CGCGCG
1qbj – ZDNA hexamer CGCGCG + hADAR1 Zα domain - human
2heo - ZDNA hexamer CGCGCG + Z-DNA-binding protein Zα domain – mouse
2eyi - ZDNA hexamer CGCGCG + Z-DNA-binding protein Zβ domain
1j75 - ZDNA hexamer CGCGCG + DLM-1 Zα domain
Additional Resources
For additional information, see: Nucleic Acids
References
- ↑ 1.0 1.1 1.2 Rich A, Zhang S. Timeline: Z-DNA: the long road to biological function. Nat Rev Genet. 2003 Jul;4(7):566-72. PMID:12838348 doi:10.1038/nrg1115
- ↑ 2.0 2.1 2.2 2.3 2.4 2.5 Wang G, Vasquez KM. Z-DNA, an active element in the genome. Front Biosci. 2007 May 1;12:4424-38. PMID:17485386
- ↑ Ha SC, Lowenhaupt K, Rich A, Kim YG, Kim KK. Crystal structure of a junction between B-DNA and Z-DNA reveals two extruded bases. Nature. 2005 Oct 20;437(7062):1183-6. PMID:16237447 doi:10.1038/nature04088
- ↑ Schwartz T, Rould MA, Lowenhaupt K, Herbert A, Rich A. Crystal structure of the Zalpha domain of the human editing enzyme ADAR1 bound to left-handed Z-DNA. Science. 1999 Jun 11;284(5421):1841-5. PMID:10364558
- ↑ Kim YG, Lowenhaupt K, Oh DB, Kim KK, Rich A. Evidence that vaccinia virulence factor E3L binds to Z-DNA in vivo: Implications for development of a therapy for poxvirus infection. Proc Natl Acad Sci U S A. 2004 Feb 10;101(6):1514-8. Epub 2004 Feb 2. PMID:14757814 doi:10.1073/pnas.0308260100
- ↑ http://203.129.231.23/indira/nacc/
- ↑ Rich A, Nordheim A, Wang AH. The chemistry and biology of left-handed Z-DNA. Annu Rev Biochem. 1984;53:791-846. PMID:6383204 doi:http://dx.doi.org/10.1146/annurev.bi.53.070184.004043
- ↑ Wang AH, Quigley GJ, Kolpak FJ, Crawford JL, van Boom JH, van der Marel G, Rich A. Molecular structure of a left-handed double helical DNA fragment at atomic resolution. Nature. 1979 Dec 13;282(5740):680-6. PMID:514347
- ↑ Sinden, Richard R (1994-01-15). DNA structure and function (1st ed.). Academic Press. pp. 398. ISBN 0-12-645750-6.
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