Journal:FEBS Open Bio:2
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(Difference between revisions)

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*'''II''' <scene name='76/763766/Cv/19'>Complex with Camalexin 2</scene>, ligand was found only at the '''L1''' sites; | *'''II''' <scene name='76/763766/Cv/19'>Complex with Camalexin 2</scene>, ligand was found only at the '''L1''' sites; | ||
*'''III''' <scene name='76/763766/Cv/20'>Complex with Quercetrin 3</scene>, ligand was found found at both '''L1''' and '''L2''' sites; | *'''III''' <scene name='76/763766/Cv/20'>Complex with Quercetrin 3</scene>, ligand was found found at both '''L1''' and '''L2''' sites; | ||
- | *'''IV''' Complex with Quercetin 4; | + | *'''IV''' <scene name='76/763766/Cv/21'>Complex with Quercetin 4</scene>, ligand was found only at the '''L2''' site; |
*'''V''' 1GNW, an AtGSTF2 complex with two molecules of S-hexyl glutathione ‘GSX’, showing the GSH conjugation site. | *'''V''' 1GNW, an AtGSTF2 complex with two molecules of S-hexyl glutathione ‘GSX’, showing the GSH conjugation site. | ||
Revision as of 08:50, 25 September 2017
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- ↑ Ahmad L, Rylott EL, Bruce NC, Edwards R, Grogan G. Structural evidence for Arabidopsis glutathione transferase AtGSTF2 functioning as a transporter of small organic ligands. FEBS Open Bio. 2016 Dec 22;7(2):122-132. doi: 10.1002/2211-5463.12168., eCollection 2017 Feb. PMID:28174680 doi:http://dx.doi.org/10.1002/2211-5463.12168
- ↑ Dixon DP, Sellars JD, Edwards R. The Arabidopsis phi class glutathione transferase AtGSTF2: binding and regulation by biologically active heterocyclic ligands. Biochem J. 2011 Aug 15;438(1):63-70. doi: 10.1042/BJ20101884. PMID:21631432 doi:http://dx.doi.org/10.1042/BJ20101884
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