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PreviewIssue DateTitleAuthor(s)
2019Structural analysis and biological activity of cell wall polysaccharides extracted from Panax ginseng marcLi, J.; Wang, D.; Xing, X.; Cheng, T.J.R.; Liang, P.H.; Bulone, V.; Park, J.H.; Hsieh, Y.S.Y.
2013Structural analysis and insights into the glycon specificity of the rice GH1 Os7BGlu26 β-D-mannosidaseTankrathok, A.; Iglesias-Ferna, J.; Luang, S.; Robinson, R.; Kimura, A.; Rovira, C.; Hrmova, M.; Cairns, J.
2011Structural and functional analyses of PpENA1 provide insights into cation binding by type IID P-type ATPases in lower plants and fungiDrew, D.; Hrmova, M.; Lunde, C.; Jacobs, A.; Tester, M.; Fincher, G.
2002Structural basis for broad substrate specificity in higher plant beta-D-glucan glucohydrolasesHrmova, M.; De Gori, R.; Smith, B.; Fairweather, J.; Driguez, H.; Varghese, J.; Fincher, G.
2017Structural basis of the permeation function of plant aquaporinsLuang, S.; Hrmova, M.; Chaumont, F.; Tyerman, S.
2022Structural bioinformatics and biophysical approaches for understanding the plant responses to biotic and abiotic stressesSperotto, R.A.; Hrmova, M.; Graether, S.P.; Timmers, L.F.S.M.
2022Structural characterisation of a MAPR-related archaeal cytochrome b(5M) proteinTeakel, S.; Marama, M.; Aragao, D.; Tsimbalyuk, S.; Mackie, E.R.R.; da Costa, T.P.S.; Forwood, J.K.; Cahill, M.A.
2020Structural characterization of the Pet c 1.0201 PR-10 protein isolated from roots of Petroselinum crispum (Mill.) FussStratilova, B.; Rehulka, P.; Garajova, S.; Rehulkova, H.; Stratilova, E.; Hrmova, M.; Kozmon, S.
2023Structural insight into the Scribble PDZ domains interaction with the oncogenic Human T-cell lymphotrophic virus-1 (HTLV-1) Tax1 PBMJavorsky, A.; Maddumage, J.C.; Mackie, E.R.R.; Soares da Costa, T.P.; Humbert, P.O.; Kvansakul, M.
1997Structural organization of the mouse and human GALR1 Galanin receptor genes (Galnr and GALNR) and chromosomal localization of the mouse geneJacoby, A.; Webb, G.; Liu, M.; Kofler, B.; Hort, Y.; Fathi, Z.; Bottema, C.; Shine, J.; Iismaa, T.
2005Structural rationale for low-nanomolar binding of transition state mimics to a family GH3 β-D-glucan glucohydrolase from barleyHrmova, M.; Streltsov, V.; Smith, B.; Vasella, A.; Varghese, J.; Fincher, G.
2016Structural variation and content of arabinoxylans in endosperm and bran of durum wheat (Triticum turgidum L.)Marcotuli, I.; Hsieh, Y.; Lahnstein, J.; Yap, K.; Burton, R.; Blanco, A.; Fincher, G.; Gadaleta, A.
2018Structural variations in wheat HKT1;5 underpin differences in Na+ transport capacityXu, B.; Waters, S.; Byrt, C.; Plett, D.; Tyerman, S.; Tester, M.; Munns, R.; Hrmova, M.; Gilliham, M.
2006Structure and assembly of epiglucan, the extracellular (1→3;1→6)-β-glucan produced by the fungus Epicoccum nigrum strain F19Schmid, F.; Stone, B.; Brownlee, R.; McDougall, B.; Seviour, R.
2008Structure and bioactivity of the polysaccharides in medicinal plant Dendrobium huoshanenseHsieh, Y.; Chien, C.; Liao, S.; Liao, S.; Hung, W.; Yang, W.; Lin, C.; Cheng, T.; Chang, C.; Fang, J.; Wong, C.
1996Structure and chromosomal localization of the genomic locus encoding the Kiz1 LIM-Kinase geneBernard, O.; Burkitt, V.; Webb, G.; Bottema, C.; Nicholl, J.; Sutherland, G.; Matthew, P.
2004Structure and expression of the ovine Hoxc-13 geneSander, G.; Powell, B.
2003Structure and function of cereal and related higher plant (1→4)-β-xylan endohyrolasesSimpson, D.; Fincher, G.; Huang, A.; Cameron-Mills, V.
2001Structure function relationships of β-D-glucan endo- and exohydrolases from higher plantsHrmova, M.; Fincher, G.; Carpita, N.; Campbell, M.; Tierney, M.
2006Structure of a flavonoid glucosyltransferase reveals the basis for plant natural product modificationOffen, W.; Martinez-Fleites, C.; Yang, M.; Kiat-Lim, E.; Davis, B.; Tarling, C.; Ford, C.; Bowles, D.; Davies, G.