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PreviewIssue DateTitleAuthor(s)
2010Boron toxicity tolerance in barley through reduced expression of the multifunctional aquaporin HvNIP2;1Schnurbusch, T.; Hayes, J.; Hrmova, M.; Baumann, U.; Ramesh, S.; Tyerman, S.; Langridge, P.; Sutton, T.
2001Plant enzyme structure. Explaining substrate specificity and the evolution of functionHrmova, M.; Fincher, G.
2020Variation among S-locus haplotypes and among stylar RNases in almondGoonetilleke, S.N.; Croxford, A.E.; March, T.J.; Wirthensohn, M.G.; Hrmova, M.; Mather, D.E.
2016A barley efflux transporter operates in a Na⁺-dependent manner, as revealed by a multidisciplinary platformNagarajan, Y.; Rongala, J.; Luang, S.; Singh, A.; Shadiac, N.; Hayes, J.; Sutton, T.; Gilliham, M.; Tyerman, S.; McPhee, G.; Voelcker, N.; Mertens, H.; Kirby, N.; Lee, J.; Yingling, Y.; Hrmova, M.
2000Comparative modeling of the three-dimensional structures of family 3 glycoside hydrolasesHarvey, A.; Hrmova, M.; De Gori, R.; Varghese, J.; Fincher, G.
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.
2007Dissecting the catalytic mechanism of a plant beta-D-glucan glucohydrolase through structural biology using inhibitors and substrate analoguesHrmova, M.; Fincher, G.
2010The genetics, transcriptional profiles, and catalytic properties of UDP-α-D-xylose 4-epimerases from barleyZhang, Q.; Shirley, N.; Burton, R.; Lahnstein, J.; Hrmova, 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.
2004Three-dimensional structure of the barley beta-D-glucan glucohydrolase in complex with a transition state mimicHrmova, M.; De Gori, R.; Smith, B.; Vasella, A.; Varghese, J.; Fincher, G.