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2012

Journal Article

Dissecting Arabidopsis Gβ signal transduction on the protein surface1[W][OA]

Jiang, Kun, Frick-Cheng, Arwen, Trusov, Yuri, Delgado-Cerezo, Magdalena, Rosenthal, David M., Lorek, Justine, Panstruga, Ralph, Booker, Fitzgerald L., Botella, Jose Ramon, Molina, Antonio, Ort, Donald R. and Jones, Alan M. (2012). Dissecting Arabidopsis Gβ signal transduction on the protein surface1[W][OA]. Plant Physiology, 159 (3), 975-983. doi: 10.1104/pp.112.196337

Dissecting Arabidopsis Gβ signal transduction on the protein surface1[W][OA]

2012

Journal Article

G gamma 1+G gamma 2+G gamma 3=G beta: The search for heterotrimeric G-protein gamma subunits in Arabidopsis is over

Thung, Leena, Trusov, Yuri, Chakravorty, David and Botella, Jose Ramon (2012). G gamma 1+G gamma 2+G gamma 3=G beta: The search for heterotrimeric G-protein gamma subunits in Arabidopsis is over. Journal of Plant Physiology, 169 (5), 542-545. doi: 10.1016/j.jplph.2011.11.010

G gamma 1+G gamma 2+G gamma 3=G beta: The search for heterotrimeric G-protein gamma subunits in Arabidopsis is over

2012

Journal Article

Site-directed mutagenesis of the Arabidopsis heterotrimeric G protein beta subunit suggests divergent mechanisms of effector activation between plant and animal G proteins

Chakravorty, David, Trusov, Yuri and Botella, Jose Ramon (2012). Site-directed mutagenesis of the Arabidopsis heterotrimeric G protein beta subunit suggests divergent mechanisms of effector activation between plant and animal G proteins. Planta, 235 (3), 615-627. doi: 10.1007/s00425-011-1526-5

Site-directed mutagenesis of the Arabidopsis heterotrimeric G protein beta subunit suggests divergent mechanisms of effector activation between plant and animal G proteins

2012

Journal Article

Diversity of heterotrimeric G-protein subunits in plants

Trusov, Yuri, Chakravorty, David and Botella, Jose Ramon (2012). Diversity of heterotrimeric G-protein subunits in plants. BMC Research Notes, 5 (1) 608, 608.1-608.9. doi: 10.1186/1756-0500-5-608

Diversity of heterotrimeric G-protein subunits in plants

2011

Journal Article

An atypical heterotrimeric G-protein gamma-subunit is involved in guard cell K+-channel regulation and morphological development in Arabidopsis thaliana

Chakravorty, David, Trusov, Yuri, Zhang, Wei, Acharya, Biswa R., Sheahan, Michael B., McCurdy, David W., Assmann, Sarah M. and Botella, José Ramón (2011). An atypical heterotrimeric G-protein gamma-subunit is involved in guard cell K+-channel regulation and morphological development in Arabidopsis thaliana. Plant Journal, 67 (5), 840-851. doi: 10.1111/j.1365-313X.2011.04638.x

An atypical heterotrimeric G-protein gamma-subunit is involved in guard cell K+-channel regulation and morphological development in Arabidopsis thaliana

2011

Journal Article

Arabidopsis G-protein interactome reveals connections to cell wall carbohydrates and morphogenesis

Klopffleisch, Karsten, Phan, Nguyen, Augustin, Kelsey, Bayne, Robert S., Booker, Katherine S., Botella, Jose R., Carpita, Nicholas C., Carr, Tyrell, Chen, Jin-Gui, Cooke, Thomas Ryan, Frick-Cheng, Arwen, Friedman, Erin J., Fulk, Brandon, Hahn, Michael G., Jiang, Kun, Jorda, Lucia, Kruppe, Lydia, Liu, Chenggang, Lorek, Justine, McCann, Maureen C., Molina, Antonio, Moriyama, Etsuko N., Mukhtar, M. Shahid, Mudgil, Yashwanti, Pattathil, Sivakumar, Schwarz, John, Seta, Steven, Tan, Matthew, Temp, Ulrike ... Jones, Alan M. (2011). Arabidopsis G-protein interactome reveals connections to cell wall carbohydrates and morphogenesis. Molecular Systems Biology, 7 (1) 532, 532.1-532.7. doi: 10.1038/msb.2011.66

Arabidopsis G-protein interactome reveals connections to cell wall carbohydrates and morphogenesis

2009

Journal Article

Heterotrimeric G proteins-mediated resistance to necrotrophic pathogens includes mechanisms independent of salicylic acid-, jasmonic acid/ethylene- and abscisic acid-mediated defense signaling

Trusov, Yuri, Sewelam, Nasser, Rookes, James Edward, Kunkel, Matt, Nowak, Ekaterina, Schenk, Peer Martin and Botella, Jose R (2009). Heterotrimeric G proteins-mediated resistance to necrotrophic pathogens includes mechanisms independent of salicylic acid-, jasmonic acid/ethylene- and abscisic acid-mediated defense signaling. The Plant Journal, 58 (1), 69-81. doi: 10.1111/j.1365-313X.2008.03755.x

Heterotrimeric G proteins-mediated resistance to necrotrophic pathogens includes mechanisms independent of salicylic acid-, jasmonic acid/ethylene- and abscisic acid-mediated defense signaling

2008

Journal Article

G{gamma}1 + G{gamma}2 != Gβ: Heterotrimeric G Protein G{gamma}-Deficient Mutants Do Not Recapitulate All Phenotypes of Gβ-Deficient Mutants

Trusov, Y., Zhang, W., Assmann, S. M. and Botella, J. R. (2008). G{gamma}1 + G{gamma}2 != Gβ: Heterotrimeric G Protein G{gamma}-Deficient Mutants Do Not Recapitulate All Phenotypes of Gβ-Deficient Mutants. Plant Physiology, 147 (2), 636-649. doi: 10.1104/pp.108.117655

G{gamma}1 + G{gamma}2 != Gβ: Heterotrimeric G Protein G{gamma}-Deficient Mutants Do Not Recapitulate All Phenotypes of Gβ-Deficient Mutants

2007

Journal Article

Heterotrimeric G Protein γ Subunits Provide Functional Selectivity in Gßγ Dimer Signaling in Arabidopsis

Trusov, Yuri, Rookes, James Edward, Tilbrook, Kimberley, Chakravorty, David, Mason, Michael Glenn, Anderson, David, Chen, Jin-Gui, Jones, Alan M. and Botella, Jose Ramon (2007). Heterotrimeric G Protein γ Subunits Provide Functional Selectivity in Gßγ Dimer Signaling in Arabidopsis. Plant Cell, 19 (4), 1235-1250. doi: 10.1105/tpc.107.050096

Heterotrimeric G Protein γ Subunits Provide Functional Selectivity in Gßγ Dimer Signaling in Arabidopsis

2006

Journal Article

Silencing of the ACC synthase gene ACACS2 causes delayed flowering in pineapple [Ananas comosus (L.) Merr.]

Trusov, Y. and Botella, J. R. (2006). Silencing of the ACC synthase gene ACACS2 causes delayed flowering in pineapple [Ananas comosus (L.) Merr.]. Journal of Experimental Botany, 57 (14), 3953-3960. doi: 10.1093/jxb/erl167

Silencing of the ACC synthase gene ACACS2 causes delayed flowering in pineapple [Ananas comosus (L.) Merr.]

2006

Journal Article

Heterotrimeric G proteins facilitate Arabidopsis resistance to necrotrophic pathogens and are involved in jasmonate signaling

Trusov, Y., Rookes, J. E., Chakravorty, D., Armour, D., Schenk, P. M. and Botella, J. R. (2006). Heterotrimeric G proteins facilitate Arabidopsis resistance to necrotrophic pathogens and are involved in jasmonate signaling. Plant Physiology, 140 (1), 210-220. doi: 10.1104/pp.105.069625

Heterotrimeric G proteins facilitate Arabidopsis resistance to necrotrophic pathogens and are involved in jasmonate signaling

2004

Journal Article

Evolution of the regular zone of histone H1 in Fabaceae plants

Trusov, Y., Bogdanova, V. S. and Berdnikov, V. A. (2004). Evolution of the regular zone of histone H1 in Fabaceae plants. Journal of Molecular Evolution, 59 (4), 546-555. doi: 10.1007/s00239-004-2647-2

Evolution of the regular zone of histone H1 in Fabaceae plants

2003

Journal Article

Large changes in the structure of the major histone H1 subtype result in small effects on quantitative traits in legumes

Berdnikov, Vladimir A.., Bogdanova, Vera S., Gorel, Fiana L., Kosterin, Oleg E. and Trusov, Yurii A. (2003). Large changes in the structure of the major histone H1 subtype result in small effects on quantitative traits in legumes. Genetica, 119 (2), 167-182. doi: 10.1023/A:1026058605485

Large changes in the structure of the major histone H1 subtype result in small effects on quantitative traits in legumes

1999

Journal Article

Characterization of ATDRG1, a member of a new class of GTP-binding proteins in plants

Etheridge, N, Trusov, Y, Verbelen, JP and Botella, JR (1999). Characterization of ATDRG1, a member of a new class of GTP-binding proteins in plants. Plant Molecular Biology, 39 (6), 1113-1126. doi: 10.1023/A:1006137221259

Characterization of ATDRG1, a member of a new class of GTP-binding proteins in plants

1996

Journal Article

A molecular clock based on the expansion of gene families

Trusov, Y. A. and Dear, P. H. (1996). A molecular clock based on the expansion of gene families. Nucleic Acids Research, 24 (6), 995-999. doi: 10.1093/nar/24.6.995

A molecular clock based on the expansion of gene families