Steven D. Clouse

Affiliations: 
North Carolina State University, Raleigh, NC 
Area:
Horticulture Agriculture, Biochemistry, Molecular Biology
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"Steven Clouse"
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Children

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Chalapathi R. Koka grad student 2001 NCSU
Vikramjit S. Bajwa grad student 2010 NCSU
Jyoti D. Kajla grad student 2011 NCSU
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Publications

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Imkampe J, Halter T, Huang S, et al. (2017) The Arabidopsis Leucine-rich Repeat Receptor Kinase BIR3 Negatively Regulates BAK1 Receptor Complex Formation and Stabilizes BAK1. The Plant Cell
Clouse SD. (2016) Brassinosteroid/Abscisic Acid Antagonism in Balancing Growth and Stress. Developmental Cell. 38: 118-20
Tunc-Ozdemir M, Urano D, Jaiswal DK, et al. (2016) Direct Modulation of a Heterotrimeric G protein-coupled Signaling by a Receptor Kinase Complex. The Journal of Biological Chemistry
Oh MH, Bender KW, Kim SY, et al. (2015) Functional analysis of the BRI1 receptor kinase by Thr-for-Ser substitution in a regulatory autophosphorylation site. Frontiers in Plant Science. 6: 562
Mitra SK, Chen R, Dhandaydham M, et al. (2015) An autophosphorylation site database for leucine-rich repeat receptor-like kinases in Arabidopsis thaliana. The Plant Journal : For Cell and Molecular Biology. 82: 1042-60
Clouse SD. (2015) A History of Brassinosteroid Research from 1970 through 2005: Thirty-Five Years of Phytochemistry, Physiology, Genes, and Mutants Journal of Plant Growth Regulation. 34: 828-844
Oh MH, Wang X, Kim SY, et al. (2014) The Carboxy-terminus of BAK1 regulates kinase activity and is required for normal growth of Arabidopsis. Frontiers in Plant Science. 5: 16
Halter T, Imkampe J, Mazzotta S, et al. (2014) The leucine-rich repeat receptor kinase BIR2 is a negative regulator of BAK1 in plant immunity. Current Biology : Cb. 24: 134-43
Fàbregas N, Li N, Boeren S, et al. (2013) The brassinosteroid insensitive1-like3 signalosome complex regulates Arabidopsis root development. The Plant Cell. 25: 3377-88
Bajwa VS, Wang X, Blackburn RK, et al. (2013) Identification and functional analysis of tomato BRI1 and BAK1 receptor kinase phosphorylation sites. Plant Physiology. 163: 30-42
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