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Ko JH, Yang SH, Han KH. Upregulation of an Arabidopsis RING-H2 gene, XERICO, confers
drought tolerance through increased abscisic acid biosynthesis. Plant J. 2006;47:343-55.
Koops P, Pelser S, Ignatz M, Klose C, Marrocco-Selden K, Kretsch T. EDL3 is an F-box pro-
tein involved in the regulation of abscisic acid signalling in Arabidopsis thaliana. J Exp Bot.
2011;62:5547-60.
Lai J, Chen H, Teng K, Zhao Q, Zhang Z, Li Y, Liang L, Xia R, Wu Y, Guo H, Xie Q. RKP, a
RING finger E3 ligase induced by BSCTV C4 protein, affects gemini virus infection by regu-
lation of the plant cell cycle. Plant J. 2009;57:905-17.
Lechner E, Leonhardt N, Eisler H, Parmentier Y, Alioua M, Jacquet H, Leung J, Genschik P.
MATH/BTB CRL3 receptors target the homeodomain-leucine zipper ATHB6 to modulate
abscisic acid signaling. Dev Cell. 2011;21:1116-28.
Lee JH, Yoon HJ, Terzaghi W, Martinez C, Dai M, Li J, Byun MO, Deng XW. DWA1 and
DWA2, two Arabidopsis DWD protein components of CUL4-based E3 ligases, act together
as negative regulators in ABA signal transduction. Plant Cell. 2010;22:1716-32.
Li H, Jiang H, Bu Q, Zhao Q, Sun J, Xie Q, Li C. The Arabidopsis RING finger E3 ligase
RHA2b acts additively with RHA2a in regulating abscisic acid signaling and drought
response. Plant Physiol. 2011;156:550-63.
Liu H, Stone SL. Abscisic acid increases Arabidopsis ABI5 transcription factor levels by pro-
moting KEG E3 ligase self-ubiquitination and proteasomal degradation. Plant Cell.
2010;22:2630-41.
Liu H, Stone SL. Cytoplasmic degradation of the Arabidopsis transcription factor abscisic acid
insensitive 5 is mediated by the RING-type E3 ligase KEEP ON GOING. J Biol Chem.
2013;288:20267-79.
Liu YC, Wu YR, Huang XH, Sun J, Xie Q. AtPUB19, a U-box E3 ubiquitin ligase, nega-
tively regulates abscisic acid and drought responses in Arabidopsis thaliana. Mol Plant.
2011;4:938-46.
Lois LM, Lima CD, Chua NH. Small ubiquitin-like modifier modulates abscisic acid signaling in
Arabidopsis. Plant Cell. 2003;15:1347-59.
Lopez-Molina L, Mongrand S, Chua NH. A postgermination developmental arrest checkpoint
is mediated by abscisic acid and requires the ABI5 transcription factor in Arabidopsis. Proc
Natl Acad Sci U S A. 2001;98:4782-7.
Lopez-Molina L, Mongrand S, McLachlin DT, Chait BT, Chua NH. ABI5 acts down-
stream of ABI3 to execute an ABA-dependent growth arrest during germination. Plant J.
2002;32:317-28.
Lopez-Molina L, Mongrand S, Kinoshita N, Chua NH. AFP is a novel negative regulator of ABA
signaling that promotes ABI5 protein degradation. Genes Dev. 2003;17:410-8.
Luo J, Shen G, Yan J, He C, Zhang H. AtCHIP functions as an E3 ubiquitin ligase of pro-
tein phosphatase 2A subunits and alters plant response to abscisic acid treatment. Plant J.
2006;46:649-57.
Lyzenga WJ, Liu H, Schofield A, Muise-Hennessey A, Stone SL. Arabidopsis CIPK26 interacts
with KEG, components of the ABA signalling network and is degraded by the ubiquitin-pro-
teasome system. J Exp Bot. 2013;64:2779-91.
Ma Y, Szostkiewicz I, Korte A, Moes D, Yang Y, Christmann A, Grill E. Regulators of PP2C
phosphatase activity function as abscisic acid sensors. Science. 2009;324:1064-8.
Meluh PB, Koshland D. Evidence that the MIF2 gene of Saccharomyces cerevisiae encodes a
centromere protein with homology to the mammalian centromere protein CENP-C. Mol Biol
Cell. 1995;6:793-807.
Miura K, Hasegawa PM. Sumoylation and abscisic acid signaling. Plant Signal Behav.
2009;4:1176-8.
Miura K, Hasegawa PM. Sumoylation and other ubiquitin-like post-translational modifications in
plants. Trends Cell Biol. 2010;20:223-32.
Miura K, Jin JB, Hasegawa PM. Sumoylation, a post-translational regulatory process in plants.
Curr Opin Plant Biol. 2007;10:495-502.
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