TY - JOUR
T1 - Selective auxin agonists induce specific AUX/IAA protein degradation to modulate plant development
AU - Vain, Thomas
AU - Raggi, Sara
AU - Ferro, Noel
AU - Barange, Deepak Kumar
AU - Kieffer, Martin
AU - Ma, Qian
AU - Doyle, Siamsa M.
AU - Thelander, Mattias
AU - Parizkova, Barbora
AU - Novak, Ondrej
AU - Ismail, Alexandre
AU - Enquist, Per-Anders
AU - Rigal, Adeline
AU - Langowska, Malgorzata
AU - Harborough, Sigurd Ramans
AU - Zhang, Yi
AU - Ljung, Karin
AU - Callis, Judy
AU - Almqvist, Fredrik
AU - Kepinski, Stefan
AU - Estelle, Mark
AU - Pauwels, Laurens
AU - Robert, Stephanie
PY - 2019
Y1 - 2019
N2 - Auxin phytohormones control most aspects of plant development through a complex and interconnected signaling network. In the presence of auxin, AUXIN/INDOLE-3-ACETIC ACID (AUX/IAA) transcriptional repressors are targeted for degradation by the SKP1CULLIN1-F-BOX (SCF) ubiquitin-protein ligases containing TRANSPORT INHIBITOR RESISTANT 1/AUXIN SIGNALING F-BOX (TIR1/AFB). CULLIN1-neddylation is required for SCFTIR1/AFB functionality, as exemplified by mutants deficient in the NEDD8-activating enzyme subunit AUXIN-RESISTANT 1 (AXR1). Here, we report a chemical biology screen that identifies small molecules requiring AXR1 to modulate plant development. We selected four molecules of interest, RubNeddin 1 to 4 (RN1 to -4), among which RN3 and RN4 trigger selective auxin responses at transcriptional, biochemical, and morphological levels. This selective activity is explained by their ability to consistently promote the interaction between TIR1 and a specific subset of AUX/IAA proteins, stimulating the degradation of particular AUX/IAA combinations. Finally, we performed a genetic screen using RN4, the RN with the greatest potential for dissecting auxin perception, which revealed that the chromatin remodeling ATPase BRAHMA is implicated in auxin-mediated apical hook development. These results demonstrate the power of selective auxin agonists to dissect auxin perception for plant developmental functions, as well as offering opportunities to discover new molecular players involved in auxin responses.
AB - Auxin phytohormones control most aspects of plant development through a complex and interconnected signaling network. In the presence of auxin, AUXIN/INDOLE-3-ACETIC ACID (AUX/IAA) transcriptional repressors are targeted for degradation by the SKP1CULLIN1-F-BOX (SCF) ubiquitin-protein ligases containing TRANSPORT INHIBITOR RESISTANT 1/AUXIN SIGNALING F-BOX (TIR1/AFB). CULLIN1-neddylation is required for SCFTIR1/AFB functionality, as exemplified by mutants deficient in the NEDD8-activating enzyme subunit AUXIN-RESISTANT 1 (AXR1). Here, we report a chemical biology screen that identifies small molecules requiring AXR1 to modulate plant development. We selected four molecules of interest, RubNeddin 1 to 4 (RN1 to -4), among which RN3 and RN4 trigger selective auxin responses at transcriptional, biochemical, and morphological levels. This selective activity is explained by their ability to consistently promote the interaction between TIR1 and a specific subset of AUX/IAA proteins, stimulating the degradation of particular AUX/IAA combinations. Finally, we performed a genetic screen using RN4, the RN with the greatest potential for dissecting auxin perception, which revealed that the chromatin remodeling ATPase BRAHMA is implicated in auxin-mediated apical hook development. These results demonstrate the power of selective auxin agonists to dissect auxin perception for plant developmental functions, as well as offering opportunities to discover new molecular players involved in auxin responses.
KW - auxin
KW - chemical biology
KW - selective agonist
KW - prohormone
KW - hormone perception
KW - auxin
KW - chemical biology
KW - selective agonist
KW - prohormone
KW - hormone perception
UR - https://res.slu.se/id/publ/99567
U2 - 10.1073/pnas.1809037116
DO - 10.1073/pnas.1809037116
M3 - Journal article
SN - 0027-8424
VL - 116
SP - 6463
EP - 6472
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 13
ER -