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Proteome-wide cellular thermal shift assay reveals unexpected cross-talk between brassinosteroid and auxin signaling.


ABSTRACT: SignificanceChemical genetics, which investigates biological processes using small molecules, is gaining interest in plant research. However, a major challenge is to uncover the mode of action of the small molecules. Here, we applied the cellular thermal shift assay coupled with mass spectrometry (CETSA MS) to intact Arabidopsis cells and showed that bikinin, the plant-specific glycogen synthase kinase 3 (GSK3) inhibitor, changed the thermal stability of some of its direct targets and putative GSK3-interacting proteins. In combination with phosphoproteomics, we also revealed that GSK3s phosphorylated the auxin carrier PIN-FORMED1 and regulated its polarity that is required for the vascular patterning in the leaf.

SUBMITTER: Lu Q 

PROVIDER: S-EPMC8931322 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Proteome-wide cellular thermal shift assay reveals unexpected cross-talk between brassinosteroid and auxin signaling.

Lu Qing Q   Zhang Yonghong Y   Hellner Joakim J   Giannini Caterina C   Xu Xiangyu X   Pauwels Jarne J   Ma Qian Q   Dejonghe Wim W   Han Huibin H   Van de Cotte Brigitte B   Impens Francis F   Gevaert Kris K   De Smet Ive I   Friml Jiří J   Molina Daniel Martinez DM   Russinova Eugenia E  

Proceedings of the National Academy of Sciences of the United States of America 20220307 11


SignificanceChemical genetics, which investigates biological processes using small molecules, is gaining interest in plant research. However, a major challenge is to uncover the mode of action of the small molecules. Here, we applied the cellular thermal shift assay coupled with mass spectrometry (CETSA MS) to intact <i>Arabidopsis</i> cells and showed that bikinin, the plant-specific glycogen synthase kinase 3 (GSK3) inhibitor, changed the thermal stability of some of its direct targets and put  ...[more]

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