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Biology subjects

Delesalle, C.

Publications and source records attributed to Delesalle, C..

2 recordsLinked to original sources

Broad application of plant protein tagging with ALFA tag for nanobody-based imaging and biochemical approaches

Epitope tags are broadly used for detecting, modifying or purifying proteins of interest, but their breadth of application is often rather poor. Recently, the rationally designed ALFA tag and its ALFA Nanobody complements the repertoire of epitope tags and emerged as a highly versatile epitope tag characterized in various animal models and that outperforms existing tags. Here we evaluated the ALFA tag/ALFA Nanobody technology in plants and showcase its application for in planta protein detection across multiple compartments or cellular structures, protein:protein interaction studies, protein purification, induced-proximity approaches, and super-resolution microcopy. Most importantly, we shed light on the edge of ALFA tagging technology for proteins difficult to tag for topological or functionals reasons. We provide the proof of concept of ALFA tag technology for the detection and functional analysis of the Arabidopsis IRT1 iron transporter. Overall, such versatile and validated toolbox of ALFA tag and ALFA Nanobody applications will serve as a resource of great interest for functional studies in plants.

plant biology↗

Direct non-transcriptional link between brassinosteroid perception and cortical microtubule reorientation drives hypocotyl growth

Brassinosteroids (BRs) are steroid-type phytohormones that are essential for plant growth, development and adaptation to environmental stresses. BRs promote cell wall remodelling through extensive reprogramming of gene expression, thus impacting on cell elongation and hypocotyl growth. The existence of non-genomic responses to BRs is however still unclear. Here we identified and characterized a new family of BRI1-interacting proteins identified by yeast two hybrid named MBAPs. We confirmed using several complementary approaches that MBAPs are genuine BRI1 partners in plant cells. We demonstrated that MBAPs are localized to cortical microtubules (CMTs) underlying the plasma membrane using a short conserved helix and where they contact with and are phosphorylated by BRI1. Combinations of mbap loss-of-function mutants showed hypersensitivity to BRs and establish MBAPs as negative regulators of BR responses. Surprisingly, mbap mutants showed unaffected typical downstream BR signaling readouts and BR target gene expression. Rather, mbap mutants displayed disordered CMT network and enhanced CMT reorganization upon BR perception. Altogether, our work shed light on the direct non-transcriptional connection between BR perception at the cell surface and CMT organization in the control of hypocotyl elongation.

plant biology↗