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Biology subjects

Pawela, A.

Publications and source records attributed to Pawela, A..

2 recordsLinked to original sources

Medicago truncatula ABCG40 is a cytokinin importer negatively regulating lateral root density and nodule number

Numerous studies suggest that cytokinin (CK) distribution plays a relevant role in shaping plant morphology in changing environments. Nonetheless, our knowledge about the involvement of short-distance CK translocation in root mineral nutrition remains scarce, and the specific role of CK transporters in root morphology has yet to be established. Therefore, the molecular identity of CK transporters should be determined to increase knowledge on root plasticity during soil fertility, as well as more frequently encountered plant nutrient deficiencies. In this work, we identified and characterized the Medicago truncatula full-size ATP-binding cassette (ABC) transporter of the G subfamily MtABCG40 as a plasma membrane CK importer. Its expression is root-specific and is induced by nitrogen deprivation and CKs. Our analyses indicate that MtABCG40 exerts a negative impact on lateral root density by decreasing lateral root initiation and enhancing primary root elongation. Moreover, we also observed that this transporter negatively influenced the nodule number. Our results suggest that MtABCG40 action affects CK signalling, which impacts the cellular response to auxin. In summary, we identified a novel ABCG-type CK transporter that regulates lateral root density and nodule number.

plant biology↗

A key residue of plant ABC transporter modulates access path geometry and phenylpropanoid substrate selectivity

ABCG46 of the legume Medicago truncatula is an ABC-type transporter responsible for highly selective translocation of the phenylpropanoids, 4-coumarate and liquiritigenin, over the plasma membrane. To investigate molecular determinants of the observed substrate selectivity, we applied a combination of phylogenetic and biochemical analyses, AlphaFold2 structure prediction, molecular dynamics simulations, and mutagenesis. We discovered an unusually narrow transient access path to the central cavity of MtABCG46 that constitutes an initial filter responsible for the selective translocation of these phenylpropanoids through a lipid bilayer. Furthermore, we identified remote residue F562 as pivotal for maintaining the stability of this filter. The determination of individual amino acids that impact the selective transport of specialized metabolites may provide new opportunities associated with ABCGs being of interest, as a clinically relevant group of proteins.

biochemistry↗