A monomer-dimer switch modulates the activity of plant adenosine kinase.

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Tác giả: Jakub Bělíček, Jaroslava Friedecká, Jan František Humplík, Radka Končitíková, Martina Kopečná, David Kopečný, David Jaroslav Kopečný, Marine Le Berre, Václav Mik, Solange Moréra, Ondřej Novák, Stephan Plancqueel, Miroslav Strnad, Klára Supíková, Armelle Vigouroux, Klaus von Schwartzenberg

Ngôn ngữ: eng

Ký hiệu phân loại:

Thông tin xuất bản: England : Journal of experimental botany , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 684851

Adenosine undergoes ATP-dependent phosphorylation catalyzed by adenosine kinase (ADK). In plants, ADK also phosphorylates cytokinin ribosides, transport forms of the hormone. Here, we investigated the substrate preferences, oligomeric states and structures of ADKs from moss (Physcomitrella patens) and maize (Zea mays) alongside metabolomic and phenotypic analyses. We showed that dexamethasone-inducible ZmADK overexpressor lines in Arabidopsis can benefit from a higher number of lateral roots and larger root areas under nitrogen starvation. We discovered that maize and moss enzymes can form dimers upon increasing protein concentration, setting them apart from the monomeric human and protozoal ADKs. Structural and kinetic analyses revealed a catalytically inactive unique dimer. Within the dimer, both active sites are mutually blocked. The activity of moss ADKs, exhibiting a higher propensity to dimerize, was tenfold lower compared to maize ADKs. Two monomeric structures in a ternary complex highlight the characteristic transition from an open to a closed state upon substrate binding. This suggests that the oligomeric state switch can modulate the activity of moss ADKs and likely other plant ADKs. Moreover, dimer association represents a novel negative feedback mechanism, helping to maintain steady levels of adenosine and AMP.
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