期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
NUDIX hydrolases target specific inositol pyrophosphates and regulate phosphate homeostasis and bacterial pathogen susceptibility in Arabidopsis
1
作者 Robin Schneider Klea Lami +31 位作者 Isabel Prucker Sara Christina Stolze Annett Strauû Julie Marie Schmidt Simon M.Bartsch Kevin Langenbach Esther Lange Kevin Ritter David Furkert Natalie Faiû Sandeep Kumar M.Shamim Hasan athanasios makris Lukas Krusenbaum Stefanie Wege Yemisrach Zewdu Belay Simon Kriescher Jeremy The Michael Harings Florian M.W.Grundler Martina K.Ried-Lasi Heiko Schoof Philipp Gaugler Marília Kamleitner Dorothea Fiedler Hirofumi Nakagami Ricardo F.H.Giehl Thomas Lahaye Saikat Bhattacharjee Henning J.Jessen Verena Gaugler Gabriel Schaaf 《Journal of Integrative Plant Biology》 2025年第12期3123-3151,共29页
Inositol pyrophosphates(PP-InsPs)are important signaling molecules that regulate diverse cellular processes in eukaryotes,including energy homeostasis,phosphate(Pi)signaling,and phytohormone perception.Yet,in plants,t... Inositol pyrophosphates(PP-InsPs)are important signaling molecules that regulate diverse cellular processes in eukaryotes,including energy homeostasis,phosphate(Pi)signaling,and phytohormone perception.Yet,in plants,the enzymes responsible for their turnover remain largely unknown.Using a non-hydrolysable PP-InsP analog in a pull-down approach,we identified a family of Arabidopsis NUDIX-type hydrolases(NUDTs)that group into two closely related subclades.Through in vitro assays,heterologous expression systems,and higher order gene-edited mutants,we explored the substrate specificities and physiological roles of these hydrolases.Using a combination of strong anion exchange high-performance liquid chromatography(SAX-HPLC),polyacrylamide gel electrophoresis(PAGE),and capillary electrophoresis electrospray ionization mass spectrometry(CE-ESI-MS),we found that their PP-InsP pyrophosphatase activity is enantiomer selective and Mg^(2+)dependent.Specifically,SubcladeⅠNUDTs preferentially hydrolyze 4-InsP_(7),while SubcladeⅡNUDTs target 3-InsP_(7),with minor activity against other PP-InsPs,including5-InsP_(7).In higher order mutants of SubcladeⅡNUDTs,we observed defects in both Piand iron homeostasis,accompanied by increased levels of 1/3-InsP_(7)and 5-InsP_(7),with a markedly larger increase in 1/3-InsP_(7).Ectopic expression of NUDTs from both subclades induced local Pi starvation responses(PSRs),while RNA-seq analysis comparing wild-type(WT)and SubcladeⅡnudt12/13/16 loss-of-function plants indicates additional PSR-independent roles,potentially involving 1/3-InsP_(7) in the regulation of plant defense.Consistently,nudt12/13/16 mutants displayed enhanced resistance to Pseudomonas syringae infection,indicating a role in bacterial pathogen susceptibility.Expanding beyond SubcladeⅡNUDTs,we demonstrated susceptibility of the 3PP-position of PP-InsPs to enzymatic activities unrelated to NUDTs,and found that such activities are conserved across plants and humans.Additionally,we observed that NUDT effectors from pathogenic ascomycete fungi exhibit a substrate specificity similar to SubcladeⅠNUDTs.Collectively,our findings reveal new roles for NUDTs in PP-InsP signaling,plant nutrient and immune responses,and highlight a cross-kingdom conservation of PP-InsP-metabolizing enzymes. 展开更多
关键词 ADP phosphotransferase CE-ESI-MS inositol pyrophosphates iron homeostasis NUDIX hydrolases NUDTs phosphate starvation response plant defense regulation PP-InsPs PSR
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部