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DNA-binding activity of CAMTA3 is essential for its function: identification of critical amino acids for its transcriptional activity .
Faculty
Science
Year:
2023
Type of Publication:
ZU Hosted
Pages:
1986
Authors:
Amira Abdelmoteleb Elsayed Abdelhamyd
Staff Zu Site
Abstract In Staff Site
Journal:
Cells MDPI
Volume:
12
Keywords :
DNA-binding activity , CAMTA3 , essential , , function: identification
Abstract:
Calmodulin-binding transcription activators (CAMTAs), a small family of highly conserved transcription factors, function in calcium-mediated signaling pathways. Of the six CAMTAs in Ara- bidopsis, CAMTA3 regulates diverse biotic and abiotic stress responses. A recent study has shown that CAMTA3 is a guardee of NLRs (Nucleotide-binding, Leucine-rich repeat Receptors) in modulating plant immunity, raising the possibility that CAMTA3 transcriptional activity is dispensable for its function. Here, we show that the DNA-binding activity of CAMTA3 is essential for its role in mediating plant immune responses. Analysis of the DNA-binding (CG-1) domain of CAMTAs in plants and animals showed strong conservation of several amino acids. We mutated six conserved amino acids in the CG-1 domain to investigate their role in CAMTA3 function. Electrophoretic mobility shift assays using these mutants with a promoter of its target gene identified critical amino acid residues necessary for DNA-binding activity. In addition, transient assays showed that these residues are essential for the CAMTA3 function in activating the Rapid Stress Response Element (RSRE)-driven reporter gene expression. In line with this, transgenic lines expressing the CG-1 mutants of CAMTA3 in the camta3 mutant failed to rescue the mutant phenotype and restore the expression of CAMTA3 downstream target genes. Collectively, our results provide biochemical and genetic evidence that the transcriptional activity of CAMTA3 is indispensable for its function.
Author Related Publications
Amira Abdelmoteleb Elsayed Abdelhamyd, "Global gene expression analysis using RNA-seq uncovered a new role for SR1/CAMTA3 transcription factor in salt stress.", scientific reports, 2016
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Amira Abdelmoteleb Elsayed Abdelhamyd, "Effect of Spirulina Platensis Extract on Growth, Phenolic Compounds and Antioxidant Activities of Sisymbrium Irio Callus and Cell Suspension Cultures", Australian Journal of Basic and Applied Sciences, 2009
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Amira Abdelmoteleb Elsayed Abdelhamyd, "Salt-Induced Stability of SR1/CAMTA3 mRNA Is Mediated by Reactive Oxygen Species and Requires the 3’ End of Its Open Reading Frame", Oxford University Press, 2020
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Amira Abdelmoteleb Elsayed Abdelhamyd, "Regulation of carotene biosynthesis through expression of phytoene desaturase gene in Chlamydomonas reinhardtii grown under high light intensity.", Independant publisher, 2019
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Amira Abdelmoteleb Elsayed Abdelhamyd, "The amino acid region from 448-517 of CAMTA3 transcription factor containing a part of the TIG domain represses the N-terminal repression module function .", Springer Nature, 2023
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