Protein-DNA interaction

A homeodomain leucine zipper gene from Craterostigma plantagineum regulates abscisic acid responsive gene expression and physiological responses

Genetics / Plant Biology / Transcription Regulation / Seed germination / Transcription Factors / Plant Molecular Biology / Gene expression / Desiccation Tolerance / Protein Structure and Function / Protein-DNA interaction / Sequence alignment / Organization Development / Abscisic Acid / Transcription Factor / Physiological Response / Germination / Seeds / Adaptive Response / Amino Acid Sequence / Expression analysis / PLANT PROTEINS / Transgenic plant / Biochemistry and cell biology / Gene expression profiling / Plant Leaves / Molecular Sequence Data / Plant Molecular Biology / Gene expression / Desiccation Tolerance / Protein Structure and Function / Protein-DNA interaction / Sequence alignment / Organization Development / Abscisic Acid / Transcription Factor / Physiological Response / Germination / Seeds / Adaptive Response / Amino Acid Sequence / Expression analysis / PLANT PROTEINS / Transgenic plant / Biochemistry and cell biology / Gene expression profiling / Plant Leaves / Molecular Sequence Data

A homeodomain leucine zipper gene from Craterostigma plantagineum regulates abscisic acid responsive gene expression and physiological responses

Genetics / Plant Biology / Transcription Regulation / Seed germination / Transcription Factors / Plant Molecular Biology / Gene expression / Desiccation Tolerance / Protein Structure and Function / Protein-DNA interaction / Sequence alignment / Organization Development / Abscisic Acid / Transcription Factor / Physiological Response / Germination / Seeds / Adaptive Response / Amino Acid Sequence / Expression analysis / PLANT PROTEINS / Transgenic plant / Biochemistry and cell biology / Gene expression profiling / Plant Leaves / Molecular Sequence Data / Plant Molecular Biology / Gene expression / Desiccation Tolerance / Protein Structure and Function / Protein-DNA interaction / Sequence alignment / Organization Development / Abscisic Acid / Transcription Factor / Physiological Response / Germination / Seeds / Adaptive Response / Amino Acid Sequence / Expression analysis / PLANT PROTEINS / Transgenic plant / Biochemistry and cell biology / Gene expression profiling / Plant Leaves / Molecular Sequence Data

Transcription factor IIIB generates extended DNA interactions in RNA polymerase III transcription complexes on tRNA genes

Cellular Biology / Kinetics / RNA polymerase / Transcription Factors / Biological Sciences / Saccharomyces cerevisiae / Phosphorus / Protein-DNA interaction / Molecular and cellular biology / Plasmids / Affinity chromatography / Transcription Factor / Enzyme / Triazines / Base Sequence / Reaction Kinetics / Protein Binding / Transcription Start Site / Organic Compound / Nucleic Acid / Molecular Sequence Data / Saccharomyces cerevisiae / Phosphorus / Protein-DNA interaction / Molecular and cellular biology / Plasmids / Affinity chromatography / Transcription Factor / Enzyme / Triazines / Base Sequence / Reaction Kinetics / Protein Binding / Transcription Start Site / Organic Compound / Nucleic Acid / Molecular Sequence Data
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