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The BBX family of plant transcription factors

生物 转录因子 锌指 非生物成分 光形态发生 遗传学 NFAT公司 抄写(语言学) 转录调控 功能分歧 蛋白质家族 细胞生物学 拟南芥 基因 基因家族 基因表达 生态学 突变体 语言学 哲学
作者
Sreeramaiah N. Gangappa,Javier F. Botto
出处
期刊:Trends in Plant Science [Elsevier]
卷期号:19 (7): 460-470 被引量:428
标识
DOI:10.1016/j.tplants.2014.01.010
摘要

•B-box (BBX) transcription factors are a conserved group of proteins with a zinc-binding B-Box-domain. •BBX proteins are involved in transcriptional activity and protein–protein interaction. •BBX proteins are cofactors that control growth and development throughout the plant life cycle. •Different members of the BBX protein family can play opposite roles in the same physiological processes. The B-box (BBX) proteins are a class of zinc-finger transcription factors containing a B-box domain with one or two B-box motifs, and sometimes also feature a CCT (CONSTANS, CO-like, and TOC1) domain. BBX proteins are key factors in regulatory networks controlling growth and developmental processes that include seedling photomorphogenesis, photoperiodic regulation of flowering, shade avoidance, and responses to biotic and abiotic stresses. In this review we discuss the functions of BBX proteins and the role of B-box motif in mediating transcriptional regulation and protein–protein interaction in plant signaling. In addition, we provide novel insights into the molecular mechanisms of their action and the evolutionary significance of their functional divergence. The B-box (BBX) proteins are a class of zinc-finger transcription factors containing a B-box domain with one or two B-box motifs, and sometimes also feature a CCT (CONSTANS, CO-like, and TOC1) domain. BBX proteins are key factors in regulatory networks controlling growth and developmental processes that include seedling photomorphogenesis, photoperiodic regulation of flowering, shade avoidance, and responses to biotic and abiotic stresses. In this review we discuss the functions of BBX proteins and the role of B-box motif in mediating transcriptional regulation and protein–protein interaction in plant signaling. In addition, we provide novel insights into the molecular mechanisms of their action and the evolutionary significance of their functional divergence.
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