恶毒的
转录因子
生物
遗传学
汉普地区
互补
MADS箱
基因
DNA结合域
细胞生物学
同源异型基因
蛋白质结构域
拟南芥
突变体
作者
Xuelei Lai,Rosario Vega‐León,Véronique Hugouvieux,Romain Blanc‐Mathieu,Froukje van der Wal,Jérémy Lucas,Catarina S. Silva,Agnès Jourdain,José M. Muiño,Max Nanao,Richard G. H. Immink,Kerstin Kaufmann,François Parcy,Cezary Smaczniak,Chloé Zubieta
标识
DOI:10.1038/s41467-021-24978-w
摘要
Abstract The MADS transcription factors (TF) are an ancient eukaryotic protein family. In plants, the family is divided into two main lineages. Here, we demonstrate that DNA binding in both lineages absolutely requires a short amino acid sequence C-terminal to the MADS domain (M domain) called the Intervening domain (I domain) that was previously defined only in type II lineage MADS. Structural elucidation of the MI domains from the floral regulator, SEPALLATA3 (SEP3), shows a conserved fold with the I domain acting to stabilise the M domain. Using the floral organ identity MADS TFs, SEP3, APETALA1 (AP1) and AGAMOUS (AG), domain swapping demonstrate that the I domain alters genome-wide DNA-binding specificity and dimerisation specificity. Introducing AG carrying the I domain of AP1 in the Arabidopsis ap1 mutant resulted in strong complementation and restoration of first and second whorl organs. Taken together, these data demonstrate that the I domain acts as an integral part of the DNA-binding domain and significantly contributes to the functional identity of the MADS TF.
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