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Arabidopsis LEAFY COTYLEDON1 represents a functionally specialized subunit of the CCAAT binding transcription factor

机译:拟南芥LEAFY COTYLEDON1代表CCAAT结合转录因子的功能特定亚基

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摘要

LEAFY COTYLEDON1 (LEC1) is a central regulator that is required for many aspects of Arabidopsis embryogenesis and sufficient to induce embryo development in vegetative cells when expressed ectopically. We previously showed that LEC1 encodes an HAP3 subunit of the CCAAT binding factor and that the 10 Arabidopsis HAP3 (AHAP3) subunits can be divided into two classes, the LEC1-type and the non-LEC1-type, based on sequence similarity within their B domains. By analyzing the ability of chimeric HAP3 subunits containing different combinations of domains from LEC1 and a non-LEC1-type AHAP3 subunit to suppress genetically the lec1 mutation, we show that the B domain of LEC1 is necessary and sufficient within the context of the protein for its activity in embryogenesis. Moreover, we identify one amino acid residue, Asp-55, specific to the LEC1-type B domain that is required for LEC1 activity in embryogenesis and sufficient to confer partial LEC1 activity to a non-LEC1-type B domain. Based on structural similarities between the HAP3 B domain and histone fold motif, we discuss how the Asp-55 residue may functionally differentiate LEC1 from the non-LEC1-type AHAP3 subunits.
机译:LEAFY COTYLEDON1(LEC1)是拟南芥胚发生许多方面所必需的中央调节剂,当异位表达时足以诱导植物细胞中的胚胎发育。我们先前显示LEC1编码CCAAT结合因子的HAP3亚基,并且根据其B中的序列相似性,可以将10个拟南芥HAP3(AHAP3)亚基分为两类,即LEC1型和非LEC1型。域。通过分析包含来自LEC1和非LEC1型AHAP3亚基的域的不同组合的嵌合HAP3亚基在遗传上抑制lec1突变的能力,我们证明LEC1的B结构域在蛋白质的背景下对于其在胚胎发生中的活性。此外,我们确定一个氨基酸残基,Asp-55,特定于胚胎发生中的LEC1活性所需的LEC1型B结构域,并且足以将部分LEC1活性赋予非LEC1型B结构域。基于HAP3 B结构域和组蛋白折叠基序之间的结构相似性,我们讨论了Asp-55残基如何将LEC1与非LEC1型AHAP3亚基功能区分开。

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