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首页> 外文期刊>The Plant Cell >STENOFOLIA recruits TOPLESS to repress ASYMMETRIC LEAVES2 at the leaf margin and promote leaf blade outgrowth in Medicago truncatula.
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STENOFOLIA recruits TOPLESS to repress ASYMMETRIC LEAVES2 at the leaf margin and promote leaf blade outgrowth in Medicago truncatula.

机译:STENOFOLIA招募TOPLESS来压抑紫花苜蓿叶片边缘的不对称叶2并促进叶片长出。

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摘要

The Medicago truncatula WUSCHEL-related homeobox (WOX) gene, STENOFOLIA (STF), plays a key role in leaf blade outgrowth by promoting cell proliferation at the adaxial-abaxial junction. STF functions primarily as a transcriptional repressor, but the underlying molecular mechanism is unknown. Here, we report the identification of a protein interaction partner and a direct target, shedding light on the mechanism of STF function. Two highly conserved motifs in the C-terminal domain of STF, the WUSCHEL (WUS) box and the STF box, cooperatively recruit TOPLESS (Mt-TPL) family corepressors, and this recruitment is required for STF function, as deletion of these two domains (STFdel) impaired blade outgrowth whereas fusing Mt-TPL to STFdel restored function. The homeodomain motif is required for direct repression of ASYMMETRIC LEAVES2 (Mt-AS2), silencing of which partially rescues the stf mutant phenotype. STF and LAMINALESS1 (LAM1) are functional orthologs. A single amino acid (Asn to Ile) substitution in the homeodomain abolished the repression of Mt-AS2 and STF's ability to complement the lam1 mutant of Nicotiana sylvestris. Our data together support a model in which STF recruits corepressors to transcriptionally repress its targets during leaf blade morphogenesis. We propose that recruitment of TPL/TPL-related proteins may be a common mechanism in the repressive function of modern/WUS clade WOX genes.
机译:ca藜苜蓿WUSCHEL相关同源异型框(WOX)基因STENOFOLIA(STF)在叶片长出中起着关键作用,它通过促进细胞在轴-轴交界处增殖。 STF主要起转录抑制因子的作用,但潜在的分子机制尚不清楚。在这里,我们报告了蛋白质相互作用伙伴和直接目标的鉴定,阐明了STF功能的机制。 STF的C末端结构域中的两个高度保守的基序WUSCHEL(WUS)框和STF框共同募集TOPLESS(Mt-TPL)家族的核心加压子,并且该募集是STF功能所必需的,因为这两个结构域均被删除(STFdel)会损害刀片的扩展,而将Mt-TPL融合到STFdel会恢复功能。同源域基序是直接抑制ASYMMETRIC LEAVES2(Mt-AS2)所必需的,其沉默可部分拯救stf突变表型。 STF和LAMINALESS1(LAM1)是功能直系同源物。同源域中的单个氨基酸(从Asn到Ile)取代消除了对Mt-AS2的抑制和STF补充了烟草的lam1突变体的能力。我们的数据共同支持了一个模型,在该模型中,STF在叶片形态发生过程中募集了corepressors以转录抑制其靶标。我们建议,TPL / TPL相关蛋白的募集可能是现代/ WUS进化枝WOX基因的抑制功能中的常见机制。

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