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进化和分子分析 Dof 转录因子鉴定了细胞间蛋白质运输的保守基序。

Evolutionary and molecular analysis of Dof transcription factors identified a conserved motif for intercellular protein trafficking.

机构信息

Department of Biochemistry, College of Natural Science, Gyeongsang National University, Jinju, 660-701, South Korea.

Department of Plant Biology, College of Biological Sciences, University of California, Davis, CA, 95616, USA.

出版信息

New Phytol. 2013 Jun;198(4):1250-1260. doi: 10.1111/nph.12223. Epub 2013 Mar 18.

Abstract

· Cell-to-cell trafficking of transcription factors (TFs) has been shown to play an important role in the regulation of plant developmental events, but the evolutionary relationship between cell-autonomous and noncell-autonomous (NCA) TFs remains elusive. · AtDof4.1, named INTERCELLULAR TRAFFICKING DOF 1 (ITD1), was chosen as a representative NCA member to explore this evolutionary relationship. Using domain structure-function analyses and swapping studies, we examined the cell-to-cell trafficking of plant-specific Dof TF family members across Arabidopsis and other species. · We identified a conserved intercellular trafficking motif (ITM) that is necessary and sufficient for selective cell-to-cell trafficking and can impart gain-of-function cell-to-cell movement capacity to an otherwise cell-autonomous TF. The functionality of related motifs from Dof members across the plant kingdom extended, surprisingly, to a unicellular alga that lacked plasmodesmata. By contrast, the algal homeodomain related to the NCA KNOX homeodomain was either inefficient or unable to impart such cell-to-cell movement function. · The Dof ITM appears to predate the evolution of selective plasmodesmal trafficking in the plant kingdom, which may well have acted as a molecular template for the evolution of Dof proteins as NCA TFs. However, the ability to efficiently traffic for KNOX homeodomain (HD) proteins may have been acquired during the evolution of early nonvascular plants.

摘要

· 细胞间转录因子 (TFs) 的运输已被证明在植物发育事件的调控中发挥着重要作用,但细胞自主和非细胞自主 (NCA) TF 之间的进化关系仍然难以捉摸。· AtDof4.1,命名为 INTERCELLULAR TRAFFICKING DOF1 (ITD1),被选为 NCA 成员的代表来探索这种进化关系。使用结构-功能分析和交换研究,我们检查了植物特异性 Dof TF 家族成员在拟南芥和其他物种中的细胞间运输。· 我们确定了一个保守的细胞间运输基序 (ITM),它是选择性细胞间运输所必需和充分的,并且可以赋予一个原本细胞自主的 TF 获得功能的细胞间运动能力。出乎意料的是,来自植物界 Dof 成员的相关基序的功能延伸到了缺乏胞间连丝的单细胞藻类。相比之下,与 NCA KNOX 同源域相关的藻类同源域既不能有效地赋予这种细胞间运动功能,也不能赋予这种细胞间运动功能。· Dof ITM 似乎先于植物王国选择性质膜运输的进化,它可能是 Dof 蛋白作为 NCA TF 进化的分子模板。然而,KNOX 同源域 (HD) 蛋白有效运输的能力可能是在早期非维管束植物的进化过程中获得的。

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