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拟南芥NF-YB亚基LEC1和类LEC1通过与种子特异性ABRE结合因子相互作用来激活转录。

Arabidopsis NF-YB subunits LEC1 and LEC1-LIKE activate transcription by interacting with seed-specific ABRE-binding factors.

作者信息

Yamamoto Akiko, Kagaya Yasuaki, Toyoshima Ryoko, Kagaya Michiko, Takeda Shin, Hattori Tsukaho

机构信息

Bioscience and Biotechnology Center, Nagoya University, Chikusa-ku, Nagoya, Japan.

出版信息

Plant J. 2009 Jun;58(5):843-56. doi: 10.1111/j.1365-313X.2009.03817.x. Epub 2009 Feb 3.

Abstract

LEAFY COTYLEDON 1 (LEC1) plays vital roles in the regulation of seed maturation in Arabidopsis. LEC1 encodes a homolog of yeast HAP3 or mammalian NF-YB/CBF-A subunit of trimeric CCAAT binding factor (CBF). Among the nine paralogs of NF-YB in Arabidopsis, LEC1-LIKE (L1L) is most closely related to LEC1, and can complement the lec1 mutation when expressed under the control of the LEC1 promoter. Although the nature of the B3-type seed maturation regulators as transcription factors have been investigated, knowledge of the molecular action of LEC1 is limited. When co-expressed with NF-YC2 in the presence of ABA, we found that LEC1 or L1L, but not other NF-YBs, activated the promoter of CRUCIFERIN C (CRC), which encodes a seed storage protein. However, additional expression of an NF-YA subunit interfered with the activation. The LEC1/L1L-[NF-YC2] activation depended on ABA-response elements present in the promoter, which led to the finding that LEC1/L1L-[NF-YC2] can strongly activate the CRC promoter in the absence of ABA when co-expressed with a seed-specific ABA-response element (ABRE)-binding factor, bZIP67. Functional coupling of LEC1/L1L-[AtNF-YC2] and bZIP67 was also observed in the regulation of sucrose synthase 2 (SUS2). Immunoprecipitation experiments revealed that L1L and bZIP67 formed a protein complex in vivo. These results demonstrate a novel plant-specific mechanism for NF-Y subunit function that enables LEC1 and L1L to regulate a defined developmental network.

摘要

叶状子叶1(LEC1)在拟南芥种子成熟调控中发挥着至关重要的作用。LEC1编码酵母HAP3或三聚体CCAAT结合因子(CBF)的哺乳动物NF-YB/CBF-A亚基的同源物。在拟南芥NF-YB的九个旁系同源物中,类LEC1(L1L)与LEC1关系最为密切,并且在LEC1启动子的控制下表达时能够互补lec1突变。尽管作为转录因子的B3型种子成熟调节因子的性质已得到研究,但关于LEC1分子作用的知识仍然有限。当在脱落酸(ABA)存在的情况下与NF-YC2共表达时,我们发现LEC1或L1L,而非其他NF-YB,激活了编码种子储存蛋白的十字花科素C(CRC)的启动子。然而,NF-YA亚基的额外表达会干扰这种激活。LEC1/L1L-[NF-YC2]的激活依赖于启动子中存在的ABA反应元件,这导致发现当与种子特异性ABA反应元件(ABRE)结合因子bZIP67共表达时,LEC1/L1L-[NF-YC2]在没有ABA的情况下能够强烈激活CRC启动子。在蔗糖合酶2(SUS2)的调控中也观察到了LEC1/L1L-[AtNF-YC2]和bZIP67的功能偶联。免疫沉淀实验表明L1L和bZIP67在体内形成了蛋白质复合物。这些结果证明了一种新的植物特异性NF-Y亚基功能机制,使LEC1和L1L能够调控一个特定的发育网络。

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