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玉米粗糙叶鞘2及其拟南芥同源物不对称叶1与HIRA(一种预测的组蛋白伴侣)相互作用,以在器官发生过程中维持knox基因沉默和确定性。

Maize rough sheath2 and its Arabidopsis orthologue ASYMMETRIC LEAVES1 interact with HIRA, a predicted histone chaperone, to maintain knox gene silencing and determinacy during organogenesis.

作者信息

Phelps-Durr Tara L, Thomas Julie, Vahab Phil, Timmermans Marja C P

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.

出版信息

Plant Cell. 2005 Nov;17(11):2886-98. doi: 10.1105/tpc.105.035477. Epub 2005 Oct 21.

Abstract

Plant shoots are characterized by indeterminate growth resulting from the action of a population of stem cells in the shoot apical meristem (SAM). Indeterminacy within the SAM is specified in part by the class I knox homeobox genes. The myb domain proteins rough sheath2 (RS2) and ASYMMETRIC LEAVES1 (AS1) from maize (Zea mays) and Arabidopsis thaliana, respectively, are required to establish determinacy during leaf development. These proteins are part of a cellular memory system that in response to a stem cell-derived signal keeps knox genes in an off state during organogenesis. Here, we show that RS2/AS1 can form conserved protein complexes through interaction with the DNA binding factor ASYMMETRIC LEAVES2, a predicted RNA binding protein (RIK, for RS2-Interacting KH protein), and a homologue of the chromatin-remodeling protein HIRA. Partial loss of HIRA function in Arabidopsis results in developmental defects comparable to those of as1 and causes reactivation of knox genes in developing leaves, demonstrating a direct role for HIRA in knox gene repression and the establishment of determinacy during leaf formation. Our data suggest that RS2/AS1 and HIRA mediate the epigenetic silencing of knox genes, possibly by modulating chromatin structure. Components of this process are conserved in animals, suggesting the possibility that a similar epigenetic mechanism maintains determinacy during both plant and animal development.

摘要

植物地上部分的特征是茎尖分生组织(SAM)中的一群干细胞作用导致的无限生长。SAM内的无限性部分由I类knox同源异型框基因决定。来自玉米(Zea mays)和拟南芥(Arabidopsis thaliana)的myb结构域蛋白粗糙叶鞘2(RS2)和不对称叶1(AS1)分别是叶片发育过程中建立确定性所必需的。这些蛋白质是细胞记忆系统的一部分,该系统响应干细胞衍生的信号,在器官发生过程中将knox基因保持在关闭状态。在这里,我们表明RS2/AS1可以通过与DNA结合因子不对称叶2、一种预测的RNA结合蛋白(RIK,即与RS2相互作用的KH蛋白)以及染色质重塑蛋白HIRA的同源物相互作用形成保守的蛋白质复合物。拟南芥中HIRA功能的部分丧失导致与as1类似的发育缺陷,并导致发育中的叶片中knox基因重新激活,这表明HIRA在knox基因抑制和叶片形成过程中确定性的建立中具有直接作用。我们的数据表明,RS2/AS1和HIRA可能通过调节染色质结构介导knox基因的表观遗传沉默。这一过程的组成部分在动物中是保守的,这表明在植物和动物发育过程中可能存在类似的表观遗传机制来维持确定性。

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