Archacki Rafal, Sarnowski Tomasz J, Halibart-Puzio Joanna, Brzeska Katarzyna, Buszewicz Daniel, Prymakowska-Bosak Marta, Koncz Csaba, Jerzmanowski Andrzej
Laboratory of Plant Molecular Biology, University of Warsaw, Pawinskiego 5A, 02-106, Warsaw, Poland.
Planta. 2009 May;229(6):1281-92. doi: 10.1007/s00425-009-0915-5. Epub 2009 Mar 20.
In yeast and mammals, ATP-dependent chromatin remodelling complexes of the SWI/SNF family play critical roles in the regulation of transcription, cell proliferation, differentiation and development. Homologues of conserved subunits of SWI/SNF-type complexes, including Snf2-type ATPases and SWI3-type proteins, participate in analogous processes in Arabidopsis. Recent studies indicate a remarkable similarity between phenotypic effects of mutations in the SWI3 homologue ATSWI3C and bromodomain-ATPase BRM genes. To verify the extent of functional similarity between BRM and ATSWI3C, we have constructed atswi3c brm double mutants and compared their phenotypic traits to those of simultaneously grown single atswi3c and brm mutants. In addition to inheritance of characteristic developmental abnormalities shared by atswi3c and brm mutants, some additive brm-specific traits were also observed in the atswi3c brm double mutants. Unlike atswi3c, the brm mutation results in the enhancement of abnormal carpel development and pollen abortion leading to complete male sterility. Despite the overall similarity of brm and atswi3c phenotypes, a critical requirement for BRM in the differentiation of reproductive organs suggests that its regulatory functions do not entirely overlap those of ATSWI3C. The detection of two different transcript isoforms indicates that BRM is regulated by alternative splicing that creates an in-frame premature translation stop codon in its SNF2-like ATPase coding domain. The analysis of Arabidopsis mutants in nonsense-mediated decay suggests an involvement of this pathway in the control of alternative BRM transcript level.
在酵母和哺乳动物中,SWI/SNF家族的ATP依赖性染色质重塑复合物在转录调控、细胞增殖、分化和发育过程中发挥着关键作用。SWI/SNF型复合物保守亚基的同源物,包括Snf2型ATP酶和SWI3型蛋白,参与拟南芥中的类似过程。最近的研究表明,SWI3同源物ATSWI3C和溴结构域-ATP酶BRM基因突变的表型效应之间存在显著相似性。为了验证BRM和ATSWI3C之间功能相似的程度,我们构建了atswi3c brm双突变体,并将它们的表型特征与同时生长的单个atswi3c和brm突变体进行比较。除了继承atswi3c和brm突变体共有的特征性发育异常外,在atswi3c brm双突变体中还观察到一些额外的brm特异性性状。与atswi3c不同,brm突变导致心皮发育异常和花粉败育加剧,导致完全雄性不育。尽管brm和atswi3c表型总体相似,但BRM在生殖器官分化中的关键需求表明其调控功能并不完全与ATSWI3C重叠。两种不同转录本异构体的检测表明,BRM受可变剪接调控,在其SNF2样ATP酶编码结构域中产生一个框内过早翻译终止密码子。对拟南芥无义介导衰变突变体的分析表明,该途径参与了BRM可变转录本水平的控制。