Sarnowski Tomasz J, Ríos Gabino, Jásik Jan, Swiezewski Szymon, Kaczanowski Szymon, Li Yong, Kwiatkowska Aleksandra, Pawlikowska Katarzyna, Koźbiał Marta, Koźbiał Piotr, Koncz Csaba, Jerzmanowski Andrzej
Institute of Biochemistry and Biophysics, Polish Academy of Sciences, 02-106 Warsaw, Poland.
Plant Cell. 2005 Sep;17(9):2454-72. doi: 10.1105/tpc.105.031203. Epub 2005 Jul 29.
SWITCH/SUCROSE NONFERMENTING (SWI/SNF) chromatin-remodeling complexes mediate ATP-dependent alterations of DNA-histone contacts. The minimal functional core of conserved SWI/SNF complexes consists of a SWI2/SNF2 ATPase, SNF5, SWP73, and a pair of SWI3 subunits. Because of early duplication of the SWI3 gene family in plants, Arabidopsis thaliana encodes four SWI3-like proteins that show remarkable functional diversification. Whereas ATSWI3A and ATSWI3B form homodimers and heterodimers and interact with BSH/SNF5, ATSWI3C, and the flowering regulator FCA, ATSWI3D can only bind ATSWI3B in yeast two-hybrid assays. Mutations of ATSWI3A and ATSWI3B arrest embryo development at the globular stage. By a possible imprinting effect, the atswi3b mutations result in death for approximately half of both macrospores and microspores. Mutations in ATSWI3C cause semidwarf stature, inhibition of root elongation, leaf curling, aberrant stamen development, and reduced fertility. Plants carrying atswi3d mutations display severe dwarfism, alterations in the number and development of flower organs, and complete male and female sterility. These data indicate that, by possible contribution to the combinatorial assembly of different SWI/SNF complexes, the ATSWI3 proteins perform nonredundant regulatory functions that affect embryogenesis and both the vegetative and reproductive phases of plant development.
SWITCH/蔗糖非发酵(SWI/SNF)染色质重塑复合物介导DNA-组蛋白接触的ATP依赖性改变。保守的SWI/SNF复合物的最小功能核心由SWI2/SNF2 ATP酶、SNF5、SWP73和一对SWI3亚基组成。由于植物中SWI3基因家族的早期复制,拟南芥编码四种SWI3样蛋白,它们表现出显著的功能多样化。虽然ATSWI3A和ATSWI3B形成同二聚体和异二聚体,并与BSH/SNF5、ATSWI3C和开花调节因子FCA相互作用,但在酵母双杂交试验中,ATSWI3D只能与ATSWI3B结合。ATSWI3A和ATSWI3B的突变使胚胎发育在球形期停滞。由于可能的印记效应,atswi3b突变导致大约一半的大孢子和小孢子死亡。ATSWI3C的突变导致植株半矮化、根伸长受抑制、叶片卷曲、雄蕊发育异常和育性降低。携带atswi3d突变的植株表现出严重矮化、花器官数量和发育改变以及完全的雄性和雌性不育。这些数据表明,通过可能对不同SWI/SNF复合物的组合组装做出贡献,ATSWI3蛋白发挥非冗余的调节功能,影响胚胎发生以及植物发育的营养和生殖阶段。