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Mug28, a Meiosis-specific Protein of Schizosaccharomyces pombe, Regulates Spore Wall Formation

机译:Mug28,一种粟酒裂殖酵母减数分裂特异蛋白,调节孢子壁的形成

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The meiosis-specific mug28 + gene of Schizosaccharomyces pombe encodes a putative RNA-binding protein with three RNA recognition motifs (RRMs). Live observations of meiotic cells that express Mug28 tagged with green fluorescent protein (GFP) revealed that Mug28 is localized in the cytoplasm, and accumulates around the nucleus from metaphase I to anaphase II. Disruption of mug28 + generated spores with low viability, due to the aberrant formation of the forespore membrane (FSM). Visualization of the FSM in living cells expressing GFP-tagged Psy1, an FSM protein, indicated that mug28 Δ cells harbored abnormal FSMs that contained buds, and had a delayed disappearance of Meu14, a leading edge protein. Electron microscopic observation revealed that FSM formation was abnormal in mug28 Δ cells, showing bifurcated spore walls that were thicker than the nonbifurcated spore walls of the wild type. Analysis of Mug28 mutants revealed that RRM3, in particular phenylalanin-466, is of primary importance for the proper localization of Mug28, spore viability, and FSM formation. Together, we conclude that Mug28 is essential for the proper maturation of the FSM and the spore wall.
机译:粟酒裂殖酵母的减数分裂特异的mug28 + 基因编码具有三个RNA识别基序(RRM)的推定RNA结合蛋白。实时观察表达Mug28并标记有绿色荧光蛋白(GFP)的减数分裂细胞,发现Mug28定位在细胞质中,并从中期I到后期II聚集在核周围。由于前孢子膜(FSM)的异常形成,Mug28 + 的破裂产生了活力低的孢子。在表达GFP标签的Psy1(一种FSM蛋白)的活细胞中,FSM的可视化表明,mug28Δ细胞具有异常的FSM,其中包含芽,并延迟了Meu14(一种前沿蛋白)的消失。电子显微镜观察显示,在mug28Δ细胞中FSM形成异常,显示分叉的孢子壁厚于野生型的非分叉的孢子壁。对Mug28突变体的分析表明,RRM3,尤其是苯丙氨酸-466,对于Mug28的正确定位,孢子生存力和FSM的形成至关重要。在一起,我们得出结论,Mug28对于FSM和孢子壁的正确成熟至关重要。

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