Graduate School of Agriculture, Osaka Metropolitan University, 1-1 Gakuen-cho, Sakai 599-8531, Japan.
Graduate School of Life and Environmental Sciences, Osaka Prefecture University, 1-1 Gakuen-cho, Sakai 599-8531, Japan.
Biomolecules. 2024 Jul 19;14(7):868. doi: 10.3390/biom14070868.
An Arabidopsis sterol mutant, , defective in sterolmethyltransferase2 (SMT2), exhibits severe growth abnormalities. The loss of C-24 ethyl sterols, maintaining the biosynthesis of C-24 methyl sterols and brassinosteroids, suggests specific roles of C-24 ethyl sterols. We characterized the subcellular localizations of fluorescent protein-fused sterol biosynthetic enzymes, such as SMT2-GFP, and found these enzymes in the endoplasmic reticulum during interphase and identified their movement to the division plane during cytokinesis. The mobilization of endoplasmic reticulum-localized SMT2-GFP was independent of the polarized transport of cytokinetic vesicles to the division plane. In , SMT2-GFP moved to the abnormal division plane, and unclear cell plate ends were surrounded by hazy structures from SMT2-GFP fluorescent signals and unincorporated cellulose debris. Unusual cortical microtubule organization and impaired cytoskeletal function accompanied the failure to determine the cortical division site and division plane formation. These results indicated that both endoplasmic reticulum membrane remodeling and cytokinetic vesicle transport during cytokinesis were impaired, resulting in the defects of cell wall generation. The cell wall integrity was compromised in the daughter cells, preventing the correct determination of the subsequent cell division site. We discuss the possible roles of C-24 ethyl sterols in the interaction between the cytoskeletal network and the plasma membrane.
拟南芥固醇突变体 ,其 sterolmethyltransferase2(SMT2)有缺陷,表现出严重的生长异常。C-24 乙基固醇的缺失,维持了 C-24 甲基固醇和油菜素内酯的生物合成,表明 C-24 乙基固醇具有特定的作用。我们对荧光蛋白融合固醇生物合成酶(如 SMT2-GFP)的亚细胞定位进行了表征,发现这些酶在有丝分裂间期存在于内质网中,并在胞质分裂期间鉴定到它们向分裂面的运动。内质网定位的 SMT2-GFP 的动员与有丝分裂小泡向分裂面的极化运输无关。在 ,SMT2-GFP 移动到异常的分裂面,未融合的纤维素碎片和不清晰的细胞板末端被 SMT2-GFP 荧光信号包围。异常的皮层微管组织和细胞骨架功能受损伴随着无法确定皮层分裂位点和分裂面形成。这些结果表明,胞质分裂过程中内质网膜重塑和有丝分裂小泡运输都受到了损害,导致细胞壁生成缺陷。细胞壁完整性在子细胞中受到损害,阻止了后续细胞分裂位点的正确确定。我们讨论了 C-24 乙基固醇在细胞骨架网络与质膜相互作用中的可能作用。