Maruyama Jun-ichi, Juvvadi Praveen Rao, Ishi Kazutomo, Kitamoto Katsuhiko
Department of Biotechnology, University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.
Biochem Biophys Res Commun. 2005 Jun 17;331(4):1081-8. doi: 10.1016/j.bbrc.2005.03.233.
We observed that the filamentous fungus, Aspergillus oryzae, grown on agar media burst out cytoplasmic constituents from the hyphal tip soon after flooding with water. Woronin body is a specialized organelle known to plug the septal pore adjacent to the lysed compartment to prevent extensive loss of cytoplasm. A. oryzae Aohex1 gene homologous to Neurospora crassa HEX1 gene encoding a major protein in Woronin body was expressed as a fusion with DsRed2, resulting in visualization of Woronin body. Confocal microscopy and three-dimensional reconstruction of images visualized the septal pore as a dark region surrounded by green fluorescence of EGFP-fused secretory protein, RNase T1, on the septum. Dual fluorescent labeling revealed the plugging of the septal pores adjacent to the lysed apical compartments by Woronin bodies during hypotonic shock. Disruption of Aohex1 gene caused disappearance of Woronin bodies and the defect to prevent extensive loss of cytoplasm during hypotonic shock.
我们观察到,在琼脂培养基上生长的丝状真菌米曲霉,在用水淹没后不久,其菌丝尖端会爆发出细胞质成分。沃罗宁体是一种特殊的细胞器,已知它会堵塞与裂解隔室相邻的隔膜孔,以防止细胞质大量流失。与粗糙脉孢菌HEX1基因同源的米曲霉Aohex1基因编码沃罗宁体中的一种主要蛋白质,该基因与DsRed2融合表达,从而实现了沃罗宁体的可视化。共聚焦显微镜和图像的三维重建将隔膜孔可视化为隔膜上被EGFP融合分泌蛋白RNase T1的绿色荧光包围的暗区。双重荧光标记显示,在低渗休克期间,沃罗宁体会堵塞与裂解顶端隔室相邻的隔膜孔。Aohex1基因的破坏导致沃罗宁体消失,并且在低渗休克期间无法防止细胞质大量流失。