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蝾螈嗜酸性粒细胞中心体的激光照射:中心粒在运动中作用的证据

Laser irradiation of centrosomes in newt eosinophils: evidence of centriole role in motility.

作者信息

Koonce M P, Cloney R A, Berns M W

出版信息

J Cell Biol. 1984 Jun;98(6):1999-2010. doi: 10.1083/jcb.98.6.1999.

Abstract

Newt eosinophils are motile granulated leukocytes that uniquely display a highly visible centrosomal area. Electron microscope and tubulin antibody fluorescence confirms the presence of centrioles, pericentriolar material, and radiating microtubules within this visible area. Actin antibodies intensely stain the advancing cell edges and tail but only weakly stain pseudopods being withdrawn into the cell. Randomly activated eosinophils follow a roughly consistent direction with an average rate of 22.5 micron/min. The position of the centrosome is always located between the trailing cell nucleus and advancing cell edge. If the cell extends more than one pseudopod, the one closest to or containing the centrosome is always the one in which motility continues. Laser irradiation of the visible centrosomal area resulted in rapid cell rounding. After several minutes following irradiation, most cells flattened and movement continued. However, postirradiation motility was uncoordinated and directionless , and the rate decreased to an average of 14.5 micron/min. Electron microscopy and tubulin immunofluorescence indicated that an initial disorganization of microtubules resulted from the laser microirradiations . After several minutes, organized microtubules reappeared, but the centrioles appeared increasingly damaged. The irregularities in motility due to irradiation are probably related to the damaged centrioles. The results presented in this paper suggest that the centrosome is an important structure in controlling the rate and direction of newt eosinophil motility.

摘要

蝾螈嗜酸性粒细胞是可移动的有颗粒白细胞,其独特之处在于有一个高度可见的中心体区域。电子显微镜和微管蛋白抗体荧光证实了在这个可见区域内存在中心粒、中心粒周围物质和辐射状微管。肌动蛋白抗体强烈染色前进的细胞边缘和尾部,但仅微弱染色正缩回细胞内的伪足。随机激活的嗜酸性粒细胞大致沿一致方向移动,平均速度为22.5微米/分钟。中心体的位置始终位于尾部细胞核和前进的细胞边缘之间。如果细胞伸出不止一个伪足,最靠近或包含中心体的伪足总是继续运动的那个。对可见的中心体区域进行激光照射会导致细胞迅速变圆。照射后几分钟,大多数细胞变平并继续移动。然而,照射后的运动不协调且无方向,速度降至平均14.5微米/分钟。电子显微镜和微管蛋白免疫荧光表明,激光微照射导致微管最初紊乱。几分钟后,有组织的微管重新出现,但中心粒似乎越来越受损。照射引起的运动不规则可能与受损的中心粒有关。本文给出的结果表明,中心体是控制蝾螈嗜酸性粒细胞运动速度和方向的重要结构。

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