Method for the determination of trajectory angles of directional secretory vesicles in cultured astrocytes.

Inquiro Pub Date : 2013-01-01
Chapin E Cavender, Manoj K Gottipati, Erik B Malarkey, Vladimir Parpura
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Abstract

Astrocytes provide a principal pathway for glutamate uptake in the mammalian brain, a task accomplished by the powerful action of excitatory amino acid transporters (EAAT) 1 and 2. These transporters are synthesized within the endoplasmic reticulum and are then trafficked to the plasma membrane. The characteristics of their intracellular traffic within astrocytes have not been investigated. We monitored the trafficking of secretory vesicles laden with the recombinant fluorescent protein chimera of EAAT2 in cultured astrocytes. Such vesicles appeared as fluorescent puncta, and their trafficking parameters were obtained using original algorithms, which we describe here in detail. We determined the maximal displacement, average instantaneous speed, and trajectory angle of individual puncta/vesicles, with angles near 0° indicating radial movement directly away from or toward the nucleus and angles near 90° indicating tangential movement. Analysis of these trafficking parameters demonstrated that trafficking of EAAT2-laden vesicles has typical characteristics expected of the trafficking of secretory vesicles in cultured astrocytes. The distribution of trajectory angles for directional vesicles, i.e. those with a maximal displacement greater than 1 μm within the 40-s time-lapse imaging, was found to be unimodal, with angles near 0° being the most prominent (mode 7°). These measurements are in good agreement with previous measurements of trajectory angles of similar trafficking vesicles carrying cannabinoid receptor 1, evidencing the validity and robustness of our analytical approach and algorithms.

培养星形胶质细胞定向分泌囊泡轨迹角的测定方法。
星形胶质细胞提供了哺乳动物大脑中谷氨酸摄取的主要途径,这一任务是由兴奋性氨基酸转运蛋白(EAAT) 1和2的强大作用完成的。这些转运蛋白在内质网内合成,然后转运到质膜。它们在星形胶质细胞内的细胞内运输特性尚未被研究。我们在培养的星形胶质细胞中监测了装载EAAT2重组荧光蛋白嵌合体的分泌囊泡的运输。这些囊泡以荧光点的形式出现,它们的运输参数是用原始算法获得的,我们在这里详细描述。我们确定了单个点/囊泡的最大位移、平均瞬时速度和轨迹角,角接近0°表示直接远离或朝向核的径向运动,角接近90°表示切向运动。对这些运输参数的分析表明,载eaat2囊泡的运输具有培养星形胶质细胞分泌囊泡运输的典型特征。40 s延时成像中最大位移大于1 μm的定向囊泡轨迹角呈单峰分布,其中0°附近的轨迹角最为突出(模态为7°)。这些测量结果与先前对携带大麻素受体1的类似贩运囊泡的轨迹角度的测量结果非常一致,证明了我们的分析方法和算法的有效性和鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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