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突触结合蛋白I参与海胆皮层颗粒胞吐作用的调节。

Synaptotagmin I is involved in the regulation of cortical granule exocytosis in the sea urchin.

作者信息

Leguia Mariana, Conner Sean, Berg Linnea, Wessel Gary M

机构信息

Department of Molecular and Cellular Biology & Biochemistry, Brown University, Providence, Rhode Island 02912, USA.

出版信息

Mol Reprod Dev. 2006 Jul;73(7):895-905. doi: 10.1002/mrd.20454.

Abstract

Cortical granules are stimulus-dependent secretory vesicles found in the egg cortex of most vertebrates and many invertebrates. Upon fertilization, an increase in intracellular calcium levels triggers cortical granules to exocytose enzymes and structural proteins that permanently modify the extracellular surface of the egg to prevent polyspermy. Synaptotagmin is postulated to be a calcium sensor important for stimulus-dependent secretion and to test this hypothesis for cortical granule exocytosis, we identified the ortholog in two sea urchin species that is present selectively on cortical granules. Characterization by RT-PCR, in-situ RNA hybridization, Western blot and immunolocalization shows that synaptotagmin I is expressed in a manner consistent with it having a role during cortical granule secretion. We specifically tested synaptotagmin function during cortical granule exocytosis using a microinjected antibody raised against the entire cytoplasmic domain of sea urchin synaptotagmin I. The results show that synaptotagmin I is essential for normal cortical granule dynamics at fertilization in the sea urchin egg. Identification of this same protein in other developmental stages also shown here will be important for interpreting stimulus-dependent secretory events for signaling throughout embryogenesis.

摘要

皮质颗粒是在大多数脊椎动物和许多无脊椎动物的卵皮质中发现的依赖刺激的分泌小泡。受精时,细胞内钙水平的升高会触发皮质颗粒胞吐酶和结构蛋白,这些物质会永久性地改变卵的细胞外表面以防止多精受精。突触结合蛋白被认为是一种对依赖刺激的分泌很重要的钙传感器,为了验证这一关于皮质颗粒胞吐作用的假设,我们在两种海胆物种中鉴定出了仅选择性存在于皮质颗粒上的直系同源物。通过逆转录聚合酶链反应(RT-PCR)、原位RNA杂交、蛋白质免疫印迹和免疫定位进行的表征表明,突触结合蛋白I的表达方式与其在皮质颗粒分泌过程中发挥作用相一致。我们使用针对海胆突触结合蛋白I整个细胞质结构域产生的显微注射抗体,专门测试了皮质颗粒胞吐过程中突触结合蛋白的功能。结果表明,突触结合蛋白I对于海胆卵受精时正常的皮质颗粒动态变化至关重要。本文中在此处其他发育阶段对同一蛋白质的鉴定,对于解释整个胚胎发育过程中信号传导的依赖刺激的分泌事件将具有重要意义。

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