Effect of Cell Adhesion Molecule 1 Expression on Intracellular Granule Movement in Pancreatic α Cells

被引:0
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作者
Satoru Yokawa
Tadahide Furuno
Takahiro Suzuki
Yoshikazu Inoh
Ryo Suzuki
Naohide Hirashima
机构
[1] Nagoya City University,Graduate School of Pharmaceutical Sciences
[2] Aichi Gakuin University,School of Pharmacy
[3] Aichi Gakuin University,School of Dentistry
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关键词
Pancreatic α cell; Granule movement; Microtubule; Cell adhesion molecule 1; Spinning disk microscopy;
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摘要
Although glucagon secreted from pancreatic α cells plays a role in increasing glucose concentrations in serum, the mechanism regulating glucagon secretion from α cells remains unclear. Cell adhesion molecule 1 (CADM1), identified as an adhesion molecule in α cells, has been reported not only to communicate among α cells and between nerve fibers, but also to prevent excessive glucagon secretion from α cells. Here, we investigated the effect of CADM1 expression on the movement of intracellular secretory granules in α cells because the granule transport is an important step in secretion. Spinning disk microscopic analysis showed that granules moved at a mean velocity of 0.236 ± 0.010 μm/s in the mouse α cell line αTC6 that expressed CADM1 endogenously. The mean velocity was significantly decreased in CADM1-knockdown (KD) cells (mean velocity: 0.190 ± 0.016 μm/s). The velocity of granule movement decreased greatly in αTC6 cells treated with the microtubule-depolymerizing reagent nocodazole, but not in αTC6 cells treated with the actin-depolymerizing reagent cytochalasin D. No difference in the mean velocity was observed between αTC6 and CADM1-KD cells treated with nocodazole. These results suggest that intracellular granules in pancreatic α cells move along the microtubule network, and that CADM1 influences their velocity.
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页码:391 / 398
页数:7
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