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A Novel Function of Noc2 in Agonist-Induced Intracellular Ca2+ Increase during Zymogen-Granule Exocytosis in Pancreatic Acinar Cells

机译:Noc2在激动剂诱导的胰腺腺泡细胞Zymogen颗粒胞吐过程中的细胞内Ca 2+增加的新功能。

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摘要

Noc2, a putative Rab effector, contributes to secretory-granule exocytosis in neuroendocrine and exocrine cells. Here, using two-photon excitation live-cell imaging, we investigated its role in Ca2+-dependent zymogen granule (ZG) exocytosis in pancreatic acinar cells from wild-type (WT) and Noc2-knockout (KO) mice. Imaging of a KO acinar cell revealed an expanded granular area, indicating ZG accumulation. In our spatiotemporal analysis of the ZG exocytosis induced by agonist (cholecystokinin or acetylcholine) stimulation, the location and rate of progress of ZG exocytosis did not differ significantly between the two strains. ZG exocytosis from KO acinar cells was seldom observed at physiological concentrations of agonists, but was normal (vs. WT) at high concentrations. Flash photolysis of a caged calcium compound confirmed the integrity of the fusion step of ZG exocytosis in KO acinar cells. The decreased ZG exocytosis present at physiological concentrations of agonists raised the possibility of impaired elicitation of calcium spikes. When calcium spikes were evoked in KO acinar cells by a high agonist concentration: (a) they always started at the apical portion and traveled to the basal portion, and (b) calcium oscillations over the 10 µM level were observed, as in WT acinar cells. At physiological concentrations of agonists, however, sufficient calcium spikes were not observed, suggesting an impaired [Ca2+]i-increase mechanism in KO acinar cells. We propose that in pancreatic acinar cells, Noc2 is not indispensable for the membrane fusion of ZG per se, but instead performs a novel function favoring agonist-induced physiological [Ca2+]i increases.
机译:Noc2,一种假定的Rab效应子,有助于神经内分泌和外分泌细胞的分泌性颗粒胞吐作用。在这里,使用双光子激发活细胞成像,我们调查了其在来自野生型(WT)和Noc2基因敲除(KO)小鼠的胰腺腺泡细胞中Ca2 +依赖的酶原颗粒(ZG)胞吐作用中的作用。 KO腺泡细胞的成像显示扩大的颗粒区域,表明ZG积累。在我们对激动剂(胆囊收缩素或乙酰胆碱)刺激引起的ZG胞吐作用的时空分析中,两种菌株之间ZG胞吐作用的位置和进展速度没有显着差异。在生理浓度的激动剂下,很少观察到来自KO腺泡细胞的ZG胞吐作用,但在高浓度下是正常的(相对于WT)。笼状钙化合物的快速光解证实了KO腺泡细胞中ZG胞吐作用融合步骤的完整性。在激动剂的生理浓度下存在的ZG胞吐作用降低,增加了钙尖峰的诱发受损的可能性。当高激动剂浓度在KO腺泡细胞中引起钙尖峰时:(a)它们总是始于顶端部分并行至基底部分,并且(b)与WT腺泡一样,钙的振荡超过10 µM。细胞。但是,在激动剂的生理浓度下,未观察到足够的钙尖峰,表明KO腺泡细胞中[Ca2 +] i的增加机制受损。我们提出在胰腺腺泡细胞中,Noc2并不是ZG本身的膜融合必不可少的,而是执行了激动剂诱导的生理[Ca2 +] i增加的新功能。

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