Department of Chemistry and Biochemistry, California State University, Fullerton, California, USA.
Division of Experimental Therapeutics, Department of Medicine, Columbia University Medical Centre, New York, New York, USA.
Sci Rep. 2019 Apr 1;9(1):5403. doi: 10.1038/s41598-019-41891-x.
The islet β-cells integrate external signals to modulate insulin secretion to better regulate blood glucose levels during periods of changing metabolic demand. The vesicular monoamine transporter type 2 (VMAT2), an important regulator of CNS neurotransmission, has an analogous role in the endocrine pancreas as a key control point of insulin secretion, with additional roles in regulating β-cell differentiation and proliferation. Here we report on the synthesis and biological characterisation of a fluorescent ligand for VMAT2 suitable for live cell imaging. Staining for VMAT2 and dopamine in live β-cell cultures show colocalisation in specific vesicles and reveal a heterogeneous population with respect to cell size, shape, vesicle number, size, and contents. Staining for VMAT2 and zinc ion, as a surrogate for insulin, reveals a wide range of vesicle sizes. Immunohistochemistry shows larger β-cell vesicles enriched for proinsulin, whereas smaller vesicles predominantly contain the processed mature insulin. In β-cell cultures obtained from nondiabetic donors, incubation at non-stimulatory glucose concentrations promotes a shift in vesicle diameter towards the more mature insulin vesicles at the expense of the larger immature insulin secretory vesicle population. We anticipate that this probe will be a useful reagent to identify living β-cells within complex mixtures for further manipulation and characterisation.
胰岛β细胞整合外部信号来调节胰岛素分泌,以更好地在代谢需求变化的时期调节血糖水平。囊泡单胺转运体 2(VMAT2)是中枢神经系统神经递质传递的重要调节剂,在内分泌胰腺中具有类似的作用,是胰岛素分泌的关键控制点,此外还在调节β细胞分化和增殖方面发挥作用。在这里,我们报告了一种适用于活细胞成像的 VMAT2 荧光配体的合成和生物学特性。在活β细胞培养物中对 VMAT2 和多巴胺进行染色显示在特定囊泡中存在共定位,并显示出细胞大小、形状、囊泡数量、大小和内容物方面具有异质性的群体。对 VMAT2 和锌离子(作为胰岛素的替代物)进行染色显示出广泛的囊泡大小范围。免疫组织化学显示富含胰岛素原的较大β细胞囊泡,而较小的囊泡主要含有加工成熟的胰岛素。在从不糖尿病供体获得的β细胞培养物中,在非刺激葡萄糖浓度下孵育会导致囊泡直径向更成熟的胰岛素囊泡转移,而牺牲了更大的不成熟胰岛素分泌囊泡群体。我们预计,该探针将是一种有用的试剂,可用于在复杂混合物中鉴定活β细胞,以进行进一步的操作和表征。