Tamari Farshad, Chen Fannie W, Li Chunlei, Chaudhari Jagrutiben, Ioannou Yiannis A
Department of Genetics and Genomic Sciences, the Mount Sinai School of Medicine, New York, New York, United States of America.
PLoS One. 2013 Aug 15;8(8):e74169. doi: 10.1371/journal.pone.0074169. eCollection 2013.
Activation of protein kinase C (PKC) has previously been shown to ameliorate the cholesterol transport defect in Niemann Pick Type C1 (NPC1) cells, presumably by increasing the soluble levels of one of its substrates, vimentin. This activity would then restore the vimentin cycle in these cells and allow vimentin-dependent retrograde transport to proceed. Here, we further investigate the effects of PKC activation in NPC1 cells by evaluating different isoforms for their ability to solubilize vimentin and correct the NPC1 cholesterol storage phenotype. We also examine the effects of PKC activators, including free fatty acids and the PKC-specific activator diazoxide, on the NPC1 disease phenotype. Our results indicate that PKC isoforms α, βII, and ε have the greatest effects on vimentin solubilization. Furthermore, expression or activation of PKCε in NPC1 cells dramatically reduces the amount of stored cholesterol and restores cholesterol transport out of endocytic vesicles. These results provide further support for the contribution of PKCs in NPC1 disease pathogenesis and suggest that PKCs may be targeted in future efforts to develop therapeutics for NPC1 disease.
先前的研究表明,蛋白激酶C(PKC)的激活可改善尼曼-皮克C1型(NPC1)细胞中的胆固醇转运缺陷,这可能是通过增加其一种底物波形蛋白的可溶性水平来实现的。这种活性随后将恢复这些细胞中的波形蛋白循环,并使依赖波形蛋白的逆行运输得以进行。在此,我们通过评估不同亚型溶解波形蛋白和纠正NPC1胆固醇储存表型的能力,进一步研究PKC激活对NPC1细胞的影响。我们还研究了PKC激活剂,包括游离脂肪酸和PKC特异性激活剂二氮嗪,对NPC1疾病表型的影响。我们的结果表明,PKC亚型α、βII和ε对波形蛋白溶解的影响最大。此外,NPC1细胞中PKCε的表达或激活显著减少了储存的胆固醇量,并恢复了胆固醇从内吞小泡的转运。这些结果为PKC在NPC1疾病发病机制中的作用提供了进一步支持,并表明PKC可能是未来开发NPC1疾病治疗方法的靶点。