Department of Histology, Medical University of Gdansk, 1a Dębinki, 80-211 Gdansk, Poland.
Department of Biochemistry, Medical University of Gdansk, 80-211 Gdansk, Poland.
Nutrients. 2023 Oct 25;15(21):4529. doi: 10.3390/nu15214529.
PDIA3 is an endoplasmic reticulum disulfide isomerase, which is involved in the folding and trafficking of newly synthesized proteins. PDIA3 was also described as an alternative receptor for the active form of vitamin D (1,25(OH)D). Here, we investigated an impact of PDIA3 in mitochondrial morphology and bioenergetics in squamous cell carcinoma line A431 treated with 1,25(OH)D. It was observed that PDIA3 deletion resulted in changes in the morphology of mitochondria including a decrease in the percentage of mitochondrial section area, maximal diameter, and perimeter. The 1,25(OH)D treatment of A431∆ cells partially reversed the effect of deletion increasing aforementioned parameters; meanwhile, in A431WT cells, only an increase in mitochondrial section area was observed. Moreover, knockout affected mitochondrial bioenergetics and modulated STAT3 signaling. Oxygen consumption rate (OCR) was significantly increased, with no visible effect of 1,25(OH)D treatment in A431∆ cells. In the case of Extracellular Acidification Rate (ECAR), an increase was observed for glycolysis and glycolytic capacity parameters in the case of non-treated A431WT cells versus A431∆ cells. The 1,25(OH)D treatment had no significant effect on glycolytic parameters. Taken together, the presented results suggest that PDIA3 is strongly involved in the regulation of mitochondrial bioenergetics in cancerous cells and modulation of its response to 1,25(OH)D possibly through STAT3.
PDIA3 是内质网二硫异构酶,参与新合成蛋白质的折叠和运输。PDIA3 也被描述为维生素 D(1,25(OH)D)活性形式的替代受体。在这里,我们研究了 PDIA3 在接受 1,25(OH)D 处理的鳞状细胞癌细胞系 A431 中线粒体形态和生物能量学中的作用。结果观察到,PDIA3 缺失导致线粒体形态发生变化,包括线粒体截面积、最大直径和周长的百分比降低。1,25(OH)D 处理 A431∆细胞部分逆转了缺失的影响,增加了上述参数;同时,在 A431WT 细胞中,仅观察到线粒体截面积的增加。此外,敲除影响线粒体生物能量学并调节 STAT3 信号。A431∆细胞的耗氧量(OCR)显著增加,而 1,25(OH)D 处理没有明显影响。就细胞外酸化率(ECAR)而言,与 A431∆细胞相比,未经处理的 A431WT 细胞的糖酵解和糖酵解能力参数增加。1,25(OH)D 处理对糖酵解参数没有显著影响。综上所述,研究结果表明,PDIA3 强烈参与癌细胞中线粒体生物能量学的调节,并可能通过 STAT3 调节其对 1,25(OH)D 的反应。