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褪黑素控制胰腺星状细胞的细胞增殖并调节线粒体生理学。

Melatonin controls cell proliferation and modulates mitochondrial physiology in pancreatic stellate cells.

机构信息

Departamento de Fisiología, Instituto de Biomarcadores de Patologías Moleculares, Universidad de Extremadura, Avenida de Las Ciencias S/N, 10003, Cáceres, Spain.

Departamento de Gastroenterología, Hospital Universitario, Cáceres, Spain.

出版信息

J Physiol Biochem. 2023 Feb;79(1):235-249. doi: 10.1007/s13105-022-00930-4. Epub 2022 Nov 5.

Abstract

We have investigated the effects of melatonin on major pathways related with cellular proliferation and energetic metabolism in pancreatic stellate cells. In the presence of melatonin (1 mM, 100 µM, 10 µM, or 1 µM), decreases in the phosphorylation of c-Jun N-terminal kinase and of p44/42 and an increase in the phosphorylation of p38 were observed. Cell viability dropped in the presence of melatonin. A rise in the phosphorylation of AMP-activated protein kinase was detected in the presence of 1 mM and 100 µM melatonin. Treatment with 1 mM melatonin decreased the phosphorylation of protein kinase B, whereas 100 µM and 10 µM melatonin increased its phosphorylation. An increase in the generation of mitochondrial reactive oxygen species and a decrease of mitochondrial membrane potential were noted following melatonin treatment. Basal and maximal respiration, ATP production by oxidative phosphorylation, spare capacity, and proton leak dropped in the presence of melatonin. The expression of complex I of the mitochondrial respiratory chain was augmented in the presence of melatonin. Conversely, in the presence of 1 mM melatonin, decreases in the expression of mitofusins 1 and 2 were detected. The glycolysis and the glycolytic capacity were diminished in cells treated with 1 mM or 100 µM melatonin. Increases in the expression of phosphofructokinase-1 and lactate dehydrogenase were noted in cells incubated with 100 µM, 10 µM, or 1 µM melatonin. The expression of glucose transporter 1 was increased in cells incubated with 10 µM or 1 µM melatonin. Conversely, 1 mM melatonin decreased the expression of all three proteins. Our results suggest that melatonin, at pharmacological concentrations, might modulate mitochondrial physiology and energy metabolism in addition to major pathways involved in pancreatic stellate cell proliferation.

摘要

我们研究了褪黑素对胰腺星状细胞中与细胞增殖和能量代谢相关的主要途径的影响。在褪黑素(1mM、100µM、10µM 或 1µM)存在的情况下,观察到 c-Jun N-末端激酶和 p44/42 的磷酸化减少,而 p38 的磷酸化增加。在褪黑素存在的情况下,细胞活力下降。在 1mM 和 100µM 褪黑素存在的情况下,检测到 AMP 激活的蛋白激酶的磷酸化增加。用 1mM 褪黑素处理降低了蛋白激酶 B 的磷酸化,而 100µM 和 10µM 褪黑素增加了其磷酸化。褪黑素处理后,线粒体活性氧的产生增加,线粒体膜电位降低。基础呼吸和最大呼吸、氧化磷酸化产生的 ATP、备用能力和质子漏在褪黑素存在的情况下下降。线粒体呼吸链复合物 I 的表达在褪黑素存在的情况下增加。相反,在 1mM 褪黑素存在的情况下,检测到线粒体融合蛋白 1 和 2 的表达减少。用 1mM 或 100µM 褪黑素处理的细胞中,糖酵解和糖酵解能力下降。在孵育有 100µM、10µM 或 1µM 褪黑素的细胞中,观察到磷酸果糖激酶-1 和乳酸脱氢酶的表达增加。在孵育有 10µM 或 1µM 褪黑素的细胞中,葡萄糖转运蛋白 1 的表达增加。相反,1mM 褪黑素降低了这三种蛋白的表达。我们的结果表明,褪黑素在药理学浓度下可能会调节线粒体生理学和能量代谢,以及胰腺星状细胞增殖所涉及的主要途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77d4/9905253/00c221998b58/13105_2022_930_Fig1_HTML.jpg

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