State Key Laboratory of Animal Nutrition, College of Animal Science and Technology, China Agricultural University, No. 2, Yuanmingyuan West Road, Haidian District, Beijing 100193, China.
West Central Research & Outreach Center, University of Minnesota, Morris, MN 56267, USA.
Int J Mol Sci. 2021 Oct 22;22(21):11427. doi: 10.3390/ijms222111427.
Functional amino acids provide great potential for treating autophagy-related diseases by regulating autophagy. The purpose of the autophagy process is to remove unwanted cellular contents and to recycle nutrients, which is controlled by many factors. Disordered autophagy has been reported to be associated with various diseases, such as cancer, neurodegeneration, aging, and obesity. Autophagy cannot be directly controlled and dynamic amino acid levels are sufficient to regulate autophagy. To date, arginine, leucine, glutamine, and methionine are widely reported functional amino acids that regulate autophagy. As a signal relay station, mammalian target of rapamycin complex 1 (mTORC1) turns various amino acid signals into autophagy signaling pathways for functional amino acids. Deficiency or supplementation of functional amino acids can immediately regulate autophagy and is associated with autophagy-related disease. This review summarizes the mechanisms currently involved in autophagy and amino acid sensing, diverse signal transduction among functional amino acids and autophagy, and the therapeutic appeal of amino acids to autophagy-related diseases. We aim to provide a comprehensive overview of the mechanisms of amino acid regulation of autophagy and the role of functional amino acids in clinical autophagy-related diseases and to further convert these mechanisms into feasible therapeutic applications.
功能性氨基酸通过调节自噬为治疗自噬相关疾病提供了巨大的潜力。自噬过程的目的是清除不需要的细胞内容物并回收营养物质,而这一过程受到许多因素的控制。据报道,异常的自噬与各种疾病有关,如癌症、神经退行性疾病、衰老和肥胖。自噬不能被直接控制,而动态的氨基酸水平足以调节自噬。迄今为止,精氨酸、亮氨酸、谷氨酰胺和蛋氨酸等被广泛报道的功能性氨基酸可以调节自噬。作为信号中继站,哺乳动物雷帕霉素靶蛋白复合物 1(mTORC1)将各种氨基酸信号转化为功能性氨基酸的自噬信号通路。功能性氨基酸的缺乏或补充可以立即调节自噬,并与自噬相关疾病有关。本综述总结了目前自噬和氨基酸感应涉及的机制、功能性氨基酸之间的多种信号转导以及氨基酸对自噬相关疾病的治疗吸引力。我们旨在全面概述氨基酸对自噬的调节机制以及功能性氨基酸在临床自噬相关疾病中的作用,并进一步将这些机制转化为可行的治疗应用。