生物
线粒体
线粒体融合
调节器
线粒体分裂
神经科学
细胞生物学
细胞适应
适应(眼睛)
生物能学
机制(生物学)
钙信号传导
计算生物学
过程(计算)
功能(生物学)
DNAJA3公司
生物信息学
信号转导
串扰
线粒体DNA
小RNA
粒线体疾病
再生(生物学)
平衡
后生
系统生物学
焊剂(冶金)
生物标志物
作者
Qingzhi Ran,Chen Gao,Chunrong Xiang,Xuanhui He,Yongkang Zhang,Yongkang Zhang,Yin Zhang,Yin Zhang,Hengwen Chen
标识
DOI:10.3389/fcell.2025.1646072
摘要
Mitochondrial fission process 1 (MTFP1) has emerged as a central regulator of mitochondrial dynamics, playing indispensable roles in maintaining organellar integrity, bioenergetic homeostasis, and stress adaptation - particularly in high-energy-demand tissues such as cardiac and skeletal muscle. Mounting evidence implicates MTFP1 dysfunction in the pathogenesis of diverse diseases including cardiovascular disorders, myopathies, and cancer. Beyond its canonical role in mediating mitochondrial fusion-fission balance, recent studies have unveiled MTFP1's multifaceted involvement in calcium signaling modulation, ROS metabolism, and mitochondria-ER communication networks, substantially expanding its functional repertoire in cellular physiology. The protein's pleiotropic effects stem from its ability to integrate metabolic status with organelle dynamics and quality control mechanisms. Particularly noteworthy is MTFP1's cell-type-specific regulation of the ROS-calcium axis, which appears critical for its differential impacts in disease states. These discoveries position MTFP1 as both a mechanistic linchpin connecting mitochondrial dynamics to cellular homeostasis and a promising but challenging therapeutic target requiring precise contextual modulation. Current research frontiers focus on elucidating tissue-specific regulatory mechanisms of MTFP1 activity, developing microenvironment-sensitive targeting strategies, and exploring its potential as a biomarker for mitochondrial dysfunction-related pathologies. This evolving understanding of MTFP1's integrative functions opens new avenues for developing precision therapies targeting mitochondrial dynamics in energy-metabolism-linked diseases.
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