Advances in the treatment of age-related hearing loss: from molecular mechanisms to targeted interventions. [PDF]
Mao L +7 more
europepmc +1 more source
Low Shear Stress Promotes Atherosclerosis by Mediating Pathological Accumulation of Endothelial Lipid Droplets via the KLF4/TFEB/ATP1A1 Axis. [PDF]
Shi Y +7 more
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Restoration of impaired lysosomal function mitigates drusen-like deposit formation and cell death in Malattia Leventinese. [PDF]
Inoue Y +7 more
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Syntaxin 12 Sustains Endosomal-Lysosomal Homeostasis and Survival in Glioblastoma Stem-Like Cells. [PDF]
Maghe C +7 more
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Circadian regulation of osteoclast lysosomal-resorption machinery: implications for osteoporosis therapy. [PDF]
Zhou C +10 more
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VPS13B maintains lysosomal homeostasis through regulation of TFEB. [PDF]
Lee SK, Park S, Yeom MY, Lee JA.
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The transcription factor EB (TFEB) plays a critical role in autophagy induction and lysosomal biogenesis by orchestrating the expression of autophagy- and lysosome-related genes. In response to a series of stresses such as nutrient starvation, TFEB translocates from the cytoplasm to the nucleus, where it exerts its regulatory function.
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TFEB – at the crossroads of host–pathogen interactions
Journal of Cell Science, 2021ABSTRACT The existence of constantly evolving dynamic interactions between the host and the pathogen determines their fate in this continuous arms race. Hence, identifying the molecular basis of processes that reinforce host defensive strategies to eliminate intracellular pathogens is of utmost significance.
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The Autophagy–Lysosomal Pathway in Neurodegeneration: A TFEB Perspective [PDF]
The autophagy-lysosomal pathway (ALP) is involved in the degradation of long-lived proteins. Deficits in the ALP result in protein aggregation, the generation of toxic protein species, and accumulation of dysfunctional organelles, which are hallmarks of Alzheimer's disease (AD), Parkinson's disease (PD), Huntington's disease (HD), and prion disease ...
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TRPML1 and TFEB, an Intimate Affair
2022Ca2+ is a universal second messenger that plays a wide variety of fundamental roles in cellular physiology. Thus, to warrant selective responses and to allow rapid mobilization upon specific stimuli, Ca2+ is accumulated in organelles to keep it at very low levels in the cytoplasm during resting conditions.
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