Results 241 to 250 of about 89,971 (313)

A Transcriptomic Analysis of Cancer‐Stromal Interactome in Lung Cancer Xenograft Models

open access: yesCancer Science, EarlyView.
We conducted a comprehensive analysis of the lung cancer interactome to identify key ligand–receptor pairs involved in the aggressiveness of lung adenocarcinoma. Tumor necrosis factor superfamily member 12 and its receptor tumor necrosis factor receptor superfamily member 12A signaling axis may be potential candidates for therapeutic intervention for ...
Yuriko Takayama‐Isagawa   +16 more
wiley   +1 more source

Processing of mitochondrial precursor proteins [PDF]

open access: yes, 1984
Neupert, Walter, Schmidt, Bernd
core  

Roles of TIF1β in Leukemic Stem Cell Through SETDB1‐Dependent and Independent Mechanisms

open access: yesCancer Science, EarlyView.
In leukemic stem cell, BCR::ABL cooperates with TIF1β to open chromatin at oncogenes and close chromatin at differentiation regulators, driving leukemic reprogramming. In TIF1β‐deficient stem cell, the loss of TIF1β inverts this balance, showing closed chromatin at oncogenes and open chromatin at differentiation regulators.
Mariko Morii, Sho Kubota, Goro Sashida
wiley   +1 more source

Gestational Melatonin Supplementation Attenuates Maternal Sleep Deprivation‐Induced Steatohepatitis Susceptibility in Offspring

open access: yesCell Proliferation, EarlyView.
Maternal SD during pregnancy enhances the development of diet‐induced NASH in adult offspring of both sexes through an NR4A3‐dependent mechanism, characterised by heightened inflammation and increased apoptosis. Maternal melatonin supplementation effectively alleviates this increased susceptibility to NASH in offspring.
Fei Guo   +6 more
wiley   +1 more source

Unveiling the Crucial Nexus: Mitochondrial Quality Control as a Central Driver in Metabolic Dysfunction‐Associated Steatotic Liver Disease Pathogenesis

open access: yesCell Proliferation, EarlyView.
Mitochondrial quality control (MQC) impairment plays a central role in driving the pathogenesis of metabolism‐associated steatotic liver disease (MASLD). Specifically, this is manifested as reduced mitophagy; increased mitochondrial fission and decreased fusion; and impaired mitochondrial biogenesis.
Wenkai Fu   +8 more
wiley   +1 more source

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