Hypoxia and hypercapnia elicit overlapping but distinct skeletal muscle toxicities
Abstract figure legend Hypoxia and hypercapnia cause overlapping skeletal muscle phenotypes, including atrophy, change in myofibre metabolic profile and myogenic response to injury. Both signals operate via distinct cellular pathways. Abstract Skeletal muscle dysfunction is strongly associated with elevated mortality in acute and chronic pulmonary ...
Joseph Balnis, Ariel Jaitovich
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Oxygen‑sensing histone demethylase KDM6A modulates chondrocyte‑to‑osteoblast transdifferentiation by activating the Wnt/β‑catenin pathway. [PDF]
Rong Y +10 more
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An investigation of the tandem Tudor domain (TTD) domain of UHRF1 identified and extensively characterized the local anesthetic hydroxyprocaine as a strong ligand capable of activating related genes such as p53 and also highlighted a new, potentially druggable intramolecular interaction between TTD and UBL.
Efstratios Tsakalidis +16 more
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ALKBH1L Is an m<sup>6</sup>A Demethylase and Mediates PVY Infection in <i>Nicotiana benthamiana</i> Through m<sup>6</sup>A Modification. [PDF]
Zhou J +10 more
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Taurine and Metabolic Diseases: Molecular Mechanisms and Therapeutic Implications
The dietary sources of taurine, as well as its protective effects and mechanisms in metabolism‐related diseases and metabolic disorder–associated ocular and cerebral injuries. ABSTRACT Taurine (Tau) is a sulfur‐containing amino acid prevalent in animal tissues and primarily acquired through dietary sources.
Xiaojie Ma, Zhijian Rao, Lifang Zheng
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Overexpression of RNA m<sup>6</sup>A demethylase FTO enhances the yield of natural rubber in lettuce. [PDF]
Hu B +12 more
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Bone marrow mesenchymal stem cells (BMSCs) promote tendon injury repair by enhancing tenocyte function and regulating the FTO/m6A/ELOB axis. Mechanistically, BMSCs lead to the upregulation of FTO and m6A modification, which subsequently suppresses ELOB expression.
Zhao‐Rong Dai +2 more
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Histone lysine demethylases in breast cancer: molecular mechanisms, biological functions, and therapeutic intervention. [PDF]
Wang A +11 more
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Alcohol metabolism induces structural instability of iron‐sulfur clusters through ROS‐mediated oxidative damage and direct covalent modification of acetaldehyde. The iron‐sulfur cluster deficiency drives metabolic reprogramming by inactivating aconitase, accumulating succinate, and impairing tRNA thiolation, thereby promoting hepatic steatosis ...
Li Xu +6 more
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RNA Modifications in Tumor Microenvironment: A New Dimension for Cancer Treatment. [PDF]
Li Q, Sun Y, Lin S, Yuan Q.
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