Figure 2 from Oxidative phosphorylation in cancer cells Biology Diagrams

Figure 2 from Oxidative phosphorylation in cancer cells Biology Diagrams Mitosis is a key step in the cell cycle, and it governs the production of new daughter cells from old ones. During this process, mitotic kinases, such as CDK1, Aurora-A, Aurora-B, and PLK1, are The result indicated that alisertib treated cancer cells are more sensitive to the genetic perturbation of oxidative phosphorylation (OXPHOS). Mechanistic investigation indicated that alisertib treatment, as well as other mitotic kinase inhibitors, rapidly reduces the intracellular ATP level to generate a status that is highly addictive to

Figure 2 from Oxidative phosphorylation in cancer cells Biology Diagrams

Distinct roles have been demonstrated for mitochondrial fission and fusion in different cancer contexts. Targeting of factors mediating mitochondrial dynamics may be directly related to impairment of oxidative phosphorylation, which is essential to sustain cancer cell growth and can also alter sensitivity to chemotherapeutic compounds. The model is for oxidative phosphorylation in intact cells and tissues rather than preparations of isolated mitochondria. Mitochondria are extensively damaged during isolation and this damage, combined with the use of non‐physiological assay conditions, yields data that can be very misleading if interpreted out of context.

The oxidative phosphorylation system in the inner mitochondrial ... Biology Diagrams

Oxidative stress induces mitotic arrest by inhibiting Aurora A Biology Diagrams

Sustained cellular function and viability of high-energy demanding post-mitotic cells rely on the continuous supply of ATP. The utilization of mitochondrial oxidative phosphorylation for efficient Shin et al. report that ATP-linked mitochondrial respiration controls the Th17 and Treg cell fate decision by supporting TCR signaling and Th17-associated molecular events. Inhibition of mitochondrial OXPHOS ablates Th17 pathogenicity in a mouse model of MS and results in generation of functionally suppressive Treg cells under Th17 conditions.

Figure 1 from Structures of mitochondrial oxidative phosphorylation ... Biology Diagrams

Oxidative phosphorylation is a cellular process that harnesses the reduction of oxygen to generate high-energy phosphate bonds in the form of adenosine triphosphate (ATP). It is a series of oxidation-reduction reactions that involve the transfer electrons from NADH and FADH2 to oxygen across several protein, metal, and lipid complexes in the mitochondria known as the electron transport chain

Figure 3 from Oxidative phosphorylation in cancer cells. Biology Diagrams

Oxidative phosphorylation: regulation and role in cellular and tissue ... Biology Diagrams

Oxidative stress is known to induce cell cycle arrest, but the effects of ROS on the cell cycle, especially mitotic progression, are not fully understood. Cdc25C, a phosphatase that removes inhibitory phosphorylation from Cyclin B/Cdk1, is sensitive to oxidation. Abstract. Mitochondria play an essential role in oxidative phosphorylation, fatty acid oxidation, and the regulation of apoptosis. However, this organelle also produces reactive oxygen species (ROS) that continually inflict oxidative damage on mitochondrial DNA, proteins, and lipids, which causes further production of ROS.

Unraveling the Mysteries of Oxidative Phosphorylation: A Concise Overview Biology Diagrams