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Mitochondria are organelles surrounded by membranes, distributed in the cytosol of most eukaryotic cells. Its main function is the conversion of potential energy of pyruvate molecules into ATP. Português: o diagrama mostra uma secção de uma mitocôndria de célula eucariótica.
This image was moved from Image:Diagram of a human mitochondrion.svg == {{int:filedesc}} == {{Information |Description= {{es |o diagrama mostra uma secção de uma mitocôndria de célula eucariótica. Mitocôndrias são organelas envolvidas por mem
Mitochondria are commonly between 0.75 and 3 μm 2 in cross section, [11] but vary considerably in size and structure. Unless specifically stained , they are not visible. In addition to supplying cellular energy, mitochondria are involved in other tasks, such as signaling , cellular differentiation , and cell death , as well as maintaining ...
Simplified cross-section of a mitochondrion and a submitochondrial particle, showing the particle's inverted membrane orientation. Whereas whole submitochondrial particles can perform oxidative phosphorylation yielding ATP, destabilized particles lacking F 1 particles consume oxygen and oxidize NADH without synthesizing ATP, and free F 1 particles catalyze the hydrolysis of ATP into ADP.
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The amount of mitochondria per cell also varies by cell type, with some examples being: Erythrocytes: 0 mitochondria per cell. [1] Lymphocytes: 3 mitochondria per cell. [7] Egg cell: Mature metaphase II egg cells can contain 100,000 mitochondria, and 50,000–1,500,000 copies of the mitochondrial genome (corresponding to up to 90% of the egg ...
A diagram showing mtDNA (circular) and mitochondrial ribosomes among other mitochondria structures. The mitochondrial ribosome, or mitoribosome, is a protein complex that is active in mitochondria and functions as a riboprotein for translating mitochondrial mRNAs encoded in mtDNA. The mitoribosome is attached to the inner mitochondrial membrane ...
The mitochondrial shuttles are biochemical transport systems used to transport reducing agents across the inner mitochondrial membrane. NADH as well as NAD+ cannot cross the membrane, but it can reduce another molecule like FAD and [QH 2] that can cross the membrane, so that its electrons can reach the electron transport chain.