The role of ATP synthase is and it is located in O split glucose; cytosol of cells O shuttle pyruvates into mitochondria; cytosol of cells O pass electrons to proteins along the inner mitochondrial membrane;mitochondria O attach ADP and Pi (ie, make ATP); mitochondria
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- The proton motive force is the result ofa. ATP synthase transporting protons during ATP synthesisb. an electron gradient between the matrix and the intermembranespace of a mitochondrionc. a proton gradient between the matrix and intermembrane space ofa mitochondriond. a buildup of negatively charged ionsIntermembrane Space 3 ADP 8 Mitochondrial Matrix FADH FAD 3ATR NAO NACH deydrogenese compiex Cytochrome b-c ATP Oytochrome cxidase complex comples PAOt AH Copyright 2001 Benjamin Cummings, an imprini of Addison Wesley Longman, Inc he source of the high concentration of H+ in the inter-membrane space is /are the D ATP synthase. water molecules molecules of NADH and FADH2 oxygen (O2) DusWhich of the following statements about oxidative phosphorylation is correct? O H+ ions are transferred from Complex I or Complex II to ATP synthase where ATP production occ O Proton pumps transfer electrons from the cytosol to the mitochondrial matrix as electrons are tra O The chemical and electrical gradient is established between the intermembrane space and the ma electron carriers. O ATP synthase pumps electrons back to the intermembrane space as a consequence of electrocher mitochondrial matrix. • Previous
- NADH and FADH2 pass electrons to a set of respiratory proteins known as Cytochromes Pyruvate dehydrogenases Lactate dehydrogenases Electronic enzymes Kreb's cycle enzymesthe uneven distribution of protons across the inner mitochondrial membrane often called ? the proton gradient force the electron transport forcethe delta force the chemiosmotic force. the proton motive forcewithout oxygen US V 11 glucose G 2 13 14 pyruvate with oxygen acetyl Col CO₂ CO₂ Using the diagram above, fill in the chart below for a summary of cellular respiration taking place in the mitochondria. X₂ X² но B I 2 4 electron transport system C > X Q 흐트 E Summary of Cellular Respiration Name of Location Brief Is ATP process of process Description produced? I E D
- [Cellular Respiration] Which feature depicted in the figure is due to the function of the electron carriers FADH2 and NADH? 10 m Adjacert proton enits Hllchanned - e ring roas ATP ADPP Arg-20 is dieplaced Matrie Process repeats Rotation ofeing termenbrane spee Proton beurd to reptive charge on Ap41 leptemi Hl channel Protoe hatchamel Statie Proton enters Roates Lodish et al. (2016), Molecular Biology of the Cell, 8th Edition High Oxygen content in the Cystosolic matrix O High ATP content in the exoplasmic intermembrane space O High ADP content in the Cytosolic matrix O High Hydrogen Content in the exoplasmic intermembrane spaceGlycolysis takes place in the plasma membrane O ribosomes mitochondrion chloroplast O cytosolProtons in a mitochondria move through ATP synthase from the: lumen to the stroma. O intermembrane space to the matrix. O matrix to the intermembrane space. o cytoplasm to the intermembrane space. stroma to the lumen. O intermembrane space to the cytoplasm.
- Electrons carried via NADH Electrons carried via NADH and FADH ELECTRON TRANSPORT CHAIN AND OXIDATIVE PHOSPHORYLATION GLYCOLYSIS Glucose Pyruvate KREBS CYCLE Cytosol Mitochondrion ATF ynthase ATP ATP ATP Substrate-level phosphorylation Substrate-level phosphorylation Oxidative phosphorylation Copyng C Pearson Eaucaton e p ng RL Elergamen Cummmgs Figure 5. The Process of Cellular Respiration Explain the major events of the celluar respiration based on the given diagram.Cellular Respiration 2 ATP 6 NADH 2 FADH 2 ATP 2 NADH |36 АТР GLUCOSE ACETYL-COA LACTIC ACID ETHANOL GLYCOLYSIS PYRUVATE FERMENTATION OXYGEN KREB'S CYCLE MITOCHONDRIAL MATRIX MITOCHONDRIAL CHRISTAE biologycorner.com CYTOPLASM begins with CARBON DIOXIDE ELECTRON TRANSPORT CHAIN which is broken down during II which occurs in the coenzymes 2H •0, H0 AfP (ene produces a net gain of results in 2 molecules of produces occurs in the -that is used in- can be used in- requires- releases - which is oxcidized, creating aerobic respiration anaerobic coenzymes processes such as starting with coenzymes moves to the used the which is shuffled into the which produces -which occurs in the 3The energy source used to drive Electron Transport Chain (ETC) function is The function of the ETC is O glucose delivered by NAD or FADH2; pumping oxygen across a membrane O ATP; phosphorylation of ATP to ADP O high energy electrons fronm glucose (or other organic molecules); proton-pumping cross a membrane O ATP; pumping water across a membrane