Atp production in bacteria
[DOC File]TB CHAP 08
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c. ATP will be required to convert pyruvate to either lactate or ethanol and CO2. d. oxidative phosphorylation occurs either on the plasma membrane or on derivatives of the plasma membrane. e. none of these 69. The bacteria that cause botulism and tetanus cannot live in the presence of. a. carbon dioxide. b. oxygen. c. glucose. alcohol. ATP. 70.
[DOC File]AP Biology - Collea's Corner
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In cellular respiration, this same ATP building process is called oxidative phosphorylation because the energy driving this process comes from the oxidation of glucose. Figure 9.15 is a key to understanding the production of most of the ATP in the mitochondria.
[DOC File]2.2.5 Respiration Worksheet - Intermediate School …
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When ATP breaks down it _____ for all the reactions in a cell such as movement of muscles, growth of new cells, etc. Equation for Aerobic Respiration ... Lactic acid forms when bacteria cause _____ to go _____ ... In the production of alcohol yeast cells are immobilised with _____ Advantages of …
[DOC File]A chemist has discovered a drug that blocks ...
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bacteria are prokaryotes; they usually don't need to perform glycolysis. glycolysis produces so little ATP that the drug will have little effect. human cells must also perform glycolysis; the drug might also poison them. this step in the pathway of glycolysis can be skipped in bacteria, but not in humans. glycolysis can occur without the action ...
[DOC File]Mader/Biology, 10/e – Chapter Outlines
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D. ATP Production. 1. ATP synthesis is coupled to the electron transport system. 2. Peter Mitchell received the 1978 Nobel Prize for his chemiosmotic theory of ATP production. 3. In both mitochondria and chloroplasts, carriers of electron transport systems are located within a membrane. 4. H+ ions (protons) collect on one side of the membrane ...
[DOC File]AP Biology Lab 5 - Jackson School District
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ATP provides the energy used for synthetic reactions, active transport, and all cell processes. Nearly all organisms’ cells respire and in eukaryotes, this occurs in the mitochondria. However, in bacteria and other prokaryotes, which do not have mitochondria, the conversion of NADH and pyruvate to ATP occurs in the cell membrane.
[DOC File]Chapter 5: Microbial Metabolism
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(ATP Production and Energy Storage-Phosphorylation--Cells phosphorylate ADP to ATP in three ways. 1) 2) 3)-Anabolic pathways use some energy of ATP by breaking a phosphate bond *Please review the Enzymes section if you feel “rusty” on enzyme function* Carbohydrate Catabolism (Glycolysis- …
[DOC File]008 Chapter 8
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43. Active cells must continually produce ATP. True False. 44. The most efficient pathway for ATP production in animal cells is by glycolysis. True False. 45. Metabolism of fats produces more ATP molecules per gram than metabolism of carbohydrates or proteins. True False. 46. The final electron acceptor in glycolysis is oxygen. True False. 47.
[DOCX File]Introduction - Central New Mexico Community …
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is a chemical (ethylhydrocupreine hydrochloride) that interferes with ATP production in . Streptococcus pneumonia. This helps distinguish . S. pneumonia. from other α-hemolytic streptococci. It entered medical use around 1914. Identification of Bacteria
[DOC File]CHAPTER 9 CELLULAR RESPIRATION: HARVESTING …
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ATP synthase is a multisubunit complex with four main parts, each made up of multiple polypeptides. Protons move one by one into binding sites on one of the parts (the rotor), causing it to spin in a way that catalyzes ATP production from ADP and inorganic phosphate. ATP synthase is the smallest molecular rotary motor known in nature.
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