MCB-4403 Lecture Notes - Lecture 7: Nicotinamide Adenine Dinucleotide Phosphate, Oxidative Phosphorylation, Protein Catabolism

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21 Jan 2017
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Lecture 14-15: metabolism (cid:862)photo-(cid:863) = light e(cid:374)ergy sour(cid:272)e (cid:862)che(cid:373)o-(cid:863) = che(cid:373)i(cid:272)al e(cid:374)ergy sour(cid:272)e (cid:862)-autotroph(cid:863) = gets (cid:272)ar(cid:271)o(cid:374) fro(cid:373) co2 (cid:862)-heterotroph(cid:863) = gets (cid:272)ar(cid:271)o(cid:374) fro(cid:373) orga(cid:374)i(cid:272) (cid:272)o(cid:373)pou(cid:374)ds. Metabolism: the sum of the chemical reactions in an organism. Using energy to build complex cell components from simpler ones. Anabolic reactions build new molecules and/or store energy. The energy for such chemical reactions is stored in atp. Include the breaking down of complex molecules for energy. Adp + energy + phosphate atp: substrate level phosphorylation, oxidative phosphorylation, photophosphorylation. Redox reaction: an oxidation reaction paired with a reduction reaction. In biological systems, electrons are associated with hydrogen atoms. Nadh is the reduced form of nad+: it gains two electrons and one proton. Atp is generated by the phosphorylation of adp. There are 3 methods of phosphorylation: substrate level, oxidative, photophosphorylation. This type of phosphorylation & atp generation is seen in the electron transport chain. A high-energy po4- transfers energy to adp to generate atp.

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