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Biochemistry 6/e
Biochemistry 6/e

... Hydroxybutyrate Hydroxybutyrate is converted back to acetoacetate to get acetylCoA and acetone is lost. ...
3 page summary can be downloaded here
3 page summary can be downloaded here

...  Made from carbon, hydrogen, oxygen, nitrogen and sulphur.  Your body requries 22 essential amino acids, but can only produce 8! o We must rely on digestion to gain the other amino acids we need. o 22 different amino acid groups give rise to an infinite amount of proteins.  Make up the cells in t ...
Extra Credit to replace the Survival of the Fittest Lab
Extra Credit to replace the Survival of the Fittest Lab

... 25. __________ bonds form when water is removed to hold _________ acids together. Lipids are large, nonpolar (won't dissolve in water) molecules. Phospholipids make up cell membranes. Lipids also serve as waxy coverings (cuticle) on plants, pigments (chlorophyll), and steroids. Lipids have more carb ...
File - Mr. Shanks` Class
File - Mr. Shanks` Class

... carbons into a series of acetyl-CoA The oxidation of fatty acids into acetyl-CoA molecules requires the breaking of bonds, always one less bond that the number of acetyl-CoA. To break bonds, we must add water and ATP. When these fatty acid bonds are broken, 1 FADH2 and 1 [NADH + H+] are produced. ...
Lecture 35 - Lipid Metabolism 1
Lecture 35 - Lipid Metabolism 1

... to acetoacetyl-CoA and ketone bodies, including acetone. Ketogenesis (synthesis of ketone bodies) takes place primarily in the liver. ...
Amino acids - Workforce3One
Amino acids - Workforce3One

... - may involve complete unfolding - Renaturation is refolding into natural shape ...
BCH 3033 General Biochemistry EXAM 5 Name: Fall, 2012
BCH 3033 General Biochemistry EXAM 5 Name: Fall, 2012

... 9.Which of the following is not true of the reaction catalyzed by the pyruvate dehydrogenase complex? a. Biotin participates in the decarboxylation. b. Both NAD+ and a flavin nucleotide act as electron carriers. c The reaction occurs in the mitochondrial matrix. d.The substrate is held by the lipoyl ...
CH 2 - Faperta UGM
CH 2 - Faperta UGM

... insoluble in water but soluble in fats solvent and alcohol  Structurally diverse range of compounds which have 2 features in common: (1). Their presence in living organism and (2). Their general solubility in organic solvent and insolubility in water  It is characterized by the presence of fatty a ...
any molecule that is present in living organisms. Carbohydrates
any molecule that is present in living organisms. Carbohydrates

... Bonded by: Peptide Bonds Used for long term energy storage ...
Biomolecules - Pearland ISD
Biomolecules - Pearland ISD

... Bonded by: Peptide Bonds Used for long term energy storage ...
Syllabus Notes - Southwest High School
Syllabus Notes - Southwest High School

... Di: maltose, lactose, sucrose (table sugar) Poly: starch, cellulose, glycogen (animal storage in liver) ...
Name
Name

... Match the researcher and year to their discovery: A) Gorter and Grendel B)Davson and Danielli C)Singer and Nicolson D)Langmuir E)Overton 1) ____1890s: Lipid soluble molecules pass into cell, but water soluble molecules don’t: conclusion is that membrane is selectively permeable and a lipid 2) ____19 ...
Exam 1 Review KEY
Exam 1 Review KEY

... 29.) In the electron transport chain/oxidative phosphorylation, ___34____ ATP are produced. This is a result of ___10____ NADH molecule(s) producing ___3____ ATP and ___2___ FADH2 molecule(s) producing ___2___ ATP. 30.) Where do each of the following reactions take place? a. Glycolysis: cytoplasm b ...
Spotlight on Metabolism Ans
Spotlight on Metabolism Ans

... Although each energy-yielding nutrient initially follows a different metabolic pathway, they all follow the Krebs cycle or citric acid cycle, and the electron transport chain. During glycolysis one molecule of glucose yields two NADH, a net of two ATP and two pyruvate. In the next step of carbohydra ...
Section 2.3 Carbon Compounds
Section 2.3 Carbon Compounds

... 2. Each electron can join with an electron from another atom to form a strong covalent bond 3. Carbon can bond with many elements such as ...
Biochemistry
Biochemistry

... Carbon can covalently bond with up to four other atoms because of its 4 valence electrons ...
Biochemistry PPT - Effingham County Schools
Biochemistry PPT - Effingham County Schools

... How do you build a cell? Start with water, add lots of small carboncontaining molecules and ……. ...
video slide - Blue Valley Schools
video slide - Blue Valley Schools

Connections of Carbohydrate, Protein, and Lipid
Connections of Carbohydrate, Protein, and Lipid

... presence of glycogen as a source of glucose allows ATP to be produced for a longer period of time during exercise. Glycogen is broken down into G-1-P and converted into G-6-P in both muscle and liver cells, and this product enters the glycolytic pathway. Sucrose is a disaccharide with a molecule of ...
peptides - WordPress.com
peptides - WordPress.com

... and, mainly via the respiratory chain, ATP. (3) Amphibolic pathways, which occur at the "crossroads" of metabolism, acting as links between the anabolic and catabolic pathways, eg, the citric acid cycle. ...
Sample exam 1
Sample exam 1

... 6. The pyrrole rings of heme each contain nitrogen atoms. What molecule provides that nitrogen during the synthesis of heme in liver cells? a. Carbamoyl phosphate. b. Cobalamin. c. Glycine. d. Succinyl CoA. e. Valine. 7. Which of the following statements is true? a. Glucose can cross the lipid bila ...
Chapter 2 – Chemical Composition of the Body
Chapter 2 – Chemical Composition of the Body

... • Hydrolysis of triglycerides in adipose tissue releases free fatty acids. – Free fatty acids can be converted in the liver to ketone bodies. – Excess ketone bodies can lower blood pH.. ...
Biomolecule SG_answers
Biomolecule SG_answers

Fats/Vitamins/Minerals
Fats/Vitamins/Minerals

... Fats into solid fats. ...
Fats/Vitamins/Minerals
Fats/Vitamins/Minerals

... Fats into solid fats. ...
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Fatty acid metabolism

Fatty acids are a family of molecules classified within the lipid macronutrient class. One role of fatty acids within animal metabolism is energy production in the form of adenosine triphosphate (ATP) synthesis. When compared to other macronutrient classes (carbohydrates and protein), fatty acids yield the most ATP on an energy per gram basis by a pathway called β-oxidation. In addition, fatty acids are important for energy storage, phospholipid membrane formation, and signaling pathways. Fatty acid metabolism consists of catabolic processes that generate energy and primary metabolites from fatty acids, and anabolic processes that create biologically important molecules from fatty acids and other dietary sources.
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