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Page 1: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Macromolecules

Page 2: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

General Structure• Organic– Carbon based• Hydrocarbons

– Carbon and hydrogen only» Methane

• Inorganic– Non-carbon based

• Functional Groups– Group of atoms that interact with other molecules• Creates shape

– Determines function

Page 3: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

General Structure

• Monomers– Single large molecules composed of many smaller

atoms• Polymers– Long chains of monomers

Page 4: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Building and Breaking Polymers

• Construction– Dehydration reaction• Loses water molecule

• Break Down– Hydrolysis Reaction• Add water

Page 5: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Starter

• What are the differences between a dehydration and hydrolysis reaction?

• What are the properties that make water so important?

• What are the 4 major macromolecules?• What are the two parts to a chemical reaction?• Explain why water is polar.• What are orbitals and how many electrons are in the

first two that we talked about?• Complete the orbitals for H, O, C, N?

Page 6: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Macromolecules

• Carbohydrates• Lipids• Proteins • Nucleic Acids

Page 7: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Carbohydrates

• Main fuel supply for cellular work

Page 8: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Carbohydrate Structure

• Made of sugar molecules– Composed of the following Organic Molecules• Carbon• Hydrogen• Oxygen

Page 9: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Types of Carbohydrates

• Monosaccharides – simple sugars– 1 sugar unit– Ex: glucose

• Disaccharides – double sugar– 2 monosaccharides– Ex: Sucrose

• Polysaccharides – complex carbohydrate– Ex: starch

Page 10: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Glucose

Page 11: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Sucrose

Page 12: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Starch

Page 13: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Stored Sugar

• Organisms break sugars down– Use what they need– Store what they don’t• Glycogen

Page 14: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Lipids

• Energy Storage• Cell Membrane Structure– Fats

Page 15: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Lipid Structure

• 3 carbon backbone attached to three fatty acids– Saturated – all three fatty acids chains have

maximum number of Hydrogen atoms• Butter

– Unsaturated – contain less than the maximum number of hydrogen atoms in one or more of its fatty acid chains• fruits

Page 16: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups
Page 17: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups
Page 18: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Types of Lipids

• Steroids– Four fused rings

• Lipids because they are hydrophobic

– Estrogen– Testosterone– Cholesterol

• Necessary to surround cells

Page 19: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups
Page 20: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Proteins

• Responsible for almost all day-to-day functioning of organisms

• Hair• Muscle• Long-term nutrient storage

Page 21: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Protein Structure

• Made up of Amino Acids– Linked together in a chain called a polypeptide• Nitrogen• Carbon• Oxygen• Hydrogen

Page 22: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups
Page 23: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Types of Proteins

• All proteins are the same EXCEPT– The R-Group• Determines the proteins function

Page 24: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Enzymes

• Reactions require energy to proceed– Heat is a common energy source but body temp is too

low.• ENZYMES ARE NEEDED!!!!!

A protein that speeds up specific biochemical reactions Recognized by the –ase ending

– Lower the amount of energy required to start these reactions• Lower the activation energy

– Catalyst– Recycled

Page 25: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups
Page 26: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Continued• Very specific– Acts on certain chemicals called substrates• Sucrase Sucrose

– Breakdown to fructose and glucose

– Recognizes substrate by shape

Page 27: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Nucleic Acids

• Stores Genetic Information

• Double Helix• Sugar, Phosphate and

Nitrogenous Base– A, C, T, G, U

Page 28: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Nucleic Acids

• Made of Nucleotide chains– Store genetic information– Direct protein Synthesis• Making of Proteins

Page 29: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups

Types of Nucleic Acids

• Two very common types– Deoxyribonucleic Acid• DNA

– Ribonucleic Acid• RNA

Page 30: Macromolecules. General Structure Organic – Carbon based Hydrocarbons – Carbon and hydrogen only » Methane Inorganic – Non-carbon based Functional Groups