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Carbohydrates AP Biology CH2OH H O H OH H H OH HO H OH Carbohydrates Energy + structure molecules AP Biology Outline Structure Monosaccharides Hexose sugars Pentose sugars Disaccharides Polysaccharides AP Biology branching Carbohydrates Carbohydrates are composed of C, H, O carbo - hydr - ate CH2O (CH22O) O)xx C66H12 O (CH 12 66 sugar sugar sugar sugar sugar sugar sugar monosaccharide disaccharide AP Biology polysaccharide Sugars = FAST energy Most names for sugars end in -ose Classified by number of carbons 6C = hexose (glucose) 5C = pentose (ribose) 3C = triose (glyceraldehyde) CH2OH H O H OH 6H HO H AP Biology OH Glucose H CH2OH OH C O H HO H 5 OH O H HO H Ribose H H H C OH C 3OH H Glyceraldehyde Sugar structure 5C & 6C sugars form rings in solution Why a ring? To make it stable! AP Biology Carbons are numbered Numbered carbons These will become important in DNA! C 6' 5' C O 4' C C1' energy stored in C-C bonds harvested in cellular respiration C3' AP Biology C2' Functional Group Review hydroxyl WHY can glucose dissolve in water? AP Biology Simple vs. Complex Sugars SIMPLE Monosaccharides Disaccharides CH2OH H HO H OH O H H OH H OH AP Biology FAST ENERGY COMPLEX Polysaccharides ENERGY STORAGE & STRUCTURE MONOsaccharides How many sugars? Glucose, Miss Monosaccharide Hommie #1: Fructose AP Biology Hommie #2: Galactose PENTOSE SUGARS Isomers = Same chemical formula (C6H12O6) but different arrangements How many sugars? DIsaccharides Formed by dehydration synthesis Glycosidic linkage is formed 3 major disaccharides: AP Biology Maltose – used in beer brewing Dehydration synthesis monosaccharides | glucose AP Biology H2O | glucose disaccharide | maltose glycosidic linkage Sucrose – table sugar Dehydration synthesis monosaccharides | glucose AP Biology H2O | fructose disaccharide | sucrose (table sugar) Lactose – sugar found in milk Dehydration synthesis between glucose + galactose Lactose-intolerance AP Biology Instead of taking AWAY water, we should… Making and Breaking Biomolecules • dehydration synthesis (synthesis) = polymerization • hydrolysis (digestion) = depolymerization AP Biology POLYsaccharides Polymers of sugars How many sugars? costs little energy to build easily reversible = release energy Function: energy storage structure AP Biology Digestion = Energy Release Linear polysaccharide Which polysaccharide releases energy the fastest? Branched polysaccharide AP Biology Faster digestion! = Faster energy release! Polysaccharides – Energy Storage Starch Usually linear Slow energy release In plants! AP Biology Glycogen Usually branched Fast energy release In animals (liver, muscles) Polysaccahrides as Structural Molecules Cellulose Chitin Peptidoglycan AP Biology Let’s talk about digestion. We eat a lot of carbohydrates… cellulose starch AP Biology glucose Digesting starch vs. cellulose starch easy to digest enzyme cellulose hard to digest enzyme AP Biology only bacteria can digest Ways to Digest Cellulose How can herbivores digest cellulose so well? BACTERIA live in their digestive systems & help digest cellulose-rich (grass) meals Humans can’t digest cellulose… so we poop it out. I should have eaten my fiber! Regents Biology