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Summary - Unit 1 - Biological molecules

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Detailed, concise information summarising the entirety of Topic 1 of AQA A-Level Biology - Biological Molecules. All sub-topics included with clear, easy to follow notes. Monomers and polymers, carbohydrates, DNA, RNA, proteins, lipids, ATP, inorganic ions, water, enzymes.

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Topic 1: Biological Molecules

BIOLOGICAL MOLECULES

MONOMERS AND POLYMERS:

●​ monomers - small, basic molecular units that can form a polymer
●​ polymers - large, complex molecules made from long monomer chains joined
together
●​ condensation reactions - forms a chemical bond between two monomers, releasing a
molecule of water
●​ hydrolysis - breaks the chemical bond between two monomers, using a water
molecule



CARBOHYDRATES:

monosaccharides - a single sugar molecule

●​ condensation reactions between monosaccharides form a 1-4 glycosidic bond
●​ soluble in water because they have many hydroxyl groups which can form hydrogen
bonds with water molecules

glucose

●​ hexose sugar
●​ has two isomers, alpha and beta glucose: in alpha glucose, the hydroxyl group of
carbon 1 points below the plane of the ring; whilst in beta glucose, the hydroxyl group
of carbon 1 points above the plane of the ring

disaccharides - formed by the condensation of two monosaccharides

key reactions:



glucose + glucose = maltose



glucose + fructose = sucrose



glucose + galactose = lactose



testing for reducing sugars:

, reducing sugars can donate electrons to another molecule

●​ place 3cm^3 of food solution into a boiling tube, add 3cm^3 of Benedict’s reagent
●​ place the boiling tube into a beaker of gently boiling water, leave for 5 minutes
●​ reducing sugars are present if the mixture turns green, yellow, orange or brick-red
●​ none are present if the mixture remains blue

testing for non-reducing sugars:

●​ carry out Benedict’s reaction with the sample to check that it is not a reducing sugar
●​ add 2cm^3 of a fresh sample, along with 2cm^3 of hydrochloric acid into a boiling
tube
●​ place the test tube in gently boiling water for 5 minutes (HCl will hydrolyse
disaccharides into their monosaccharides)
●​ add 2cm^3 of sodium hydrogencarbonate to neutralise the acid
●​ add Benedict’s reagent and heat in gently boiling water for 5 minutes, watch for a
orange-red precipitate which indicates a positive test

polysaccharides - 3 or more monosaccharides chemically joined, insoluble and very large

starch

consists of two molecules: amylose and amylopectin

starch is insoluble, does not affect water potential

amylose and amylopectin are polymers, too large to diffuse out of cells

amylose:

●​ long, unbranched chains of alpha glucose
●​ angle of the 1-4 glycosidic bonds create a helical structure, which make it compact
and ideal for storage

amylopectin:

●​ polymer of alpha glucose joined by 1-4 glycosidic bonds
●​ long, branched chains allow the enzymes that hydrolyse the molecule to access the
glycosidic bonds easily, so glucose is released easily

test:

●​ iodine turns from yellow to blue-black when in contact with starch

glycogen

●​ polymer of alpha glucose, shorter chains and more highly branched
●​ highly branched - compact and ideal for storage

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