THE VERSATILITY OF CARBON-THE BUILDING BLOCKS OF LIFE! AP Biology: Organic Compounds.

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THE VERSATILITY OF CARBON-THE BUILDING BLOCKS OF LIFE! AP Biology: Organic Compounds

Transcript of THE VERSATILITY OF CARBON-THE BUILDING BLOCKS OF LIFE! AP Biology: Organic Compounds.

Page 1: THE VERSATILITY OF CARBON-THE BUILDING BLOCKS OF LIFE! AP Biology: Organic Compounds.

THE VERSATILITY OF CARBON-THE BUILDING BLOCKS OF LIFE!

AP Biology: Organic Compounds

Page 2: THE VERSATILITY OF CARBON-THE BUILDING BLOCKS OF LIFE! AP Biology: Organic Compounds.

Why Carbon Compounds? (Why not another element?

Bonding Properties4 Covalent BondsEndless possibilities!

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Living Organisms and Carbon

All life is built on Carbon

75% Water25% Carbon

compounds!Four Types:--Carbohydrates--Lipids--Proteins--Nucleic Acids

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Hydrocarbons

These are examples of hydrocarbons.

-Hydrophobic-Stable-Very little attraction between molecules-Mostly gases at normal temperatures and pressures

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Hydrocarbons Can Grow

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Isomers

Molecules with the same elements, but with different physical structures

They have different chemical properties and can affect living systems in different ways.

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Form Affects Function

Structural differences create important functional significance

Example: medicines

L-version active but not D-version

sometimes withtragic results…

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Form Affects Function

Thalidomide prescribed to pregnant women in 50s &

60s reduced morning sickness, but… stereoisomer caused severe birth defects

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Functional Groups of Carbon Compounds

Parts of organic molecules that are involved in chemical reactions give organic

molecules distinctive properties

n hydroxyln aminon carbonyl n carboxyln sulfhydryln phosphaten methyl

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Effects of Different Functional Groups

Basic structure of male & female hormones is identical attachment of different functional groups

interacts with different targets in the body—produces different effects!

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Hydroxyl Group

-OHOrganic compounds with OH groups are

called alcoholsNames typically end in “ol” (example:

ethanol)

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Amino Group

-NH2Carbon compounds attached to NH2 are

called amines--NH2 acts as a base and can easily pick up

H+ ionsFound in amino acids

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Carbonyl Group

Carbon double-bonded to oxygenMay be in the middle or at the end of the

carbon chain

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Carboxyl Group

Carbon is double-bonded to oxygen and single-bonded to a hydroxyl (OH) group.

Compounds with a Carboxyl group (COOH) are acids.

Examples: Amino Acids, Fatty Acids

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Sulfhydryl Group

-SHCarbon compound is bonded to a sulfur-

hydrogen group. Compounds with sulfhydryl groups are called

thiols.Sulfhydryl groups stabilize protein molecules.

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Phosphate Group

-PO4Lots of oxygen=lots of negative charge!

(Why?)Highly reactive groupTransfers energy between organic molecules

(ex: ATP)

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Methyl Group

CH3May be attached to any carbon on a

compound.