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Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different...

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Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon is the central atom of life.
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Page 1: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell.

Carbon is the central atom of life.

Page 2: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Molecules of Life

Start with water, add lots of small carbon-containing molecules and …

How do you build a cell?

use these four major classes of biological molecules.

Page 3: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Monomers, Polymers and MacromoleculesMany biological molecules are macromolecules – very large.

Biological macromolecules are formed by linking together a set of building blocks (monomers) into long chains (a polymer).

Page 4: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

CarbohydratesCarbohydrates are used for immediate energy and to create structures.

The building blocks for carbohydrates are simple sugars.

Three views of glucose, a common simple sugar.

Page 5: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Linking Simple Sugars – the First Step to a Polymer

A complex carbohydrate is a long-chain polymer made of simple sugars.

monosaccharides a disaccharide

Larger molecules form by a process called dehydration synthesis.

Page 6: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Some Familiar and Important Complex Carbohydrates

Note the way complex macromolecules are built by linking simple repeating units.

Page 7: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Carbohydrates are Central Players in Energy Production and Storage

Page 8: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Complex Carbohydrates Are Often Used to Create Structures

Cellulose is the most abundant macromolecule on earth – and you’re probably wearing it now.

Page 9: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Lipids are Hydrophobic Molecules That Exist In Three Primary Forms

Sterol

FatPhospholipid

Page 10: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Fats Are Made By Linking 3 Fatty Acid Chains to Glycerol, a Three Carbon Molecule

Space-filling model of a fat

A fatty acid

Page 11: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Molecular Structure of a Fat

Page 12: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Fats are Used in Energy Storage and Production

Page 13: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

The Degree Of Saturation In A Fat Affects Its Physical And Health Properties

Where are the double bonds?

Page 14: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Cis and Trans Unsaturated Fats

all cis polyunsaturated“Good”

Omega-3-fatty acids

mono- and poly-unsaturated

saturated

trans

“Bad”

Page 15: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

At a Store Near You

Beginning January 1, 2006, the FDA required that the amount of trans fat be listed on all food labels.

The new line showing levels of trans fat

Page 16: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Sterols

Note the four ring structure common to all sterols.

Sterols are: 1) essential membrane components and 2) form many hormones.

Page 17: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Sterols As Hormones

Estrogen, testosterone, progesterone, and corticosteriods (cortisol) are all steroid hormones.

Page 18: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Sterols As Hormones

“Designer steroids” are major sporting news where they have been used illegally in track and field, baseball, football and countless other sports.

A heavily muscled Linford Christie who was disqualified from international competition after testing positive for a banned steroid.

Page 19: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Phospholipids are Building Blocks of Cellular Membranes

The hydrophilic (water-loving) head group and hydrophobic (water-fearing) tails are the keys to phospholipid function.

Page 20: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Hydrophilic Head Group And Hydrophobic Tails Are The Keys To Phospholipid Function

Page 21: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Phospholipids Form Double-Layered Biological Membranes

Page 22: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Protein

Proteins are key elements of life.

Remember the principle - structure determines function.

Since proteins are the key players of the cell, it follows that protein structure determines cell function.

Page 23: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Some of the Many Different Functions of Proteins

Page 24: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Strands of the Protein Keratin Create Hair

Page 25: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Proteins are Linear Chains of Linked Amino Acids

Page 26: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

A Common Thread and a Unique Identity

Page 27: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Amino Acids, Peptide Bonds, Polypeptide = Protein

Peptide bonds

Proteins are linear chains of 20 different building blocks called amino acids.

Amino acids are linked by peptide bonds – a form of covalent bond.

Page 28: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Proteins are folded structures whose shape (and therefore function) depends on amino acid sequence.

Page 29: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Nucleic Acids

There are two kinds of nucleic acids, DNA and RNA. Both are involved in the storage and flow of information from gene to gene product.

DNA

Recently, we’ve learned that RNA also plays important regulatory roles.

Page 30: Because carbon contains 4 electrons in its outer shell, it can pair in many ways with many different atoms in an “attempt” to fill its outer shell. Carbon.

Nucleotides Are the Monomers That Create Polymers of DNA and RNA


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