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PROTEINS The final product of the DNA blueprint Hemoglobin

PROTEINS The final product of the DNA blueprint Hemoglobin

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Page 1: PROTEINS The final product of the DNA blueprint Hemoglobin

PROTEINS

The final product of the DNA blueprint

Hemoglobin

Page 2: PROTEINS The final product of the DNA blueprint Hemoglobin

Why are proteins important?

“When the body has something it needs to do, it is a protein that does it” http://www.rothamsted.ac.uk/notebook/courses/guide/prot.htm

Antibodies – fight disease

Page 3: PROTEINS The final product of the DNA blueprint Hemoglobin

Why are proteins important?

“When the body has something it needs to do, it is a protein that does it” http://www.rothamsted.ac.uk/notebook/courses/guide/prot.htm

Receptors – part of cell membrane, interacts with outside of cell and tells cell what’s happening

Page 4: PROTEINS The final product of the DNA blueprint Hemoglobin

Why are proteins important?

“When the body has something it needs to do, it is a protein that does it” http://www.rothamsted.ac.uk/notebook/courses/guide/prot.htm

Enzymes – assemble or digestEnzyme that digests insulin

Page 5: PROTEINS The final product of the DNA blueprint Hemoglobin

Why are proteins important?

“When the body has something it needs to do, it is a protein that does it” http://www.rothamsted.ac.uk/notebook/courses/guide/prot.htm

Neurotransmitters and hormones – bind to receptors to trigger a response

Neurotransmitters

Page 6: PROTEINS The final product of the DNA blueprint Hemoglobin

Why are proteins important?

Channels and pores – allow large molecules to pass through cell membranes

Page 7: PROTEINS The final product of the DNA blueprint Hemoglobin

What determines the role or function of a protein?

Shape – click for examples

Page 8: PROTEINS The final product of the DNA blueprint Hemoglobin

What determines the shape of a protein?

Amino acids are building blocks of proteins

AminoGroup

AcidGroup

Page 9: PROTEINS The final product of the DNA blueprint Hemoglobin

What determines the shape of a protein?

B. 20 different amino acids each with their own R group

Page 10: PROTEINS The final product of the DNA blueprint Hemoglobin

Each “R” group gives amino acids their . . .

- size

- shape

- charge

- Preference for water (hydrophobic or hydrophilic)

Page 11: PROTEINS The final product of the DNA blueprint Hemoglobin

Amino acids are connected by peptide bonds

What determines the shape of a protein?

Page 12: PROTEINS The final product of the DNA blueprint Hemoglobin

Primary Structure – Sequence of amino acids.

Four levels of structure (Just FYI)

Page 13: PROTEINS The final product of the DNA blueprint Hemoglobin

Secondary Structure – some chains form an alpha helix (coil) or a beta sheet (accordion).

Four levels of structure

Page 14: PROTEINS The final product of the DNA blueprint Hemoglobin

Tertiary Structure – How all of the helices and sheets fold together.

Four levels of structure

Page 15: PROTEINS The final product of the DNA blueprint Hemoglobin

Quaternary Structure – some proteins are made of more than one subunit.

Four levels of structure

Page 16: PROTEINS The final product of the DNA blueprint Hemoglobin

Summary – How the protein folds is determined by thetype and number of amino acids used.

Page 17: PROTEINS The final product of the DNA blueprint Hemoglobin

How does the body know how to make proteins?

A.DNA sequence.

B. If nucleotide order is changed:

- sequence of amino acids is changed.

- Shape of protein is different.

- Protein loses function.

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