Near Matches
Ignore Exact
Everything
2
Protein Synthesis
(
thing
)
by
piq
Tue Nov 21 2000 at 5:18:49
Protein Synthesis
Basic principles of
protein synthesis
are the same in
eukaryotes
and
prokaryotes
.
Each cell inherits the neccessary info for synthesizing specific proteins.
Transcription
into
mRNA
Promoters
: Start signals for
RNA
synthesis
Terminators
: Stop signals for
RNA
synthesis
From 5 pair to 3 pair
rRNA
constitutes ribosomes.
Ribosomes
are
2
/
3
rRNA and
1
/
3
Protein.
2 binding sites (P/A)
starts scanning at 5' even while mRNA is being constructed.
tRNA
Anticodon
attaches to
mRNA
3' end attaches to
amino acid
Translation
- Synthesis of Proteins
(1) Initialization:
Smaller
ribosomal
subunit attaches to
mRNA
at 5' end at initialization (start)
codon
.
First
tRNA
comes into place to bond with
mRNA
Codon.
Larger Ribosomal subunit attaches to the smaller subunit and initator
tRNA
becomes locked into
P site
.
(2) Elongation:
2
nd
codon
is put under
A site
.
tRNA
with anticodon corresonding to
DNA
codon
locks into place.
Peptidy transferase
forges a
peptide bond
between 2
amino acid
s.
First
tRNA
is released
Ribosome moves down, 2
nd
tRNA/
Amino acid
locks into P spot, 3
rd
tRNA moves into
A position.
Continues like this...
(3) Termination:
When termination codon is reached,
polypeptide chain
is released and the two
ribosomal subunits
seperate.
Redefining Mutations:
A mutation is a change in the sequence or number of nucleotides in the nucleic acid of a cell.
Point mutations
- involve a single nucleotide
Frame shifts
- deletion - insertion moves triplet positions.
housekeeping gene
G0 phase
Origin of Life
cycloheximide
continuous membrane theory
transferase
Puromycin
mRNA
ATP
mitochondria
translation
protein
scarce as hen's teeth
transfection
Synthetic blood substitute
Her echo
October 14, 2002
hypoxanthine-guanine phosphoribosyl transferase
chloramphenicol acetyl transferase
Chloramphenicol acetyl transferase gene (CAT gene)
Henny Penny
nociceptor
mitochondrial DNA
Alcubierre Warp Drive
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