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DNA
Descripción
basic outline of DNA structure, function and replication, gene structure, RNA structure and function and transcription in pro- and eu-karyotes
Sin etiquetas
dna
rna
translation
transcription
Mapa Mental por
Whitney Hosein
, actualizado hace más de 1 año
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Creado por
Whitney Hosein
hace más de 9 años
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Resumen del Recurso
DNA
Central Dogma
DNA
Genetic Material
Contains all hereditary info
nucleic
RNA-Transfer Material
Transcribed from DNA
Transports info outside of nucleus
Transient Life
Protein
Structural/Catalytic
Translated from RNA
POLYMER OF NUCLEOTIDE MONOMERS
PURINE/PYRIMIDINE
Purine
adenine
guanosine
Pyrimidine
cytosine
thymine
@ 1' OH of Pentose
2' OH- RNA, 1' H-DNA
PO42- attached @ C5, PO42- of next nucleotide @C3'-glycosidic bond
Packaging
Prokaryotic
~1m supercoiled and compacted, attached to scaffold extranuclearly
Eukaryotic
DNA is supercoiled into chromatin
Chromatin-DNA interacting with nucleus
Chromatin is folded into "beads on a string" via nucleosomes~30nm fiber
30nm-> superloop->rosette (6 loops)->coil (30 rosettes)->2 chromatids (10 coils)
Replication
HELICASE unwinds parental dsDNA
ssDNA binding proteins stabilize unwound strand
leading strand synthesized continually in 5' -> 3' direction
lagging strand synthesis is discontinuous, short primer synthesis by PRIMASE
RNA primer replaced by DNA, Okazaki fragments joined by DNA ligase to growing strand
DNA polymerase
by
Extends short primer to form Okazaki
replaces primer
Transcription
RNA Polymerases
Prokaryotic
single core protein w/ 5 subunits
β'-largest part of active center
β-Remainder of active center
α1 & α11-Dimer interacting w/ & transcription factors
ω-facilitates assembly & protein stability
σ factor- provides promoter binding specificity
Eukaryotic
I- synthesizes pre-rRNA (45S, 35S in yeast)
matures into 28S, 18S & 5.8S rRNAs
form major RNA sections of ribosome
II- precursors of mRNA and snRNA & microRNA
requires many transcription factors for promoter binding
III-synthesis of tRNA, rRNA 5S & small RNAs w/in nucleus & cytosol
Mediator complex
receive all signals from activator proteins
Compile message
transmit message to RNA P II
Also bind to DNA sequences known as enhancers as far as 1000s of bps from promoter
Start site has +1, anything to right is (+), left is (-)
Translation
Initiation
Ribosome binds mRNA @ start codon
Prokaryotic
30S-> reacts with 50 S -> forms 70S
Eukaryotic
e1F4E released, e1F4F complex binds to mRNA cap--> 2° structure unwinds & 48 S forms-->scanning, initiation factors released & 80S formed
Elongation
Succesive addition of amino acids elongates polypeptide chain
Termination
Polypeptide is released & ribosome dissociates once stop codon is reached
Gene Structure
Prokaryotic
Transcription & Translation linked
As mRNA is made, serves as a template for protein formation
Eukaryotic
Promoter binds upstream from potential regulatory elements
Introns removed during splicing-basis of fetal development
Initial translation product- amino acid chain
Posttranslational modifciation--> finished protein
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