Top Banner
TEKNOLOGI DNA REKOMBINAN Agustina Setiawati, M.Sc., Apt
52

Dna Rekombinan bioteknologi

Nov 09, 2014

Download

Documents

Dna Rekombinan bioteknologi
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: Dna Rekombinan bioteknologi

TEKNOLOGI DNA REKOMBINAN

Agustina Setiawati, M.Sc., Apt

Page 2: Dna Rekombinan bioteknologi

Kloning

DNA Cloning – the act of making many identical copies of a particular piece of DNA (often a gene)

As you know, the first stop often involves joining a piece of DNA of interest to a cloning vector using DNA ligase

Page 3: Dna Rekombinan bioteknologi

Prinsip DNA rekombinan

Page 4: Dna Rekombinan bioteknologi

PEMOTONGAN HpaI

Page 5: Dna Rekombinan bioteknologi

PEMOTONGAN EcoRI

Page 6: Dna Rekombinan bioteknologi
Page 7: Dna Rekombinan bioteknologi
Page 8: Dna Rekombinan bioteknologi

LIGASI

Page 9: Dna Rekombinan bioteknologi

VEKTOR KLONING

Page 10: Dna Rekombinan bioteknologi

Plasmid

DNA untai ganda sirkuler, ekstrakromosom

Linier : Streptomyces rochei Ukuran : 2,2 kb – 700 kb Jumlah duplikat: 1-2; 4-8; 20-30, 700-

1000.

Page 11: Dna Rekombinan bioteknologi
Page 12: Dna Rekombinan bioteknologi
Page 13: Dna Rekombinan bioteknologi
Page 14: Dna Rekombinan bioteknologi

Penamaan plasmid

p : plasmid BR : pembuat Bolivar dan Rodriguez 322 dibuat lebih awal drpd pBR325,

pBR328

Page 15: Dna Rekombinan bioteknologi

Pembuatan Plasmid rekombinan

Page 16: Dna Rekombinan bioteknologi

VE

KTO

R P

LAS

MID

pB

r32

2

Page 17: Dna Rekombinan bioteknologi
Page 18: Dna Rekombinan bioteknologi

KLO

NIN

G D

EN

GA

N V

EKT

OR

p

BR

32

2

Page 19: Dna Rekombinan bioteknologi

Dete

ksi ad

an

ya k

lon y

ang

d

iing

inka

n

Page 20: Dna Rekombinan bioteknologi

VE

KTO

R P

LA

SM

ID

puc1

8/1

9

Page 21: Dna Rekombinan bioteknologi

Keuntungan pUC

Jumlah duplikat 500 – 700 plasmid/sel Mudah mendeteksi % plasmid

rekombinan Adanya polycloning sites pUC18 = pUC19, polycloning sitesnya

berlawanan Membawa promoter lacUV dan ribosome

binding site

Page 22: Dna Rekombinan bioteknologi
Page 23: Dna Rekombinan bioteknologi

Deteksi adanya klon yang diinginkan

Page 24: Dna Rekombinan bioteknologi
Page 25: Dna Rekombinan bioteknologi

Plasmid Polylinkers and Marker Genes for Blue-White screening

A vector usually contains a sequence (polylinker) which can recognize several restriction enzymes so that the vector can be used for cloning a variety of DNA samples.

Colonies with recombinant plasmids are white, and colonies with nonrecombinant plasmids are blue.

Example: pUC19 Resistant to ampicillin, has (ampr gene) Contains portion of the lac operon which codes for

beta-galactosidase. X-gal is a substrate of beta-galactosidase and turns

blue in the presence of functional beta-galactosidase is added to the medium.

Insertion of foreign DNA into the polylinker disrupts the lac operon, beta-galactosidase becomes non-functional and the colonies fail to turn blue, but appear white.

DNA rekombinan pada plasmid

Page 26: Dna Rekombinan bioteknologi
Page 27: Dna Rekombinan bioteknologi

KEMUNGKINAN BERHASIL

PERSAMAA CLARCK DAN CARBON N = ln(1 – P)/ln(1 – F)

P : probalitas 0,99 F : ukuran sisipan/ukuran kromosom N : jumlah koloni dg plasmid rekombinan

Page 28: Dna Rekombinan bioteknologi

Koloni yang dibutuhkan

Ukuran kromosom 4.000 kb Ukuran rata-rata sisipan 7,7 kb N=ln(1-99)/ln(1-7,7/4000) = 2390 koloni Manusia 4x106 kb

Page 29: Dna Rekombinan bioteknologi

Kloning gena isulin manusia

Ukuran kromosom 4x109 pb Ukuran gena isulin 1.700 pb Ukuran sisipan 10.000 pb

N = ln(1-0,99)/ln(1-104/4x109)

Jika sisipan 40.000 pb N = ?

Page 30: Dna Rekombinan bioteknologi

TRANSFORMASI

Page 31: Dna Rekombinan bioteknologi
Page 32: Dna Rekombinan bioteknologi
Page 33: Dna Rekombinan bioteknologi

KLONING GENA EUKARIOT

Page 34: Dna Rekombinan bioteknologi
Page 35: Dna Rekombinan bioteknologi

STRATEGI KLONING GENA EUKARIOT

Isolasi total mRNA dari jaringan ttt Ubah mRNA menjadi cDNA Sisipkan pada vektor ekspresi Penapisan klon Produksi enzim

Page 36: Dna Rekombinan bioteknologi

RNA processing

Page 37: Dna Rekombinan bioteknologi
Page 38: Dna Rekombinan bioteknologi

Produksi Insulin

Proinsulin

Page 39: Dna Rekombinan bioteknologi

Berg JM, et al, 2002

Page 40: Dna Rekombinan bioteknologi

Pembuatan cDNA

Page 41: Dna Rekombinan bioteknologi
Page 42: Dna Rekombinan bioteknologi
Page 43: Dna Rekombinan bioteknologi
Page 44: Dna Rekombinan bioteknologi
Page 45: Dna Rekombinan bioteknologi
Page 46: Dna Rekombinan bioteknologi
Page 47: Dna Rekombinan bioteknologi
Page 48: Dna Rekombinan bioteknologi
Page 49: Dna Rekombinan bioteknologi

DETEKSI PROTEIN PADA SEL HOST

DENGAN PELACAK DNA

Page 50: Dna Rekombinan bioteknologi

DETEKSI PROTEIN PADA SEL HOST

Page 51: Dna Rekombinan bioteknologi

Want to know more? Just ask!

Page 52: Dna Rekombinan bioteknologi

MATUR NUWUN