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Finishing the Human Genome http://biochem158.stanford.edu/

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Finishing the Human Genome http://biochem158.stanford.edu/ Genomics, Bioinformatics & Medicine Doug Brutlag Professor Emeritus of Biochemistry & Medicine – PowerPoint PPT presentation

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Title: Finishing the Human Genome http://biochem158.stanford.edu/


1
Finishing the Human Genomehttp//biochem158.stanf
ord.edu/
Genomics, Bioinformatics Medicine
Doug Brutlag Professor Emeritus of Biochemistry
Medicine Stanford University School of Medicine
2
Chromosome 21Public vs Celera Assemblies
3
Chromosome 8Public vs. Celera
4
Finishing Strategy for the Public Genome
Project
5
Polymerase Chain Reaction Overview Exponential
Amplification of DNA
6
The First Three Cycles
Original DNA
After N cycles, amount of target DNA is 2N-2N
7
PCR Requirements
DNA
  • Need to know at least the beginning and end of
    DNA sequence
  • These flanking regions have to be unique to
    strand interested in amplifying
  • Region of interest can be present in as little as
    one copy
  • Enough DNA in 0.1 microliter of human saliva to
    use PCR

DNA Polymerase Enzyme
  • DNA polymerase from Thermus aquaticus--Yellowstone
  • Alternatives Thermococcus litoralis, Pyrococcus
    furiosus

Thermocycler
8
Temperature Cycling
TAQ polymerase optimum at 72 C
9
PCR on a Chip
Uses Reaction complete in 2-20
minutes Extremely portable
10
Fluidigm PCR Arrayshttp//www.fluidigm.com/access
-array-system.html
11
Real-Time PCR
  • Uses Portable means to diagnose bacteria
    epidemics
  • Bioterrorism detection
  • Military, medical, and municipal applications
  • Fast Results in less than seven minutes

12
Quantitative PCR
13
QuantaLifehttp//www.quantalife.com/
14
PCR Applications
  • Forensics
  • assessment/reassessment of crimes
  • Archaeology
  • determine gene sequences of ancient organisms
  • rethinking the past, human origins
  • Molecular Biology
  • Cloning genes
  • Sequencing genes
  • Finishing genome sequences
  • Amplification of DNA or RNA
  • Medicine
  • Diagnostics for inherited disease
  • Diagnostics for gene expression
  • Diagnostics for gene methylation

15
Finishing Strategy for the Public Genome
Project
16
Finished Sequence in 2004 (Build 35)
17
Comparison of Chromosome 7Draft versus Finished
Sequence
18
Substitutions in BAC Overlaps withBACs from Same
or Different Libraries
19
Gaps in BAC Overlaps withBACs from Same or
Different Libraries
20
Duplications and Deletionsin the Human Genome
21
Percentage of Chromosomes Duplicated
22
Duplications near Centromeres
23
Duplications near Telomeres
24
Deletions and Duplications can Arise from Unequal
Crossing Over in Repeated Regions
  • Crossing over between maternal and paternal
    chromosomes
  • Unequal crossing over between maternal and
    paternal chromosomes

Maternal
Paternal
Offspring
Offspring
Maternal
Paternal
Offspring
Offspring
25
The Diploid Sequence of anIndividual Human
(HuRef)
26
Karyotype of J.Craig Venter
Giemsa Stain
FISH Stain
27
Comparing NCBI Assembly to HuRef Assembly
28
SNPs InDels in HuRef Autosomes
29
Illumina Solexa Sequencing Technology
30
Illumina Solexa Sequencing Technology
31
Illumina Solexa Sequencing Technology
32
Illumina Solexa Sequencing Technology
33
Illumina Solexa Sequencing Technology
34
Illumina Solexa Sequencing Technology
35
Illumina Solexa Sequencing Technology
36
Illumina Solexa Sequencing Technology
37
Illumina Solexa Sequencing Technology
38
Illumina Solexa Sequencing Technology
39
Illumina Solexa Sequencing Technology
40
Illumina Solexa Sequencing Technology
41
Life Sciences 454 Process Overview
42
Emulsion Based Clonal Amplification
43
Depositing DNA Beads into thePicoTiterPlate
44
Sequencing By Synthesis
Sequencing-By-Synthesis
45
Flowgrams and BaseCalling
Flow Order
TACG
46
Pacific Biosciences SMRT Sequencing
47
Pacific Biosciences SMRT Sequencing
48
Phospholinked Fluorophores
49
Processive Synthesis
50
Synthesis of Long Duplex DNA
51
Highly Parallel Optics System
52
Circular Templates Gives RedundantSequencing and
Accuracy
53
Circular Templates Gives RedundantSequencing and
Accuracy
54
Ion Torrent Sequencing
55
Ion Torrent Sequencing
56
Ion Torrent Sequencing
57
The Human GenomeHow fast is the cost going down?
  • 2006 50 million
  • 2008 500,000
  • 2009 50,000
  • 2010 20,000
  • 2011 5,000
  • 2012??? 1,000

Thanks to Serafim Batzoglou
58
Archon Genomics X-Prize
59
Archon Genomics X-Prize
60
PCR Primer Design
Primer sequence Length 20-30 base pairs long
(1/4N) 50 15 G-C Avoid repeating sequences
and poly-A sequences Avoid inverted repeating
sequences Two primers should have little self
complementarity 3 end of primer should be G/C
Melting Temperature Tm (number of AT
residues) x 2 C (number of GC residues) x 4
C Both primers should have comparable melting
temperatures Annealing temperature is about 5 C
lower than melting temp
61
GeneFisher
1 ccgtaacgga ggatgttttt cagaatgtgg ttgggattga
tggatgggag gtagaacgag 61 ttcgagttga aaaggttttg
tgtgccatgt gaaaaggtta gcatctatta cgtagacgag 121
agaaattcat tggaaatttg agaaggagat tgagcataat
gaaacttgtt ttggaaaaat 181 atgttgttat taatgtggag
gtgggcaaga atgagaataa tcagtagcaa tgaggtgtca 241
ataatttgat actgtctaca tggaagacgg cgaccagagc
catggaagtc agaatgaaaa 301 atgataaatg tgaaaacatt
ctagagaaga aatgaatacg cgaaggcccg tggtgggtga 361
tgacatgatg tgatttctgc ccagtgctct gaatgtcaaa
gtgaagaaat tcaatgaagg 421 acgggtaaac ggcgggagta
actatgactc tcttaaggta gccaaatgca tagtcatcta 481
attagtgacg ttcatgaatg gatgaacgag attcccactg
tccctaccta ctatccagcg 541 aaaccacagc caaggtaacg
ggcttggtgg aatccgcggg gaaagaagac cctgttgagc 601
ttgactctag tctggcacgg tgaagagcca tgagaagtgt
agaataagtg ggaggcccct 661 gggcccccct gcccagcaag
gggacagagt ggggcaaggc cagaggtgaa ataccactac 721
tctgattgtt tattcactga cccgtgaggt gccccaaggg
gctcttgctt ctggcgccga 781 gtgcccggcc acatgcacat
gccaaattgt aaagaccatc gat
http//bibiserv.techfak.uni-bielefeld.de/genefishe
r/
Forward Primer Data Reverse
Primer Data Sequence GATTGATGGATGGGAGGTA
CTGTGGTTTCGCTGGA GC Content 47
56 Position
34
533 Degeneracy 0
0 3' GC
50
50 3' Degeneracy
0
0 Tm 52.7996

51.349 Location 34
533
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