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Data-Driven Design of
Cell Factories and Communities
Nikolaus Sonnenschein, Senior Researcher
iLoop Core – Design Unit
@phantomas1234
11-Sep-2017 DEMO
What we do …
• Construct cell factories!
• Determine the spectrum of molecules
that can be produced biologically
(basic research).
• Shortening the strain design and
development process (translational
research).
• Develop new technologies and transfer
knowledge to industry for the benefit
of society.
• Train the future workforce of a bio-
based economy.
Commercial:
Product titre > 10–100 g/L
25–50 FTE for 5–10 years
Cost $50M–$250M
Death valley
Valley of Death
Academic:
Product titre < 1 g/L
1–2 FTE for 2–3 years
Cost < $1M
Commercial:
Product titre > 10-100 g/L
< 2 years
Cost <$20M
Bridging the valley of death
Omics
Lab automation
Valley of Death
Systems biology
guided design
Academic:
Product titre < 1 g/L
1–2 FTE for 2–3 years
Cost < $1M
Computer Aided Metabolic Engineering and
Optimization of Cell Factories
http://cameo.bio
http://www.biorxiv.org/content/early/2017/06/09/147199 =>
https://tinyurl.com/cameo-biorxiv
Workflow
http://try.cameo.bio
Computer aided design (CAD) in engineering
CAD in civil engineering
CAD in mechanical engineering
CAD in electrical engineering
CAD in chemical engineering
Intuition aided design (IAD) in metabolic engineering
CAD in metabolic engineering?
Data-Driven Design of Cell Factories and Communities
http://dd-decaf.eu/
The project has received funding from the
European Union’s Horizon 2020 research
and innovation programme under grant
agreement No 686070
Data-Driven Design of Cell Factories and Communities
Pathways Cells CommunitiesEnzymes
Health AgricultureIndustrial biotech Environment
Fluxome(Meta)genome Transcriptome Proteome Metabolome
OmicsDesignApplications
Coordinator
End users
Bioinformatics
SMEs
Isabel
Rocha
Markus Herrgård
& Niko Sonnenschein
Enzymes
Communities Vassily Hatzimanikatis
Consortium
Metabolomics
Peer Bork & Kiran Patil
Science
Jens Nielsen
Transcriptomics/
Proteomics
Platform demo
Svetlana Henning MoritzDanny
+
Nace Matyas
Data-driven design of cell factories and communities
Data-driven design:
proteomics integration via ecYeast7 and Gecko
Data-driven design of cell factories and communities
Next steps
• Registration via Google, Twitter, Github,
Facebook, ORCID, …
• BYOM: Bring your own models
• Mine (meta)genomic data for enzymes
• Support more types of omics data
• Add community modeling
Models Enzymes
Omics data
AGTGG AGTT AA TC TC T
TATT GG AG ATT AA GA
GTT ATC TC TT GAA TT G
TATGG AC TT GC TT ATT
GATC TC GTT AA GAGTT
AA TC TT GG AG ATGC TT
ATT GATT GTAGAGTT A
TT
Dogfooding: https://iloop.biosustain.dtu.dk
CompoundX
Data-driven design of cell factories and communities
memote – a community effort
Automate all the things
High-level strain design
“Delete native genes A, B, C, and D. Add foreign
genes X, Y,Z. Increase flux through reaction F by
twofold while reducing flux through reaction G by
threefold. Remove product inhibition in pathway Q
…”
Magic
Compiler
Box
gRNAs
Primers
Protocols
Genes
Promotors
Libraries
…
(b) Workflow
Workcell
Freezers and
incubation
PCR
Robotics
arm
Liquid
handling
Plate
reader
Plate/test-tube
magazine
AUTOPROTOCOL
Data Protocol
API
Materials
Shipping
Order button
WE ACCEPT
CREDIT CARDS
Acknowledgements
The project has received funding from the
European Union’s Horizon 2020 research and
innovation programme under grant
agreement No 686070
Get in touch with us via:
http://dd-decaf.eu/
@dddecaf (Twitter)
Zachary King (UCSD)
Presented in the Synthetic Biology & Gene
Editing strand of the 4Bio Summit.
To find out more, visit:
www.global-engage.com

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Data-driven design of cell factories and communities

  • 1. Data-Driven Design of Cell Factories and Communities Nikolaus Sonnenschein, Senior Researcher iLoop Core – Design Unit @phantomas1234
  • 3. What we do … • Construct cell factories! • Determine the spectrum of molecules that can be produced biologically (basic research). • Shortening the strain design and development process (translational research). • Develop new technologies and transfer knowledge to industry for the benefit of society. • Train the future workforce of a bio- based economy.
  • 4. Commercial: Product titre > 10–100 g/L 25–50 FTE for 5–10 years Cost $50M–$250M Death valley Valley of Death Academic: Product titre < 1 g/L 1–2 FTE for 2–3 years Cost < $1M
  • 5. Commercial: Product titre > 10-100 g/L < 2 years Cost <$20M Bridging the valley of death Omics Lab automation Valley of Death Systems biology guided design Academic: Product titre < 1 g/L 1–2 FTE for 2–3 years Cost < $1M
  • 6. Computer Aided Metabolic Engineering and Optimization of Cell Factories http://cameo.bio http://www.biorxiv.org/content/early/2017/06/09/147199 => https://tinyurl.com/cameo-biorxiv
  • 9. Computer aided design (CAD) in engineering
  • 10. CAD in civil engineering
  • 11. CAD in mechanical engineering
  • 12. CAD in electrical engineering
  • 13. CAD in chemical engineering
  • 14. Intuition aided design (IAD) in metabolic engineering
  • 15. CAD in metabolic engineering?
  • 16. Data-Driven Design of Cell Factories and Communities http://dd-decaf.eu/ The project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 686070
  • 17. Data-Driven Design of Cell Factories and Communities Pathways Cells CommunitiesEnzymes Health AgricultureIndustrial biotech Environment Fluxome(Meta)genome Transcriptome Proteome Metabolome OmicsDesignApplications
  • 18. Coordinator End users Bioinformatics SMEs Isabel Rocha Markus Herrgård & Niko Sonnenschein Enzymes Communities Vassily Hatzimanikatis Consortium Metabolomics Peer Bork & Kiran Patil Science Jens Nielsen Transcriptomics/ Proteomics
  • 19. Platform demo Svetlana Henning MoritzDanny + Nace Matyas
  • 23. Next steps • Registration via Google, Twitter, Github, Facebook, ORCID, … • BYOM: Bring your own models • Mine (meta)genomic data for enzymes • Support more types of omics data • Add community modeling Models Enzymes Omics data AGTGG AGTT AA TC TC T TATT GG AG ATT AA GA GTT ATC TC TT GAA TT G TATGG AC TT GC TT ATT GATC TC GTT AA GAGTT AA TC TT GG AG ATGC TT ATT GATT GTAGAGTT A TT
  • 26. memote – a community effort
  • 27. Automate all the things High-level strain design “Delete native genes A, B, C, and D. Add foreign genes X, Y,Z. Increase flux through reaction F by twofold while reducing flux through reaction G by threefold. Remove product inhibition in pathway Q …” Magic Compiler Box gRNAs Primers Protocols Genes Promotors Libraries … (b) Workflow Workcell Freezers and incubation PCR Robotics arm Liquid handling Plate reader Plate/test-tube magazine AUTOPROTOCOL Data Protocol API Materials Shipping
  • 29. Acknowledgements The project has received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 686070 Get in touch with us via: http://dd-decaf.eu/ @dddecaf (Twitter) Zachary King (UCSD)
  • 30. Presented in the Synthetic Biology & Gene Editing strand of the 4Bio Summit. To find out more, visit: www.global-engage.com