Computational Modeling of Hepatic Lipid and Lipoprotein Metabolism

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Computational Modeling of Hepatic Lipid and Lipoprotein Metabolism NCSB / NBIC Modelers-Bioinformatics Meeting 26-02-2010

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Computational Modeling of Hepatic Lipid and Lipoprotein Metabolism. NCSB / NBIC Modelers-Bioinformatics Meeting 26-02-2010. Leiden University Medical Center. BioModeling & bioInformatics. Biomedical NMR. Overall aim: - PowerPoint PPT Presentation

Transcript of Computational Modeling of Hepatic Lipid and Lipoprotein Metabolism

Page 1: Computational Modeling of Hepatic Lipid and Lipoprotein Metabolism

Computational Modeling of Hepatic Lipid and Lipoprotein Metabolism

NCSB / NBIC Modelers-Bioinformatics Meeting

26-02-2010

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Page 3: Computational Modeling of Hepatic Lipid and Lipoprotein Metabolism

Overall aim:

Development of mathematical models describing lipid and carbohydrate metabolism at whole body and organ specific level in mice

Leiden University Medical Center BioModeling & bioInformatics Biomedical NMR

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triglyceridecholesterol ester

VLDL

IDLLDL

FFA

HDL

chylomicronremnants

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Véniant et al.

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TGTG

Liang et al.Zhang et al.Boogaerts et al.

TG

TGGrefhorst et al.Davis et al.Dixon et al.

TG

Millar et al.Wong et al.Horton et al.

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FA metabolism

Lipogenesis

Lipolysis

Ketogenesis

apoB metabolism

Remnant catabolism

NEFA

Part I Part II

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GPAT / AGPAT

G3P

LPA

PA

DAG

FAGlycerol

DGAT1

TG

PPAP2

FA

FA FA

GPAT / AGPAT

MG

TGHHSL:FABP4

HSL:FABP4

FA

MGL

FA

GK

HSL:FABP4

C

CE

FAFA

ACAT

TG CE

Apo B

Apo B

FFA

FAFATG / CE / Glycerol

MTP

DGAT2

FAFAS

MGK

G3P

DGK

MGAT

Liver

Peripheral

Lipoprotein Type Matrix

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GPAT / AGPAT

G3P

LPA

PA

DAG

FAGlycerol

DGAT1

TG

PPAP2

FA

FA FA

GPAT / AGPAT

MG

TGHHSL:FABP4

HSL:FABP4

FA

MGL

FA

GK

HSL:FABP4

C

CE

FAFA

ACAT

TG CE

Apo B

Apo B

FFA

FAFATG / CE / Glycerol

MTP

DGAT2

FAFAS

MGK

G3P

DGK

MGAT

Liver

Peripheral

Lipoprotein Type Matrix

, , , ,

, , , , , , , ,

[ ][ ] [ ] [ ] [ ][ ][ ][ ] [ ] [ ] [ ]

DAG MG MG GLC MG LPA MG DAG

m DAG MG m MG GLC m MG LPA m MG DAG

V MG FA V MG V MG V MGd MGdt K MG FA K MG K MG K MG

, , ,

, , , , , ,

[ ] [ ][ ] [ ][ ][ ] [ ][ ] [ ]

C C CE CE CC

m C m C CE m CE C

V C V C FA V CEd C Vdt K C K C FA K CE

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GPAT / AGPAT

G3P

LPA

PA

DAG

FAGlycerol

DGAT1

TG

PPAP2

FA

FA FA

GPAT / AGPAT

MG

TGHHSL:FABP4

HSL:FABP4

FA

MGL

FA

GK

HSL:FABP4

C

CE

FAFA

ACAT

TG CE

Apo B

Apo B

FFA

FAFATG / CE / Glycerol

MTP

DGAT2

FAFAS

MGK

G3P

DGK

MGAT

Liver

Peripheral

Lipoprotein Type Matrix

, , , ,

, , , , , , , ,

[ ][ ] [ ] [ ] [ ][ ][ ][ ] [ ] [ ] [ ]

DAG MG MG GLC MG LPA MG DAG

m DAG MG m MG GLC m MG LPA m MG DAG

V MG FA V MG V MG V MGd MGdt K MG FA K MG K MG K MG

, , ,

, , , , , ,

[ ] [ ][ ] [ ][ ][ ] [ ][ ] [ ]

C C CE CE CC

m C m C CE m CE C

V C V C FA V CEd C Vdt K C K C FA K CE

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LiteratureQuantitative data generation

Bijland et al.

Exhaustingly searching for kinetic parameters and specieconcentrations

parameter estimation

• Text mining techniques to infer quantitative information (PHASAR / BioMeta)

• Inferring pathway topologies in a more structured way

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GPAT / AGPAT

G3P

LPA

PA

DAG

FAGlycerol

DGAT1

TG

PPAP2

FA

FA FA

GPAT / AGPAT

MG

TGHHSL:FABP4

HSL:FABP4

FA

MGL

FA

GK

HSL:FABP4

C

CE

FAFA

ACAT

TG CE

Apo B

Apo B

FFA

FAFATG / CE / Glycerol

MTP

DGAT2

FAFAS

MGK

G3P

DGK

MGAT

Liver

Peripheral

Lipoprotein Type Matrix

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cholesterol

trigl

ycer

ide

0 1000 2000

0

5000

1

0000

Cholesterol: 1000Triglyceride: 5000

particle uptakehydrolysis

Different lipoprotein types− Based on triglyceride and cholesterol content− Color represents concentration of lipoprotein type

content transfer

VLDL production

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cholesterol

trigl

ycer

ide

• VLDL production• Particle uptake• Hydrolysis• CETP

910

• Apo B

• TG• CE

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cholesterol

trigl

ycer

ide

• VLDL production• Particle uptake• Hydrolysis• CETP

109

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cholesterol

trigl

ycer

ide 109

1

• VLDL production• Particle uptake• Hydrolysis• CETP

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cholesterol

trigl

ycer

ide

10 10

1

9 9

1

• VLDL production• Particle uptake• Hydrolysis• CETP

CETP

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Acknowledgements

Peter Hilbers Natal van Riel Jeroen Jeneson Joep VanlierJoep SchmitzÇeylan Cölmekçi

Ko Willems van DijkJan Bert van Klinken Sjoerd van den Berg Silvia Bijland