+ All Categories
Home > Documents > Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta...

Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta...

Date post: 22-Dec-2015
Category:
Upload: austen-wright
View: 215 times
Download: 0 times
Share this document with a friend
Popular Tags:
16
Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine Streutker, Heather Maughan, Stephen Rubino, Eduardo H. Moriyama, Julia K. Copeland, Anu Surendra, Sachin Kumar, Blerta Green, Kaoru Geddes, Rossanna C. Pezo, William W. Navarre, Michael Milosevic, Brian C. Wilson, Stephen E. Girardin, Thomas M.S. Wolever, Winfried Edelmann, David S. Guttman, Dana J. Philpott, Alberto Martin Cell Volume 158, Issue 2, Pages 288-299 (July 2014) DOI: 10.1016/j.cell.2014.04.051 Copyright © 2014 Elsevier Inc. Terms and Conditions
Transcript
Page 1: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells 

Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine Streutker, Heather Maughan, Stephen Rubino, Eduardo H. Moriyama, Julia K. Copeland, Anu Surendra, Sachin Kumar, Blerta Green, Kaoru Geddes, Rossanna C. Pezo, William W. Navarre,

Michael Milosevic, Brian C. Wilson, Stephen E. Girardin, Thomas M.S. Wolever, Winfried Edelmann, David S. Guttman, Dana J. Philpott, Alberto Martin 

Cell Volume 158, Issue 2, Pages 288-299 (July 2014)

DOI: 10.1016/j.cell.2014.04.051

Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 2: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure 1

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 3: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure 2

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 4: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure 3

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 5: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure 4

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 6: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure 5

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 7: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure 6

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 8: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure 7

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 9: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure S1

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 10: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure S2

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 11: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure S3

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 12: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure S4

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 13: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure S5

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 14: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure S6

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 15: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Figure S7

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions

Page 16: Gut Microbial Metabolism Drives Transformation of Msh2-Deficient Colon Epithelial Cells Antoaneta Belcheva, Thergiory Irrazabal, Susan J. Robertson, Catherine.

Cell 2014 158, 288-299DOI: (10.1016/j.cell.2014.04.051) Copyright © 2014 Elsevier Inc. Terms and Conditions


Recommended