Yap regulates glucose utilization and sustains nucleotide synthesis to enable organ growth
The Hippo pathway and its nuclear effector Yap regulate organ size and cancer formation. While many modulators of Hippo activity have been identified, little is known about the Yap target genes that mediate these growth effects. Here, we show that yap−/− mutant zebrafish exhibit defects in hepatic p...
Main Authors: | Cox, Andrew G, Tsomides, Allison, Yimlamai, Dean, Hwang, Katie L, Miesfeld, Joel, Galli, Giorgio G, Fowl, Brendan H, Fort, Michael, Ma, Kimberly Y, Sullivan, Mark R, Hosios, Aaron M, Snay, Erin, Yuan, Min, Brown, Kristin K, Lien, Evan C, Chhangawala, Sagar, Steinhauser, Matthew L, Asara, John M, Houvras, Yariv, Link, Brian, Vander Heiden, Matthew G, Camargo, Fernando D, Goessling, Wolfram |
---|---|
Other Authors: | Koch Institute for Integrative Cancer Research at MIT |
Format: | Article |
Language: | English |
Published: |
EMBO
2020
|
Online Access: | https://hdl.handle.net/1721.1/125162 |
Similar Items
-
Selenoprotein H is an essential regulator of redox homeostasis that cooperates with p53 in development and tumorigenesis
by: Cox, Andrew G., et al.
Published: (2017) -
COSO enterprise risk management: small-medium enterprises evidence / Angeline Kiew Heong Yap and Saw Teng Yap
by: Kiew Heong Yap, Angeline, et al.
Published: (2018) -
Enterprise risk management: evidence from small-medium enterprises / Yap Kiew Heong Angeline and Yap Saw Teng.
by: Yap, Kiew Heong Angeline, et al.
Published: (2016) -
Death For Raping And Killing Chee Gaik Yap
by: Guang Ming, Daily
Published: (2016) -
Amino Acids Rather than Glucose Account for the Majority of Cell Mass in Proliferating Mammalian Cells
by: Johnson, Marc O., et al.
Published: (2018)