SummaryBackgroundThe atypical Fat cadherin has long been known to control cell proliferation and organ size in Drosophila, but the mechanism by which Fat controls these processes has remained elusive. A newly emerging signaling pathway that controls organ size during development is the Salvador/Warts/Hippo pathway.ResultsHere we demonstrate that Fat limits organ size by modulating activity of the Salvador/Warts/Hippo pathway. ft interacts genetically with positive and negative regulators of this pathway, and tissue lacking fat closely phenocopies tissue deficient for genes that normally promote Salvador/Warts/Hippo pathway activity. Cells lacking fat grow and proliferate more quickly than their wild-type counterparts and exhibit delayed cel...
The Hippo tumor-suppressor pathway has emerged as a key signaling pathway that controls tissue size ...
Molecules involved in cell adhesion can regulate both early signal transduction events, triggered by...
Molecules involved in cell adhesion can regulate both early signal transduction events, triggered by...
SummaryBackgroundThe atypical Fat cadherin has long been known to control cell proliferation and org...
SummaryBackgroundThe Hippo tumor-suppressor pathway has emerged as a key signaling pathway that cont...
Background The Hippo tumor-suppressor pathway has emerged as a key signaling pathway that controls ...
SummaryBackgroundThe tight control of cell proliferation and cell death is essential to normal tissu...
Fat is an atypical cadherin and regulates planar cell polarity (PCP) and imaginal disc growth. The G...
SummaryBackgroundThe Hippo tumor-suppressor pathway has emerged as a key signaling pathway that cont...
The conserved Hippo tumor suppressor pathway is a key signaling pathway that controls organ size in ...
Background: Evolutionarily conserved Hippo (Hpo) pathway plays a pivotal role in the control of orga...
Background: The Hippo tumor-suppressor pathway has emerged as a key signaling pathway that controls ...
<div><p>The <i>Drosophila</i> Cadherin Fat (Ft) has been identified as a crucial regulator of tissue...
The Drosophila Cadherin Fat (Ft) has been identified as a crucial regulator of tissue size and Plana...
The Drosophila Cadherin Fat (Ft) has been identified as a crucial regulator of tissue size and Plana...
The Hippo tumor-suppressor pathway has emerged as a key signaling pathway that controls tissue size ...
Molecules involved in cell adhesion can regulate both early signal transduction events, triggered by...
Molecules involved in cell adhesion can regulate both early signal transduction events, triggered by...
SummaryBackgroundThe atypical Fat cadherin has long been known to control cell proliferation and org...
SummaryBackgroundThe Hippo tumor-suppressor pathway has emerged as a key signaling pathway that cont...
Background The Hippo tumor-suppressor pathway has emerged as a key signaling pathway that controls ...
SummaryBackgroundThe tight control of cell proliferation and cell death is essential to normal tissu...
Fat is an atypical cadherin and regulates planar cell polarity (PCP) and imaginal disc growth. The G...
SummaryBackgroundThe Hippo tumor-suppressor pathway has emerged as a key signaling pathway that cont...
The conserved Hippo tumor suppressor pathway is a key signaling pathway that controls organ size in ...
Background: Evolutionarily conserved Hippo (Hpo) pathway plays a pivotal role in the control of orga...
Background: The Hippo tumor-suppressor pathway has emerged as a key signaling pathway that controls ...
<div><p>The <i>Drosophila</i> Cadherin Fat (Ft) has been identified as a crucial regulator of tissue...
The Drosophila Cadherin Fat (Ft) has been identified as a crucial regulator of tissue size and Plana...
The Drosophila Cadherin Fat (Ft) has been identified as a crucial regulator of tissue size and Plana...
The Hippo tumor-suppressor pathway has emerged as a key signaling pathway that controls tissue size ...
Molecules involved in cell adhesion can regulate both early signal transduction events, triggered by...
Molecules involved in cell adhesion can regulate both early signal transduction events, triggered by...