Antagonistic and cooperative actions of Kif7 and Sufu define graded intracellular Gli activities in Hedgehog signaling.

Graded Hedgehog (Hh) signaling governs the balance of Gli transcriptional activators and repressors to specify diverse ventral cell fates in the spinal cord. It remains unclear how distinct intracellular Gli activity is generated. Here, we demonstrate that Sufu acts universally as a negative regulat...

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Main Authors: Kelvin King Lo Law, Shigeru Makino, Rong Mo, Xiaoyun Zhang, Vijitha Puviindran, Chi-Chung Hui
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3500354?pdf=render
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spelling doaj-715b9881b2824018aa113715320bd14f2020-11-24T21:39:10ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01711e5019310.1371/journal.pone.0050193Antagonistic and cooperative actions of Kif7 and Sufu define graded intracellular Gli activities in Hedgehog signaling.Kelvin King Lo LawShigeru MakinoRong MoXiaoyun ZhangVijitha PuviindranChi-Chung HuiGraded Hedgehog (Hh) signaling governs the balance of Gli transcriptional activators and repressors to specify diverse ventral cell fates in the spinal cord. It remains unclear how distinct intracellular Gli activity is generated. Here, we demonstrate that Sufu acts universally as a negative regulator of Hh signaling, whereas Kif7 inhibits Gli activity in cooperation with, and independent of, Sufu. Together, they deter naïve precursors from acquiring increasingly ventral identity. We show that Kif7 is also required to establish high intracellular Gli activity by antagonizing the Sufu-inhibition of Gli2. Strikingly, by abolishing the negative regulatory action of Sufu, diverse ventral cell fates can be specified in the absence of extracellular Hh signaling. These data suggest that Sufu is the primary regulator of graded Hh signaling and establish that the antagonistic and cooperative actions of Kif7 and Sufu are responsible for setting up distinct Gli activity in ventral cell fate specification.http://europepmc.org/articles/PMC3500354?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kelvin King Lo Law
Shigeru Makino
Rong Mo
Xiaoyun Zhang
Vijitha Puviindran
Chi-Chung Hui
spellingShingle Kelvin King Lo Law
Shigeru Makino
Rong Mo
Xiaoyun Zhang
Vijitha Puviindran
Chi-Chung Hui
Antagonistic and cooperative actions of Kif7 and Sufu define graded intracellular Gli activities in Hedgehog signaling.
PLoS ONE
author_facet Kelvin King Lo Law
Shigeru Makino
Rong Mo
Xiaoyun Zhang
Vijitha Puviindran
Chi-Chung Hui
author_sort Kelvin King Lo Law
title Antagonistic and cooperative actions of Kif7 and Sufu define graded intracellular Gli activities in Hedgehog signaling.
title_short Antagonistic and cooperative actions of Kif7 and Sufu define graded intracellular Gli activities in Hedgehog signaling.
title_full Antagonistic and cooperative actions of Kif7 and Sufu define graded intracellular Gli activities in Hedgehog signaling.
title_fullStr Antagonistic and cooperative actions of Kif7 and Sufu define graded intracellular Gli activities in Hedgehog signaling.
title_full_unstemmed Antagonistic and cooperative actions of Kif7 and Sufu define graded intracellular Gli activities in Hedgehog signaling.
title_sort antagonistic and cooperative actions of kif7 and sufu define graded intracellular gli activities in hedgehog signaling.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Graded Hedgehog (Hh) signaling governs the balance of Gli transcriptional activators and repressors to specify diverse ventral cell fates in the spinal cord. It remains unclear how distinct intracellular Gli activity is generated. Here, we demonstrate that Sufu acts universally as a negative regulator of Hh signaling, whereas Kif7 inhibits Gli activity in cooperation with, and independent of, Sufu. Together, they deter naïve precursors from acquiring increasingly ventral identity. We show that Kif7 is also required to establish high intracellular Gli activity by antagonizing the Sufu-inhibition of Gli2. Strikingly, by abolishing the negative regulatory action of Sufu, diverse ventral cell fates can be specified in the absence of extracellular Hh signaling. These data suggest that Sufu is the primary regulator of graded Hh signaling and establish that the antagonistic and cooperative actions of Kif7 and Sufu are responsible for setting up distinct Gli activity in ventral cell fate specification.
url http://europepmc.org/articles/PMC3500354?pdf=render
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