EXCEED THE SPACE PROVIDED. The long-term goal of my laboratory is to understand how Hedgehog (Hh) signal is transduced to control a wild variety of cellular behaviors. Hh family of secreted proteins controls many aspects of animal development. Malfunction of Hh signaling has been linked to numerous human disorders including cancers. Hh family members exert their biological influence through an evolutionarily conserved, yet poorly defined signal transduction cascade. A critical step in Hh signal transduction is the activation of Cubitus interruptus (Ci), which is regulated by large protein complexes containing the kinesin-related protein Costal2 (Cos2). We have developed a novel method for detecting Cos2 interacting proteins in vivo and have identified several novel components of Cos2/Ci complexes. In the proposed study, we will use a combination of genetic, biochemical, cellular, and pharmacological approaches to investigate the mechanisms by which Cos2 and its interacting proteins regulate Ci phosphorylation, activity, and subcellular localization. In particular, we plan to 1) investigate the mechanism by which distinct Cos2 complexes regulate Ci nuclear translocation; 2) study the role and regulation of GSK3/Cos2 interaction in Ci phosphorylation; 3) investigate the role of casein kinase I (CKI) in Hh signaling and the underlying mechanism; 4) determine the role of a novel Cos2 interacting protein, Koro, and identify and characterize additional Cos2 interacting proteins that regulate Ci activity. Knowledge gained from the proposed study shall shed light into how Hh signal is transduced to control cell growth and patterning, and may provide new avenues for diagnosis and therapeutic intervention of cancers caused by mis-regulation of Hh signaling activity. PERFORMANCE SITE ========================================Section End===========================================

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM067045-03
Application #
6835203
Study Section
Cell Development and Function Integrated Review Group (CDF)
Program Officer
Haynes, Susan R
Project Start
2003-01-01
Project End
2006-12-31
Budget Start
2005-01-01
Budget End
2005-12-31
Support Year
3
Fiscal Year
2005
Total Cost
$312,000
Indirect Cost
Name
University of Texas Sw Medical Center Dallas
Department
Pharmacology
Type
Schools of Medicine
DUNS #
800771545
City
Dallas
State
TX
Country
United States
Zip Code
75390
Han, Yuhong; Xiong, Yue; Shi, Xuanming et al. (2017) Regulation of Gli ciliary localization and Hedgehog signaling by the PY-NLS/karyopherin-?2 nuclear import system. PLoS Biol 15:e2002063
Jiang, Jin (2017) CK1 in Developmental Signaling: Hedgehog and Wnt. Curr Top Dev Biol 123:303-329
Chen, Ping; Zhou, Zizhang; Yao, Xia et al. (2017) Capping Enzyme mRNA-cap/RNGTT Regulates Hedgehog Pathway Activity by Antagonizing Protein Kinase A. Sci Rep 7:2891
Ma, Guoqiang; Li, Shuang; Han, Yuhong et al. (2016) Regulation of Smoothened Trafficking and Hedgehog Signaling by the SUMO Pathway. Dev Cell 39:438-451
Li, Shuangxi; Li, Shuang; Han, Yuhong et al. (2016) Regulation of Smoothened Phosphorylation and High-Level Hedgehog Signaling Activity by a Plasma Membrane Associated Kinase. PLoS Biol 14:e1002481
Han, Yuhong; Shi, Qing; Jiang, Jin (2015) Multisite interaction with Sufu regulates Ci/Gli activity through distinct mechanisms in Hh signal transduction. Proc Natl Acad Sci U S A 112:6383-8
Tian, Aiguo; Shi, Qing; Jiang, Alice et al. (2015) Injury-stimulated Hedgehog signaling promotes regenerative proliferation of Drosophila intestinal stem cells. J Cell Biol 208:807-19
Zhou, Zizhang; Yao, Xia; Li, Shuang et al. (2015) Deubiquitination of Ci/Gli by Usp7/HAUSP Regulates Hedgehog Signaling. Dev Cell 34:58-72
Li, S; Jiang, C; Pan, J et al. (2015) Regulation of c-Myc protein stability by proteasome activator REG?. Cell Death Differ 22:1000-11
Jiang, Kai; Liu, Yajuan; Fan, Junkai et al. (2014) Hedgehog-regulated atypical PKC promotes phosphorylation and activation of Smoothened and Cubitus interruptus in Drosophila. Proc Natl Acad Sci U S A 111:E4842-50

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