The long-term goal of this research is to understand the mechanisms eukaryotic cells use to regulate the assembly of cilia and flagella. The flagella of Chlamydomonas are maintained at a constant length, but mutations in four different genes: LF1, LF2, LF3 and LF4, cause the cells to lose control of assembly and grow flagella up to three times normal length. Two of these genes encode members of well-studied gene families: a MAP kinase and a kinase of the CDK family. Analysis of the four LF genes leads to the conclusion that LF4, a novel MAP kinase, acts to enforce flagellar length control by shortening the flagella. LF1, LF2 and LF3 appear to act together to regulate length, perhaps by regulating retrograde intraflagellar transport (IFT). During the next project period the specific aims of this project will address the following questions:l) What proteins regulate the MAP kinase enzyme encoded by the LF4 gene, and what proteins does LF4p phosphorylate? 2) How do the proteins in the putative LF1/LF2/LF3 cytoplasmic complex interact, and how does this complex regulate the LF2 protein kinase? 3) What are the protein substrates of the LF2 protein kinase and how does phosphorylation of these targets regulate flagellar length? 4) Do the long-flagella mutants show alterations in intraflagellar transport (IFT)? Cilia and flagella have long been known to play key roles in processes that involve the movement of fluids over surfaces or the movement of cells through fluids. More recently it has become clear that cilia and flagella have critical functions early in development. Defects in the assembly of cilia and flagella have been connected to polycystic kidney disease retinal degeneration, situs inversus, and other problems in mammalian development. Understanding the regulation of flagellar assembly in Chlamydomonas provides a powerful model for understanding this assembly in mammalian systems.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
2R01GM034437-17A2
Application #
6867285
Study Section
Cell Development and Function Integrated Review Group (CDF)
Program Officer
Rodewald, Richard D
Project Start
1984-12-01
Project End
2008-08-31
Budget Start
2004-09-30
Budget End
2005-08-31
Support Year
17
Fiscal Year
2004
Total Cost
$291,665
Indirect Cost
Name
University of Minnesota Twin Cities
Department
Genetics
Type
Schools of Arts and Sciences
DUNS #
555917996
City
Minneapolis
State
MN
Country
United States
Zip Code
55455
Tam, Lai-Wa; Ranum, Paul T; Lefebvre, Paul A (2013) CDKL5 regulates flagellar length and localizes to the base of the flagella in Chlamydomonas. Mol Biol Cell 24:588-600
Silflow, Carolyn D; Sun, Xiaoqing; Haas, Nancy A et al. (2011) The Hsp70 and Hsp40 chaperones influence microtubule stability in Chlamydomonas. Genetics 189:1249-60
Wilson, Nedra F; Iyer, Janaki Kannan; Buchheim, Julie A et al. (2008) Regulation of flagellar length in Chlamydomonas. Semin Cell Dev Biol 19:494-501
Camargo, Antonio; Llamas, Angel; Schnell, Rogene A et al. (2007) Nitrate signaling by the regulatory gene NIT2 in Chlamydomonas. Plant Cell 19:3491-503
Tam, Lai-Wa; Wilson, Nedra F; Lefebvre, Paul A (2007) A CDK-related kinase regulates the length and assembly of flagella in Chlamydomonas. J Cell Biol 176:819-29
Nguyen, Rachel L; Tam, Lai-Wa; Lefebvre, Paul A (2005) The LF1 gene of Chlamydomonas reinhardtii encodes a novel protein required for flagellar length control. Genetics 169:1415-24
Wilson, Nedra F; Lefebvre, Paul A (2004) Regulation of flagellar assembly by glycogen synthase kinase 3 in Chlamydomonas reinhardtii. Eukaryot Cell 3:1307-19
Matsuura, Kumi; Lefebvre, Paul A; Kamiya, Ritsu et al. (2004) Bld10p, a novel protein essential for basal body assembly in Chlamydomonas: localization to the cartwheel, the first ninefold symmetrical structure appearing during assembly. J Cell Biol 165:663-71
Berman, Steven A; Wilson, Nedra F; Haas, Nancy A et al. (2003) A novel MAP kinase regulates flagellar length in Chlamydomonas. Curr Biol 13:1145-9
Kathir, Pushpa; LaVoie, Matthew; Brazelton, William J et al. (2003) Molecular map of the Chlamydomonas reinhardtii nuclear genome. Eukaryot Cell 2:362-79

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