Peter Swoboda

Caenorhabditis eleganscomes of age (2008)

Ceron, Julian, Swoboda, Peter

A report of the European C. elegans 2008 meeting, Seville, Spain, 29 March-2 April 2008.

Identification of novel regulatory factor X (RFX) target genes by comparative genomics in Drosophilaspecies (2007)

Laurençon, Anne, Dubruille, Raphaëlle, Efimenko, Evgeni, Grenier, Guillaume, Bissett, Ryan, Cortier, Elisabeth, ...

Abstract Background Regulatory factor X (RFX) transcription factors play a key role in ciliary assembly in nematode, Drosophila and mouse. Using the tremendous advantages of comparative genomics in...

Identification of ciliary and ciliopathy genes in Caenorhabditis elegansthrough comparative genomics (2006)

Chen, Nansheng, Mah, Allan, Blacque, Oliver E, Chu, Jeffrey, Phgora, Kiran, Bakhoum, Mathieu W, ...

Abstract Background The recent availability of genome sequences of multiple related Caenorhabditis species has made it possible to identify, using comparative genomics, similarly transcribed genes in...

XBX-1 Encodes a Dynein Light Intermediate Chain Required for Retrograde Intraflagellar Transport and Cilia Assembly in Caenorhabditis elegansV⃞

Schafer, Jenny C., Haycraft, Courtney J., Thomas, James H., Yoder, Bradley K., Swoboda, Peter

Intraflagellar transport (IFT) is a process required for flagella and cilia assembly that describes the dynein and kinesin mediated movement of particles along axonemes that consists of an A and a B...

XBX-1 Encodes a Dynein Light Intermediate Chain Required for Retrograde Intraflagellar Transport and Cilia Assembly in Caenorhabditis elegansV⃞

Schafer, Jenny C., Haycraft, Courtney J., Thomas, James H., Yoder, Bradley K., Swoboda, Peter

Intraflagellar transport (IFT) is a process required for flagella and cilia assembly that describes the dynein and kinesin mediated movement of particles along axonemes that consists of an A and a B...

Caenorhabditis elegans DYF-2, an Orthologue of Human WDR19, Is a Component of the Intraflagellar Transport Machinery in Sensory Cilia

Efimenko, Evgeni, Blacque, Oliver E., Ou, Guangshuo, Haycraft, Courtney J., Yoder, Bradley K., Scholey, Jonathan M., ...

The intraflagellar transport (IFT) machinery required to build functional cilia consists of a multisubunit complex whose molecular composition, organization, and function are poorly understood. Here,...

Identification of ciliary and ciliopathy genes in Caenorhabditis elegans through comparative genomics

Chen, Nansheng, Mah, Allan, Blacque, Oliver E, Chu, Jeffrey, Phgora, Kiran, Bakhoum, Mathieu W, ...

Comparative genomic analysis of three nematode species identifies 93 genes that encode putative components of the ciliated neurons in C. elegans and are subject to the same regulatory control.

An Essential Role for DYF-11/MIP-T3 in Assembling Functional Intraflagellar Transport Complexes

Li, Chunmei, Inglis, Peter N., Leitch, Carmen C., Efimenko, Evgeni, Zaghloul, Norann A., Mok, Calvin A., ...

MIP-T3 is a human protein found previously to associate with microtubules and the kinesin-interacting neuronal protein DISC1 (Disrupted-in-Schizophrenia 1), but whose cellular function(s) remains...

Identification of novel regulatory factor X (RFX) target genes by comparative genomics in Drosophila species

Laurençon, Anne, Dubruille, Raphaëlle, Efimenko, Evgeni, Grenier, Guillaume, Bissett, Ryan, Cortier, Elisabeth, ...

An RFX-binding site is shown to be conserved in the promoters of a subset of ciliary genes and a subsequent screen for this site in two Drosophila species identified novel RFX target genes that are...

Caenorhabditis elegans comes of age

Ceron, Julian, Swoboda, Peter

A report of the European C. elegans 2008 meeting, Seville, Spain, 29 March-2 April 2008.