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C. elegans serine-threonine kinase KIN-29 modulates TGFβ signaling and regulates body size formation

BACKGROUND: In C. elegans there are two well-defined TGFβ-like signaling pathways. The Sma/Mab pathway affects body size morphogenesis, male tail development and spicule formation while the Daf pathway regulates entry into and exit out of the dauer state. To identify additional factors that modulate...

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Autores principales: Maduzia, Lisa L, Roberts, Andrew F, Wang, Huang, Lin, Xia, Chin, Lena J, Zimmerman, Cole M, Cohen, Stephen, Feng, Xin-Hua, Padgett, Richard W
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1112587/
https://www.ncbi.nlm.nih.gov/pubmed/15840165
http://dx.doi.org/10.1186/1471-213X-5-8
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author Maduzia, Lisa L
Roberts, Andrew F
Wang, Huang
Lin, Xia
Chin, Lena J
Zimmerman, Cole M
Cohen, Stephen
Feng, Xin-Hua
Padgett, Richard W
author_facet Maduzia, Lisa L
Roberts, Andrew F
Wang, Huang
Lin, Xia
Chin, Lena J
Zimmerman, Cole M
Cohen, Stephen
Feng, Xin-Hua
Padgett, Richard W
author_sort Maduzia, Lisa L
collection PubMed
description BACKGROUND: In C. elegans there are two well-defined TGFβ-like signaling pathways. The Sma/Mab pathway affects body size morphogenesis, male tail development and spicule formation while the Daf pathway regulates entry into and exit out of the dauer state. To identify additional factors that modulate TGFβ signaling in the Sma/Mab pathway, we have undertaken a genetic screen for small animals and have identified kin-29. RESULTS: kin-29 encodes a protein with a cytoplasmic serine-threonine kinase and a novel C-terminal domain. The kinase domain is a distantly related member of the EMK (ELKL motif kinase) family, which interacts with microtubules. We show that the serine-threonine kinase domain has in vitro activity. kin-29 mutations result in small animals, but do not affect male tail morphology as do several of the Sma/Mab signal transducers. Adult worms are smaller than the wild-type, but also develop more slowly. Rescue by kin-29 is achieved by expression in neurons or in the hypodermis. Interaction with the dauer pathway is observed in double mutant combinations, which have been seen with Sma/Mab pathway mutants. We show that kin-29 is epistatic to the ligand dbl-1, and lies upstream of the Sma/Mab pathway target gene, lon-1. CONCLUSION: kin-29 is a new modulator of the Sma/Mab pathway. It functions in neurons and in the hypodermis to regulate body size, but does not affect all TGFβ outputs, such as tail morphogenesis.
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spelling pubmed-11125872005-05-14 C. elegans serine-threonine kinase KIN-29 modulates TGFβ signaling and regulates body size formation Maduzia, Lisa L Roberts, Andrew F Wang, Huang Lin, Xia Chin, Lena J Zimmerman, Cole M Cohen, Stephen Feng, Xin-Hua Padgett, Richard W BMC Dev Biol Research Article BACKGROUND: In C. elegans there are two well-defined TGFβ-like signaling pathways. The Sma/Mab pathway affects body size morphogenesis, male tail development and spicule formation while the Daf pathway regulates entry into and exit out of the dauer state. To identify additional factors that modulate TGFβ signaling in the Sma/Mab pathway, we have undertaken a genetic screen for small animals and have identified kin-29. RESULTS: kin-29 encodes a protein with a cytoplasmic serine-threonine kinase and a novel C-terminal domain. The kinase domain is a distantly related member of the EMK (ELKL motif kinase) family, which interacts with microtubules. We show that the serine-threonine kinase domain has in vitro activity. kin-29 mutations result in small animals, but do not affect male tail morphology as do several of the Sma/Mab signal transducers. Adult worms are smaller than the wild-type, but also develop more slowly. Rescue by kin-29 is achieved by expression in neurons or in the hypodermis. Interaction with the dauer pathway is observed in double mutant combinations, which have been seen with Sma/Mab pathway mutants. We show that kin-29 is epistatic to the ligand dbl-1, and lies upstream of the Sma/Mab pathway target gene, lon-1. CONCLUSION: kin-29 is a new modulator of the Sma/Mab pathway. It functions in neurons and in the hypodermis to regulate body size, but does not affect all TGFβ outputs, such as tail morphogenesis. BioMed Central 2005-04-19 /pmc/articles/PMC1112587/ /pubmed/15840165 http://dx.doi.org/10.1186/1471-213X-5-8 Text en Copyright © 2005 Maduzial et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Maduzia, Lisa L
Roberts, Andrew F
Wang, Huang
Lin, Xia
Chin, Lena J
Zimmerman, Cole M
Cohen, Stephen
Feng, Xin-Hua
Padgett, Richard W
C. elegans serine-threonine kinase KIN-29 modulates TGFβ signaling and regulates body size formation
title C. elegans serine-threonine kinase KIN-29 modulates TGFβ signaling and regulates body size formation
title_full C. elegans serine-threonine kinase KIN-29 modulates TGFβ signaling and regulates body size formation
title_fullStr C. elegans serine-threonine kinase KIN-29 modulates TGFβ signaling and regulates body size formation
title_full_unstemmed C. elegans serine-threonine kinase KIN-29 modulates TGFβ signaling and regulates body size formation
title_short C. elegans serine-threonine kinase KIN-29 modulates TGFβ signaling and regulates body size formation
title_sort c. elegans serine-threonine kinase kin-29 modulates tgfβ signaling and regulates body size formation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1112587/
https://www.ncbi.nlm.nih.gov/pubmed/15840165
http://dx.doi.org/10.1186/1471-213X-5-8
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