Cargando…

Mutations in fam20b and xylt1 Reveal That Cartilage Matrix Controls Timing of Endochondral Ossification by Inhibiting Chondrocyte Maturation

Differentiating cells interact with their extracellular environment over time. Chondrocytes embed themselves in a proteoglycan (PG)-rich matrix, then undergo a developmental transition, termed “maturation,” when they express ihh to induce bone in the overlying tissue, the perichondrium. Here, we ask...

Descripción completa

Detalles Bibliográficos
Autores principales: Eames, B. Frank, Yan, Yi-Lin, Swartz, Mary E., Levic, Daniel S., Knapik, Ela W., Postlethwait, John H., Kimmel, Charles B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3161922/
https://www.ncbi.nlm.nih.gov/pubmed/21901110
http://dx.doi.org/10.1371/journal.pgen.1002246
_version_ 1782210757935497216
author Eames, B. Frank
Yan, Yi-Lin
Swartz, Mary E.
Levic, Daniel S.
Knapik, Ela W.
Postlethwait, John H.
Kimmel, Charles B.
author_facet Eames, B. Frank
Yan, Yi-Lin
Swartz, Mary E.
Levic, Daniel S.
Knapik, Ela W.
Postlethwait, John H.
Kimmel, Charles B.
author_sort Eames, B. Frank
collection PubMed
description Differentiating cells interact with their extracellular environment over time. Chondrocytes embed themselves in a proteoglycan (PG)-rich matrix, then undergo a developmental transition, termed “maturation,” when they express ihh to induce bone in the overlying tissue, the perichondrium. Here, we ask whether PGs regulate interactions between chondrocytes and perichondrium, using zebrafish mutants to reveal that cartilage PGs inhibit chondrocyte maturation, which ultimately dictates the timing of perichondral bone development. In a mutagenesis screen, we isolated a class of mutants with decreased cartilage matrix and increased perichondral bone. Positional cloning identified lesions in two genes, fam20b and xylosyltransferase1 (xylt1), both of which encode PG synthesis enzymes. Mutants failed to produce wild-type levels of chondroitin sulfate PGs, which are normally abundant in cartilage matrix, and initiated perichondral bone formation earlier than their wild-type siblings. Primary chondrocyte defects might induce the bone phenotype secondarily, because mutant chondrocytes precociously initiated maturation, showing increased and early expression of such markers as runx2b, collagen type 10a1, and ihh co-orthologs, and ihha mutation suppressed early perichondral bone in PG mutants. Ultrastructural analyses demonstrated aberrant matrix organization and also early cellular features of chondrocyte hypertrophy in mutants. Refining previous in vitro reports, which demonstrated that fam20b and xylt1 were involved in PG synthesis, our in vivo analyses reveal that these genes function in cartilage matrix production and ultimately regulate the timing of skeletal development.
format Online
Article
Text
id pubmed-3161922
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31619222011-09-07 Mutations in fam20b and xylt1 Reveal That Cartilage Matrix Controls Timing of Endochondral Ossification by Inhibiting Chondrocyte Maturation Eames, B. Frank Yan, Yi-Lin Swartz, Mary E. Levic, Daniel S. Knapik, Ela W. Postlethwait, John H. Kimmel, Charles B. PLoS Genet Research Article Differentiating cells interact with their extracellular environment over time. Chondrocytes embed themselves in a proteoglycan (PG)-rich matrix, then undergo a developmental transition, termed “maturation,” when they express ihh to induce bone in the overlying tissue, the perichondrium. Here, we ask whether PGs regulate interactions between chondrocytes and perichondrium, using zebrafish mutants to reveal that cartilage PGs inhibit chondrocyte maturation, which ultimately dictates the timing of perichondral bone development. In a mutagenesis screen, we isolated a class of mutants with decreased cartilage matrix and increased perichondral bone. Positional cloning identified lesions in two genes, fam20b and xylosyltransferase1 (xylt1), both of which encode PG synthesis enzymes. Mutants failed to produce wild-type levels of chondroitin sulfate PGs, which are normally abundant in cartilage matrix, and initiated perichondral bone formation earlier than their wild-type siblings. Primary chondrocyte defects might induce the bone phenotype secondarily, because mutant chondrocytes precociously initiated maturation, showing increased and early expression of such markers as runx2b, collagen type 10a1, and ihh co-orthologs, and ihha mutation suppressed early perichondral bone in PG mutants. Ultrastructural analyses demonstrated aberrant matrix organization and also early cellular features of chondrocyte hypertrophy in mutants. Refining previous in vitro reports, which demonstrated that fam20b and xylt1 were involved in PG synthesis, our in vivo analyses reveal that these genes function in cartilage matrix production and ultimately regulate the timing of skeletal development. Public Library of Science 2011-08-25 /pmc/articles/PMC3161922/ /pubmed/21901110 http://dx.doi.org/10.1371/journal.pgen.1002246 Text en Eames et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Eames, B. Frank
Yan, Yi-Lin
Swartz, Mary E.
Levic, Daniel S.
Knapik, Ela W.
Postlethwait, John H.
Kimmel, Charles B.
Mutations in fam20b and xylt1 Reveal That Cartilage Matrix Controls Timing of Endochondral Ossification by Inhibiting Chondrocyte Maturation
title Mutations in fam20b and xylt1 Reveal That Cartilage Matrix Controls Timing of Endochondral Ossification by Inhibiting Chondrocyte Maturation
title_full Mutations in fam20b and xylt1 Reveal That Cartilage Matrix Controls Timing of Endochondral Ossification by Inhibiting Chondrocyte Maturation
title_fullStr Mutations in fam20b and xylt1 Reveal That Cartilage Matrix Controls Timing of Endochondral Ossification by Inhibiting Chondrocyte Maturation
title_full_unstemmed Mutations in fam20b and xylt1 Reveal That Cartilage Matrix Controls Timing of Endochondral Ossification by Inhibiting Chondrocyte Maturation
title_short Mutations in fam20b and xylt1 Reveal That Cartilage Matrix Controls Timing of Endochondral Ossification by Inhibiting Chondrocyte Maturation
title_sort mutations in fam20b and xylt1 reveal that cartilage matrix controls timing of endochondral ossification by inhibiting chondrocyte maturation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3161922/
https://www.ncbi.nlm.nih.gov/pubmed/21901110
http://dx.doi.org/10.1371/journal.pgen.1002246
work_keys_str_mv AT eamesbfrank mutationsinfam20bandxylt1revealthatcartilagematrixcontrolstimingofendochondralossificationbyinhibitingchondrocytematuration
AT yanyilin mutationsinfam20bandxylt1revealthatcartilagematrixcontrolstimingofendochondralossificationbyinhibitingchondrocytematuration
AT swartzmarye mutationsinfam20bandxylt1revealthatcartilagematrixcontrolstimingofendochondralossificationbyinhibitingchondrocytematuration
AT levicdaniels mutationsinfam20bandxylt1revealthatcartilagematrixcontrolstimingofendochondralossificationbyinhibitingchondrocytematuration
AT knapikelaw mutationsinfam20bandxylt1revealthatcartilagematrixcontrolstimingofendochondralossificationbyinhibitingchondrocytematuration
AT postlethwaitjohnh mutationsinfam20bandxylt1revealthatcartilagematrixcontrolstimingofendochondralossificationbyinhibitingchondrocytematuration
AT kimmelcharlesb mutationsinfam20bandxylt1revealthatcartilagematrixcontrolstimingofendochondralossificationbyinhibitingchondrocytematuration