Literature DB >> 24161523

Forward genetics defines Xylt1 as a key, conserved regulator of early chondrocyte maturation and skeletal length.

Emily K Mis1, Karel F Liem, Yong Kong, Nancy B Schwartz, Miriam Domowicz, Scott D Weatherbee.   

Abstract

The long bones of the vertebrate body are built by the initial formation of a cartilage template that is later replaced by mineralized bone. The proliferation and maturation of the skeletal precursor cells (chondrocytes) within the cartilage template and their replacement by bone is a highly coordinated process which, if misregulated, can lead to a number of defects including dwarfism and other skeletal deformities. This is exemplified by the fact that abnormal bone development is one of the most common types of human birth defects. Yet, many of the factors that initiate and regulate chondrocyte maturation are not known. We identified a recessive dwarf mouse mutant (pug) from an N-ethyl-N-nitrosourea (ENU) mutagenesis screen. pug mutant skeletal elements are patterned normally during development, but display a ~20% length reduction compared to wild-type embryos. We show that the pug mutation does not lead to changes in chondrocyte proliferation but instead promotes premature maturation and early ossification, which ultimately leads to disproportionate dwarfism. Using sequence capture and high-throughput sequencing, we identified a missense mutation in the Xylosyltransferase 1 (Xylt1) gene in pug mutants. Xylosyltransferases catalyze the initial step in glycosaminoglycan (GAG) chain addition to proteoglycan core proteins, and these modifications are essential for normal proteoglycan function. We show that the pug mutation disrupts Xylt1 activity and subcellular localization, leading to a reduction in GAG chains in pug mutants. The pug mutant serves as a novel model for mammalian dwarfism and identifies a key role for proteoglycan modification in the initiation of chondrocyte maturation.
© 2013 Published by Elsevier Inc.

Entities:  

Keywords:  CSPGs; Chondrocytes; Dwarfism; Forward genetics; Glycosaminoglycans; HSPGs; Proteoglycans; Skeletal development; Xylt1

Mesh:

Substances:

Year:  2013        PMID: 24161523      PMCID: PMC3895954          DOI: 10.1016/j.ydbio.2013.10.014

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  82 in total

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Journal:  PLoS Biol       Date:  2011-01-18       Impact factor: 8.029

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  23 in total

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4.  Exome sequencing reveals two novel compound heterozygous XYLT1 mutations in a Polish patient with Desbuquois dysplasia type 2 and growth hormone deficiency.

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5.  Xylosyltransferase II is the predominant isoenzyme which is responsible for the steady-state level of xylosyltransferase activity in human serum.

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6.  Joint eQTL assessment of whole blood and dura mater tissue from individuals with Chiari type I malformation.

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Review 7.  Human genetic disorders and knockout mice deficient in glycosaminoglycan.

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8.  The phenotypic and transcriptomic effects of developmental exposure to nanomolar levels of estrone and bisphenol A in zebrafish.

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Review 9.  Chondrodysplasias With Multiple Dislocations Caused by Defects in Glycosaminoglycan Synthesis.

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10.  Wdpcp regulates cellular proliferation and differentiation in the developing limb via hedgehog signaling.

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