An essential role for IGF2 in cartilage development and glucose metabolism during postnatal long bone growth
Author(s) -
Tomoya Uchimura,
Judith M. Hollander,
Daisy S. Nakamura,
Zhiyi Liu,
Clifford J. Rosen,
Irene Georgakoudi,
Li Zeng
Publication year - 2017
Publication title -
development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.15
H-Index - 36
eISSN - 1477-9129
pISSN - 0950-1991
DOI - 10.1242/dev.155598
Subject(s) - biology , cartilage , endocrinology , chondrocyte , bone growth , carbohydrate metabolism , endochondral ossification , medicine , microbiology and biotechnology , bone remodeling , phenotype , developmental biology , genetics , anatomy , gene
Postnatal bone growth involves a dramatic increase in length and girth. Intriguingly, this period of growth is independent of growth hormone and the underlying mechanism is poorly understood. Recently, an IGF2 mutation was identified in humans with early postnatal growth restriction. Here, we show that IGF2 is essential for longitudinal and appositional murine postnatal bone development, which involves proper timing of chondrocyte maturation and perichondrial cell differentiation and survival. Importantly, the Igf2 null mouse model does not represent a simple delay of growth but instead uncoordinated growth plate development. Furthermore, biochemical and two-photon imaging analyses identified elevated and imbalanced glucose metabolism in the Igf2 null mouse. Attenuation of glycolysis rescued the mutant phenotype of premature cartilage maturation, thereby indicating that IGF2 controls bone growth by regulating glucose metabolism in chondrocytes. This work links glucose metabolism with cartilage development and provides insight into the fundamental understanding of human growth abnormalities.
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