Sphingolipid metabolism and its role in the skeletal tissues

被引:0
作者
Zohreh Khavandgar
Monzur Murshed
机构
[1] McGill University,Faculty of Dentistry
[2] McGill University,Department of Medicine
[3] McGill University,Shriners Hospital for Children
来源
Cellular and Molecular Life Sciences | 2015年 / 72卷
关键词
Sphingolipids; SMPD3; Neutral sphingomyelinase; Ceramide; Phosphocholine; Sphingosine 1 phosphate; Matrix vesicles; Skeletal development; Bone mineralization;
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中图分类号
学科分类号
摘要
The regulators affecting skeletal tissue formation and its maintenance include a wide array of molecules with very diverse functions. More recently, sphingolipids have been added to this growing list of regulatory molecules in the skeletal tissues. Sphingolipids are integral parts of various lipid membranes present in the cells and organelles. For a long time, these macromolecules were considered as inert structural elements. This view, however, has radically changed in recent years as sphingolipids are now recognized as important second messengers for signal-transduction pathways that affect cell growth, differentiation, stress responses and programmed death. In the current review, we discuss the available data showing the roles of various sphingolipids in three different skeletal cell types—chondrocytes in cartilage and osteoblasts and osteoclasts in bone. We provide an overview of the biology of sphingomyelin phosphodiesterase 3 (SMPD3), an important regulator of sphingolipid metabolism in the skeleton. SMPD3 is localized in the plasma membrane and has been shown to cleave sphingomyelin to generate ceramide, a bioactive lipid second messenger, and phosphocholine, an essential nutrient. SMPD3 deficiency in mice impairs the mineralization in both cartilage and bone extracellular matrices leading to severe skeletal deformities. A detailed understanding of SMPD3 function may provide a novel insight on the role of sphingolipids in the skeletal tissues.
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页码:959 / 969
页数:10
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  • [1] Horton WA(2009)FGFs in endochondral skeletal development Trends Endocrinol Metab 20 341-348
  • [2] Degnin CR(2011)Bone endocrine regulation of energy metabolism and male reproduction C R Biol 334 720-724
  • [3] Karsenty G(2003)The complexities of skeletal biology Nature 423 316-318
  • [4] Karsenty G(2009)Genetic control of bone formation Annu Rev Cell Dev Biol 25 629-648
  • [5] Karsenty G(2011)The skeleton: a multi-functional complex organ: the growth plate chondrocyte and endochondral ossification J Endocrinol 211 109-121
  • [6] Kronenberg HM(2009)Sox9 family members negatively regulate maturation and calcification of chondrocytes through up-regulation of parathyroid hormone-related protein Mol Biol Cell 20 4541-4551
  • [7] Settembre C(1996)Programmed cell death of chondrocytes and aberrant chondrogenesis in mice homozygous for parathyroid hormone-related peptide gene deletion Endocrinology 137 5055-5067
  • [8] Mackie EJ(2010)FGFs in endochondral skeletal development J Cell Biochem 110 1046-1057
  • [9] Tatarczuch L(1997)Osf2/Cbfa1: a transcriptional activator of osteoblast differentiation Cell 89 747-754
  • [10] Mirams M(1997)Targeted disruption of Cbfa1 results in a complete lack of bone formation owing to maturational arrest of osteoblasts Cell 89 755-764