Literature DB >> 29411103

Ultrastructure and biological function of matrix vesicles in bone mineralization.

Tomoka Hasegawa1.   

Abstract

Bone mineralization is initiated by matrix vesicles, small extracellular vesicles secreted by osteoblasts, inducing the nucleation and subsequent growth of calcium phosphate crystals inside. Although calcium ions (Ca2+) are abundant throughout the tissue fluid close to the matrix vesicles, the influx of phosphate ions (PO43-) into matrix vesicles is a critical process mediated by several enzymes and transporters such as ecto-nucleotide pyrophosphatase/phosphodiesterase 1 (ENPP1), ankylosis (ANK), and tissue nonspecific alkaline phosphatase (TNSALP). The catalytic activity of ENPP1 in osteoblasts generates inorganic pyrophosphate (PPi) intracellularly and extracellularly, and ANK may allow the intracellular PPi to pass through the plasma membrane to the outside of the osteoblasts. Although the extracellular PPi binds to growing hydroxyapatite crystals to prevent crystal overgrowth, TNSALP on the osteoblasts and matrix vesicles hydrolyzes PPi into PO43- monomers: the prevention of crystal growth is blocked, and PO43- monomers are supplied to matrix vesicles. In addition, PHOSPHO1 is thought to function inside matrix vesicles to catalyze phosphocoline, a constituent of the plasma membrane, consequently increasing PO43- in the vesicles. Accumulation of Ca2+ and PO43- inside the matrix vesicles then initiates crystalline nucleation associated with the inner leaflet of the matrix vesicles. Calcium phosphate crystals elongate radially, penetrate the matrix vesicle's membrane, and finally grow out of the vesicles to form calcifying nodules, globular assemblies of needle-shaped mineral crystals retaining some of those transporters and enzymes. The subsequent growth of calcifying nodules appears to be regulated by surrounding organic compounds, finally leading to collagen mineralization.

Entities:  

Keywords:  Calcifying nodule; ENPP1; Matrix vesicle; Mineralization; TNSALP

Mesh:

Substances:

Year:  2018        PMID: 29411103     DOI: 10.1007/s00418-018-1646-0

Source DB:  PubMed          Journal:  Histochem Cell Biol        ISSN: 0948-6143            Impact factor:   4.304


  65 in total

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Journal:  Science       Date:  2000-07-14       Impact factor: 47.728

5.  Safety and efficacy of treatment with asfotase alfa in patients with hypophosphatasia: Results from a Japanese clinical trial.

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Journal:  Clin Endocrinol (Oxf)       Date:  2017-05-02       Impact factor: 3.478

6.  The nucleoside triphosphate pyrophosphohydrolase isozyme PC-1 directly promotes cartilage calcification through chondrocyte apoptosis and increased calcium precipitation by mineralizing vesicles.

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7.  Mutations in ENPP1 are associated with 'idiopathic' infantile arterial calcification.

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9.  Mutation in Npps in a mouse model of ossification of the posterior longitudinal ligament of the spine.

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Journal:  Arthritis Rheum       Date:  1994-06
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  24 in total

Review 1.  Role of Phosphate in Biomineralization.

Authors:  Sanjay Kumar Bhadada; Sudhaker D Rao
Journal:  Calcif Tissue Int       Date:  2020-07-25       Impact factor: 4.333

2.  In focus in HCB: Hard Tissue Biology.

Authors:  Norio Amizuka; Sohei Kitazawa
Journal:  Histochem Cell Biol       Date:  2018-03-06       Impact factor: 4.304

3.  Osteocytic Osteolysis in PTH-treated Wild-type and Rankl-/- Mice Examined by Transmission Electron Microscopy, Atomic Force Microscopy, and Isotope Microscopy.

Authors:  Hiromi Hongo; Tomoka Hasegawa; Masami Saito; Kanako Tsuboi; Tomomaya Yamamoto; Muneteru Sasaki; Miki Abe; Paulo Henrique Luiz de Freitas; Hisayoshi Yurimoto; Nobuyuki Udagawa; Minqi Li; Norio Amizuka
Journal:  J Histochem Cytochem       Date:  2020-09-18       Impact factor: 2.479

Review 4.  Skeletal and extraskeletal disorders of biomineralization.

Authors:  Michael T Collins; Gemma Marcucci; Hans-Joachim Anders; Giovanni Beltrami; Jane A Cauley; Peter R Ebeling; Rajiv Kumar; Agnès Linglart; Luca Sangiorgi; Dwight A Towler; Ria Weston; Michael P Whyte; Maria Luisa Brandi; Bart Clarke; Rajesh V Thakker
Journal:  Nat Rev Endocrinol       Date:  2022-05-16       Impact factor: 47.564

Review 5.  Phylogeny and chemistry of biological mineral transport.

Authors:  Paul H Schlesinger; Demetrios T Braddock; Quitterie C Larrouture; Evan C Ray; Vladimir Riazanski; Deborah J Nelson; Irina L Tourkova; Harry C Blair
Journal:  Bone       Date:  2020-08-26       Impact factor: 4.398

Review 6.  Multiple Pathways for Pathological Calcification in the Human Body.

Authors:  Netta Vidavsky; Jennie A M R Kunitake; Lara A Estroff
Journal:  Adv Healthc Mater       Date:  2020-12-04       Impact factor: 9.933

7.  Alendronate loaded graphene oxide functionalized collagen sponge for the dual effects of osteogenesis and anti-osteoclastogenesis in osteoporotic rats.

Authors:  Yuyang Zeng; Muran Zhou; Lifeng Chen; Huimin Fang; Shaokai Liu; Chuchao Zhou; Jiaming Sun; Zhenxing Wang
Journal:  Bioact Mater       Date:  2020-06-25

8.  Osteoblastic lysosome plays a central role in mineralization.

Authors:  Tomoaki Iwayama; Tomoko Okada; Tsugumi Ueda; Kiwako Tomita; Shuji Matsumoto; Masahide Takedachi; Satoshi Wakisaka; Takeshi Noda; Taku Ogura; Tomomichi Okano; Peter Fratzl; Toshihiko Ogura; Shinya Murakami
Journal:  Sci Adv       Date:  2019-07-03       Impact factor: 14.136

Review 9.  The Role of Exosomes in Bone Remodeling: Implications for Bone Physiology and Disease.

Authors:  Christos Masaoutis; Stamatios Theocharis
Journal:  Dis Markers       Date:  2019-08-14       Impact factor: 3.434

10.  Early crestal bone loss: Is it really loss?

Authors:  Algirdas Puisys; Viktorija Auzbikaviciute; Agne Minkauskaite; Renata Simkunaite-Rizgeliene; Dainius Razukevicius; Rokas Linkevicius; Tomas Linkevicius
Journal:  Clin Case Rep       Date:  2019-08-27
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