Literature DB >> 18425565

Osteoclast cell fusion: mechanisms and molecules.

Masaru Ishii1, Yukihiko Saeki.   

Abstract

Osteoclasts are bone-resorbing multinuclear polykaryon that are essential for bone remodeling and are formed through cell fusion of mononuclear macrophage/monocyte-lineage hematopoietic precursors. In arthritic joints, a large number of activated osteoclasts can be detected, which are suggested to be causative of bone erosion in rheumatoid arthritis. It has been fully established that osteoclastogenesis is critically regulated by several key essential factors, such as M-CSF and RANKL. However, regarding their most characteristic property, i.e., cell fusion to form giant polykaryons, there are still miscellaneous questions to be clarified, although several molecules have been shown to be critically involved in this process. Here we review the latest knowledge about osteoclastogenic cell fusion and novel concepts underlying the characteristic phenomenon. Because cell fusion is a genuine property of mature osteoclasts, modulating this process will become a promising therapeutic tool for bone resorptive disorders in the future.

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Year:  2008        PMID: 18425565     DOI: 10.1007/s10165-008-0051-2

Source DB:  PubMed          Journal:  Mod Rheumatol        ISSN: 1439-7595            Impact factor:   3.023


  26 in total

1.  Fusogenic micropeptide Myomixer is essential for satellite cell fusion and muscle regeneration.

Authors:  Pengpeng Bi; John R McAnally; John M Shelton; Efrain Sánchez-Ortiz; Rhonda Bassel-Duby; Eric N Olson
Journal:  Proc Natl Acad Sci U S A       Date:  2018-03-26       Impact factor: 11.205

Review 2.  The regulatory role of Myomaker and Myomixer-Myomerger-Minion in muscle development and regeneration.

Authors:  Bide Chen; Wenjing You; Yizhen Wang; Tizhong Shan
Journal:  Cell Mol Life Sci       Date:  2019-10-23       Impact factor: 9.261

3.  Resolvin E1 regulates osteoclast fusion via DC-STAMP and NFATc1.

Authors:  Min Zhu; Thomas E Van Dyke; Robert Gyurko
Journal:  FASEB J       Date:  2013-04-29       Impact factor: 5.191

Review 4.  Invadosomes are coming: new insights into function and disease relevance.

Authors:  Elyse K Paterson; Sara A Courtneidge
Journal:  FEBS J       Date:  2017-06-22       Impact factor: 5.542

5.  Malfunction of bone marrow-derived osteoclasts and the delay of bone fracture healing in diabetic mice.

Authors:  Toshiyuki Kasahara; Sinji Imai; Hideto Kojima; Miwako Katagi; Hiroshi Kimura; Lawrence Chan; Yoshitaka Matsusue
Journal:  Bone       Date:  2010-06-19       Impact factor: 4.398

6.  Skeleton-secreted PDGF-BB mediates arterial stiffening.

Authors:  Lakshmi Santhanam; Guanqiao Liu; Sandeep Jandu; Weiping Su; Bulouere P Wodu; William Savage; Alan Poe; Xiaonan Liu; Lacy M Alexander; Xu Cao; Mei Wan
Journal:  J Clin Invest       Date:  2021-10-15       Impact factor: 19.456

7.  Osteoclast fusion and regulation by RANKL-dependent and independent factors.

Authors:  Lianping Xing; Yan Xiu; Brendan F Boyce
Journal:  World J Orthop       Date:  2012-12-18

8.  Breast cancer-derived factors stimulate osteoclastogenesis through the Ca2+/protein kinase C and transforming growth factor-beta/MAPK signaling pathways.

Authors:  Kerstin Tiedemann; Osama Hussein; Gulzhakhan Sadvakassova; Yubin Guo; Peter M Siegel; Svetlana V Komarova
Journal:  J Biol Chem       Date:  2009-09-30       Impact factor: 5.157

9.  Jamb and jamc are essential for vertebrate myocyte fusion.

Authors:  Gareth T Powell; Gavin J Wright
Journal:  PLoS Biol       Date:  2011-12-13       Impact factor: 8.029

10.  Microgravity promotes osteoclast activity in medaka fish reared at the international space station.

Authors:  Masahiro Chatani; Akiko Mantoku; Kazuhiro Takeyama; Dawud Abduweli; Yasutaka Sugamori; Kazuhiro Aoki; Keiichi Ohya; Hiromi Suzuki; Satoko Uchida; Toru Sakimura; Yasushi Kono; Fumiaki Tanigaki; Masaki Shirakawa; Yoshiro Takano; Akira Kudo
Journal:  Sci Rep       Date:  2015-09-21       Impact factor: 4.379

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