Fibroblast Growth Factor 2 and Its Receptors in Bone Biology and Disease

被引:45
作者
Coffin, J. Douglas [1 ]
Homer-Bouthiette, Collin [2 ]
Hurley, Marja Marie [3 ]
机构
[1] Univ Montana, Missoula, MT 59812 USA
[2] Univ South Carolina, Sch Med, Columbia, SC 29209 USA
[3] Univ Connecticut, Dept Med, UCONN Hlth, Sch Med, Farmington, CT 06030 USA
基金
美国国家卫生研究院;
关键词
bone; FGF2; FGF receptors;
D O I
10.1210/js.2018-00105
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The fibroblast growth factor (FGF) regulatory axis is phylogenetically ancient, evolving into a large mammalian/human gene family of 22 ligands that bind to four receptor tyrosine kinases for a complex physiologic system controlling cell growth, differentiation, and metabolism. The tissue targets for the primary FGF function are mainly in cartilage and in bone for morphogenesis, mineralization, and metabolism. A multitude of complexities in the FGF ligand-receptor signaling pathways have made translation into therapies for FGF-related bone disorders such as osteomalacia, osteoarthritis, and osteoporosis difficult but not impossible. Copyright (c) 2018 Endocrine Society This article has been published under the terms of the Creative Commons Attribution Non-Commercial, No-Derivatives License (CC BY-NC-ND; https://creativecommons.org/licenses/by-nc-nd/4.0/).
引用
收藏
页码:657 / 671
页数:15
相关论文
共 151 条
[1]   NUCLEOTIDE-SEQUENCE OF A BOVINE CLONE ENCODING THE ANGIOGENIC PROTEIN, BASIC FIBROBLAST GROWTH-FACTOR [J].
ABRAHAM, JA ;
MERGIA, A ;
WHANG, JL ;
TUMOLO, A ;
FRIEDMAN, J ;
HJERRILD, KA ;
GOSPODAROWICZ, D ;
FIDDES, JC .
SCIENCE, 1986, 233 (4763) :545-548
[2]   HUMAN BASIC FIBROBLAST GROWTH-FACTOR - NUCLEOTIDE-SEQUENCE AND GENOMIC ORGANIZATION [J].
ABRAHAM, JA ;
WHANG, JL ;
TUMOLO, A ;
MERGIA, A ;
FRIEDMAN, J ;
GOSPODAROWICZ, D ;
FIDDES, JC .
EMBO JOURNAL, 1986, 5 (10) :2523-2528
[3]  
Aono Y, 2009, J BONE MINER RES, V24, P1879, DOI [10.1359/JBMR.090509, 10.1359/jbmr.090509]
[4]   Nuclear activities of basic fibroblast growth factor: Potentiation of low-serum growth mediated by natural or chimeric nuclear localization signals [J].
Arese, M ;
Chen, Y ;
Florkiewicz, RZ ;
Gualandris, A ;
Shen, B ;
Rifkin, DB .
MOLECULAR BIOLOGY OF THE CELL, 1999, 10 (05) :1429-1444
[5]   Wnt/β-catenin signaling is a component of osteoblastic bone cell early responses to load-bearing and requires estrogen receptor α [J].
Armstrong, Victoria J. ;
Muzylak, Mariusz ;
Sunters, Andrew ;
Zaman, Gul ;
Saxon, Leanne K. ;
Price, Joanna S. ;
Lanyon, Lance E. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (28) :20715-20727
[6]   Sclerostin Is a Locally Acting Regulator of Late-Osteoblast/Preosteocyte Differentiation and Regulates Mineralization Through a MEPE-ASARM-Dependent Mechanism [J].
Atkins, Gerald J. ;
Rowe, Peter S. ;
Lim, Hui P. ;
Welldon, Katie J. ;
Ormsby, Renee ;
Wijenayaka, Asiri R. ;
Zelenchuk, Lesya ;
Evdokiou, Andreas ;
Findlay, David M. .
JOURNAL OF BONE AND MINERAL RESEARCH, 2011, 26 (07) :1425-1436
[7]   Potent activation of FGF-2 IRES-dependent mechanism of translation during brain development [J].
Audigier, Sylvie ;
Guiramand, Janique ;
Prado-Lourenco, Leonel ;
Conte, Caroline ;
Gonzalez-Herrera, Irma Gabriela ;
Cohen-Solal, Catherine ;
Recasens, Max ;
Prats, Anne-Catherine .
RNA, 2008, 14 (09) :1852-1864
[8]   A RECURRENT MUTATION IN THE TYROSINE KINASE DOMAIN OF FIBROBLAST GROWTH-FACTOR RECEPTOR-3 CAUSES HYPOCHONDROPLASIA [J].
BELLUS, GA ;
MCINTOSH, I ;
SMITH, EA ;
AYLSWORTH, AS ;
KAITILA, I ;
HORTON, WA ;
GREENHAW, GA ;
HECHT, JT ;
FRANCOMANO, CA .
NATURE GENETICS, 1995, 10 (03) :357-359
[9]   Regulation of Phosphate Homeostasis by PTH, Vitamin D, and FGF23 [J].
Bergwitz, Clemens ;
Jueppner, Harald .
ANNUAL REVIEW OF MEDICINE, 2010, 61 :91-104
[10]   FGF-2 Gene Polymorphism in Osteoporosis among Guangxi's Zhuang Chinese [J].
Bin, Xiaoyun ;
Lin, Chaowen ;
Huang, Xiufeng ;
Zhou, Qinghui ;
Wang, Liping ;
Xian, Cory J. .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2017, 18 (07)