Notch and the Skeleton

被引:135
作者
Zanotti, Stefano [1 ]
Canalis, Ernesto [1 ,2 ]
机构
[1] St Francis Hosp & Med Ctr, Dept Res, Hartford, CT 06105 USA
[2] Univ Connecticut, Sch Med, Farmington, CT USA
关键词
CELL SELF-RENEWAL; SIGNALING PATHWAY; INHIBITS OSTEOBLASTOGENESIS; ARTERIOVENOUS-MALFORMATIONS; OSTEOCLAST PRECURSORS; INTRACELLULAR REGION; PROTEOLYTIC RELEASE; EMBRYONIC LETHALITY; GROWTH-FACTOR; HUMAN HOMOLOG;
D O I
10.1128/MCB.01285-09
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Notch receptors are transmembrane receptors that regulate cell fate decisions. There are four Notch receptors in mammals. Upon binding to members of the Delta and Jagged family of transmembrane proteins, Notch is cleaved and the Notch intracellular domain (NICD) is released. NICD then translocates to the nucleus, where it associates with the CBF-1, Suppressor of Hairless, and Lag-2 (CSL) and Mastermind-Like (MAML) proteins. This complex activates the transcription of Notch target genes, such as Hairy Enhancer of Split (Hes) and Hes-related with YRPF motif (Hey). Notch signaling is critical for the regulation of mesenchymal stem cell differentiation. Misexpression of Notch in skeletal tissue indicates a role as an inhibitor of skeletal development and postnatal bone formation. Overexpression of Notch inhibits endochondral bone formation and osteoblastic differentiation, causing severe osteopenia. Conditional inactivation of Notch in the skeleton causes an increase in cancellous bone volume and enhanced osteoblastic differentiation. Notch ligands are expressed in the hematopoietic stem cell niche and are critical for the regulation of hematopoietic stem cell self-renewal. Dysregulation of Notch signaling is the underlying cause of diseases affecting the skeletal tissue, including Alagille syndrome, spondylocostal dysostosis, and possibly, osteosarcoma.
引用
收藏
页码:886 / 896
页数:11
相关论文
共 143 条
[1]
Microfibril-associate glycoprotein-2 (MAGP-2) promotes angiogenic cell sprouting by blocking notch signaling in endothelial cells [J].
Albig, Allan R. ;
Becenti, Darryl J. ;
Roy, Thessa G. ;
Schiemann, William P. .
MICROVASCULAR RESEARCH, 2008, 76 (01) :7-14
[2]
Androutsellis-Theotokis A, 2006, NATURE, V442, P823, DOI 10.1038/nature04940
[3]
Notch signaling: Cell fate control and signal integration in development [J].
Artavanis-Tsakonas, S ;
Rand, MD ;
Lake, RJ .
SCIENCE, 1999, 284 (5415) :770-776
[4]
Bae SK, 2000, DEVELOPMENT, V127, P2933
[5]
NOTCH1 regulates osteoclastogenesis directly in osteoclast precursors and indirectly via osteoblast lineage cells [J].
Bai, Shuting ;
Kopan, Raphael ;
Zou, Wei ;
Hilton, Matthew J. ;
Ong, Chin-tong ;
Long, Fanxin ;
Ross, F. Patrick ;
Teitelbaum, Steven L. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2008, 283 (10) :6509-6518
[6]
dlk acts as a negative regulator of Notch1 activation through interactions with specific EGF-like repeats [J].
Baladrón, V ;
Ruiz-Hidalgo, MJ ;
Nueda, ML ;
Díaz-Guerra, MJM ;
García-Ramírez, JJ ;
Bonvini, E ;
Gubina, E ;
Laborda, J .
EXPERIMENTAL CELL RESEARCH, 2005, 303 (02) :343-359
[7]
Notch3: from subtle structural differences to functional diversity [J].
Bellavia, D. ;
Checquolo, S. ;
Campese, A. F. ;
Felli, M. P. ;
Gulino, A. ;
Screpanti, I. .
ONCOGENE, 2008, 27 (38) :5092-5098
[8]
Dynamic expression and essential functions of Hes7 in somite segmentation [J].
Bessho, Y ;
Sakata, R ;
Komatsu, S ;
Shiota, K ;
Yamada, S ;
Kageyama, R .
GENES & DEVELOPMENT, 2001, 15 (20) :2642-2647
[9]
Marrow stromal stem cells [J].
Bianco, P ;
Robey, PG .
JOURNAL OF CLINICAL INVESTIGATION, 2000, 105 (12) :1663-1668
[10]
Intracellular cleavage of notch leads to a heterodimeric receptor on the plasma membrane [J].
Blaumueller, CM ;
Qi, HL ;
Zagouras, P ;
ArtavanisTsakonas, S .
CELL, 1997, 90 (02) :281-291