C-Mpl Is Expressed on Osteoblasts and Osteoclasts and Is Important in Regulating Skeletal Homeostasis

被引:25
作者
Meijome, Tomas E. [1 ]
Ekwealor, Jenna T. B. [1 ]
Hooker, R. Adam [1 ]
Cheng, Ying-Hua [1 ]
Ciovacco, Wendy A. [1 ,2 ]
Balamohan, Sanjeev M. [1 ]
Srinivasan, Trishya L. [1 ]
Chitteti, Brahmananda R. [3 ]
Eleniste, Pierre P. [4 ]
Horowitz, Mark C. [2 ]
Srour, Edward F. [3 ]
Bruzzaniti, Angela [4 ]
Fuchs, Robyn K. [5 ]
Kacena, Melissa A. [1 ,2 ]
机构
[1] Indiana Univ Sch Med, Dept Orthopaed Surg, 1130 West Michigan St,FH 115, Indianapolis, IN 46202 USA
[2] Yale Univ, Sch Med, Dept Orthopaed & Rehabil, New Haven, CT 06510 USA
[3] Indiana Univ Sch Med, Dept Med, Indianapolis, IN 46202 USA
[4] Indiana Univ, Sch Dent, Dept Oral Biol, Indianapolis, IN USA
[5] Indiana Univ, Dept Phys Therapy, Sch Hlth & Rehabil Sci, Indianapolis, IN USA
关键词
THROMBOPOIETIN; C-Mpl; OSTEOBLASTS; OSTEOCLASTS; BONE MASS; BONE; THROMBOPOIETIN; DEFICIENT; TRANSCRIPTION; DIFFERENTIATION; MEGAKARYOCYTES; PROLIFERATION; NF-E2; PHOSPHORYLATION; PARATHORMONE;
D O I
10.1002/jcb.25380
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
C-Mpl is the receptor for thrombopoietin (TPO), the main megakaryocyte (MK) growth factor, and c-Mpl is believed to be expressed on cells of the hematopoietic lineage. As MKs have been shown to enhance bone formation, it may be expected that mice in which c-Mpl was globally knocked out (c-Mpl(-/-) mice) would have decreased bone mass because they have fewer MKs. Instead, c-Mpl(-/-) mice have a higher bone mass than WT controls. Using c-Mpl(-/-) mice we investigated the basis for this discrepancy and discovered that c-Mpl is expressed on both osteoblasts (OBs) and osteoclasts (OCs), an unexpected finding that prompted us to examine further how c-Mpl regulates bone. Static and dynamic bone histomorphometry parameters suggest that c-Mpl deficiency results in a net gain in bone volume with increases in OBs and OCs. In vitro, a higher percentage of c-Mpl(-/-) OBs were in active phases of the cell cycle, leading to an increased number of OBs. No difference in OB differentiation was observed in vitro as examined by real-time PCR and functional assays. In co-culture systems, which allow for the interaction between OBs and OC progenitors, c-Mpl(-/-) OBs enhanced osteoclastogenesis. Two of the major signaling pathways by which OBs regulate osteoclastogenesis, MCSF/OPG/RANKL and EphrinB2-EphB2/B4, were unaffected in c-Mpl(-/-) OBs. These data provide new findings for the role of MKs and c-Mpl expression in bone and may provide insight into the homeostatic regulation of bone mass as well as bone loss diseases such as osteoporosis. J. Cell. Biochem. 117: 959-969, 2016. (c) 2015 Wiley Periodicals, Inc.
引用
收藏
页码:959 / 969
页数:11
相关论文
共 36 条
[1]
Tyrosine-599 of the c-Mpl receptor is required for Shc phosphorylation and the induction of cellular differentiation [J].
Alexander, WS ;
Maurer, AB ;
Novak, U ;
HarrisonSmith, M .
EMBO JOURNAL, 1996, 15 (23) :6531-6540
[2]
A Novel Role for Thrombopoietin in Regulating Osteoclast Development in Humans and Mice [J].
Bethel, Monique ;
Barnes, Calvin L. T. ;
Taylor, Amanda F. ;
Cheng, Ying-Hua ;
Chitteti, Brahmananda R. ;
Horowitz, Mark C. ;
Bruzzaniti, Angela ;
Srour, Edward F. ;
Kacena, Melissa A. .
JOURNAL OF CELLULAR PHYSIOLOGY, 2015, 230 (09) :2142-2151
[3]
THROMBOPOIETIN (C-MPL LIGAND) ACTS SYNERGISTICALLY WITH ERYTHROPOIETIN, STEM-CELL FACTOR, AND INTERLEUKIN-11 TO ENHANCE MURINE MEGAKARYOCYTE COLONY GROWTH AND INCREASES MEGAKARYOCYTE PLOIDY IN-VITRO [J].
BROUDY, VC ;
LIN, NL ;
KAUSHANSKY, K .
BLOOD, 1995, 85 (07) :1719-1726
[4]
Dynamin Reduces Pyk2 Y402 Phosphorylation and Src Binding in Osteoclasts [J].
Bruzzaniti, Angela ;
Neff, Lynn ;
Sandoval, Amanda ;
Du, Liping ;
Horne, William C. ;
Baron, Roland .
MOLECULAR AND CELLULAR BIOLOGY, 2009, 29 (13) :3644-3656
[5]
Carver-Moore Karen, 1996, Blood, V88, P803
[6]
Signaling Pathways Involved in Megakaryocyte-Mediated Proliferation of Osteoblast Lineage Cells [J].
Cheng, Ying-Hua ;
Streicher, Drew A. ;
Waning, David L. ;
Chitteti, Brahmananda R. ;
Gerard-O'Riley, Rita ;
Horowitz, Mark C. ;
Bidwell, Joseph P. ;
Pavalko, Fredrick M. ;
Srour, Edward F. ;
Mayo, Lindsey D. ;
Kacena, Melissa A. .
JOURNAL OF CELLULAR PHYSIOLOGY, 2015, 230 (03) :578-586
[7]
Immature and Mature Megakaryocytes Enhance Osteoblast Proliferation and Inhibit Osteoclast Formation [J].
Ciovacco, Wendy A. ;
Cheng, Ying-Hua ;
Horowitz, Mark C. ;
Kacena, Melissa A. .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2010, 109 (04) :774-781
[8]
The role of gap junctions in megakaryocyte-mediated osteoblast proliferation and differentiation [J].
Ciovacco, Wendy A. ;
Goldberg, Carolyn G. ;
Taylor, Amanda F. ;
Lemieux, Justin M. ;
Horowitz, Mark C. ;
Donahue, Henry J. ;
Kacena, Melissa A. .
BONE, 2009, 44 (01) :80-86
[9]
STIMULATION OF MEGAKARYOCYTOPOIESIS AND THROMBOPOIESIS BY THE C-MPL LIGAND [J].
DESAUVAGE, FJ ;
HASS, PE ;
SPENCER, SD ;
MALLOY, BE ;
GURNEY, AL ;
SPENCER, SA ;
DARBONNE, WC ;
HENZEL, WJ ;
WONG, SC ;
KUANG, WJ ;
OLES, KJ ;
HULTGREN, B ;
SOLBERG, LA ;
GOEDDEL, DV ;
EATON, DL .
NATURE, 1994, 369 (6481) :533-538
[10]
Physiological regulation of early and late stages of megakaryocytopoiesis by thrombopoietin [J].
deSauvage, FJ ;
CarverMoore, K ;
Luoh, SM ;
Ryan, A ;
Dowd, M ;
Eaton, DL ;
Moore, MW .
JOURNAL OF EXPERIMENTAL MEDICINE, 1996, 183 (02) :651-656