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Quantitative signature for architectural organization of regulatory factors using intranuclear informatics.

Regulatory machinery for replication and gene expression is punctately organized in supramolecular complexes that are compartmentalized in nuclear microenvironments. Quantitative approaches are required to understand the assembly of regulatory machinery within the context of nuclear architecture and to provide a mechanistic link with biological control. We have developed 'intranuclear informatics' to quantify functionally relevant parameters of spatially organized nuclear domains. Using this informatics strategy we have characterized post-mitotic reestablishment of focal subnuclear organization of Runx (AML/Cbfa) transcription factors in progeny cells. By analyzing point mutations that abrogate fidelity of Runx intranuclear targeting, we establish molecular determinants for the spatial order of Runx domains. Our novel approach provides evidence that architectural organization of Runx factors may be fundamental to their tissue-specific regulatory function.

Animals↗

Craniosynostosis-associated gene nell-1 is regulated by runx2.

UNLABELLED: We studied the transcriptional regulation of NELL-1, a craniosynostosis-related gene. We identitifed three OSE2 elements in the NELL-1 promoter that are directly bound and transactivated by Runx2. Forced expression of Runx2 induces NELL-1 expression in rat calvarial cells. INTRODUCTION: We previously reported the upregulation of NELL-1 in human craniosynostosis and the overexpression of Nell-1 in transgenic animals that induced premature suture closure associated with increased osteoblast differentiation. To study the transcriptional regulation of NELL-1, we analyzed the 5' flanking region of the human NELL-1 gene. We identified three osteoblast specific binding elements 2 (OSE2) sites (A, B, and C) within 2.2 kb upstream of the transcription start site and further studied the functionality of these sites. MATERIALS AND METHODS: An area of 2.2 kb and a truncated 325 bp, which lacked the three OSE sites, were cloned into a luciferase reporter gene, and co-transfected with Runx2 expression plasmid. The three OSE2 sites were individually mutated and co-transfected with Runx2 expression plasmid into Saos2 cells. Gel shifts and supershifts with Runx2 antibodies were used to determine specific binding to OSE2 sites. CHIP assays were used to study in vivo binding of Runx2 to the Nell-1 promoter. Runx2 expression plasmid was transfected into wildtype and Runx2(-/-) calvarial cells. Nell-1, osteocalcin, and Runx2 expression levels were measured using RT-PCR. RESULTS: Addition of Runx2 dose-dependently increased the luciferase activity in the human NELL-1 promoter-luciferase p2213. The p325 truncated NELL-1 construct showed significantly lower basal level of activity. Nuclear extract from Saos2 cells formed complexes with site A, B, and C probes and were supershifted with Runx2 antibody. Mutation of sites A, B, and C significantly decreased basal promoter activity. Furthermore, mutation of sites B and C had a blunted response to Runx2, whereas mutation of site A had a lesser effect. Runx2 bound to NELL-1 promoter in vivo. Transfection of Runx2 in rat osteoblasts upregulated Nell-1 and Ocn expression, and in Runx2 null calvarial cells, both Nell-1 and Ocn expression were rescued. CONCLUSIONS: Runx2 directly binds to the OSE2 elements and transactivates the human NELL-1 promoter. These results suggest that Nell-1 is likely a downstream target of Runx2. These findings may also extend our understanding of the molecular mechanisms governing the pathogenesis of craniosynostosis.

Animals↗

Exposure of KS483 cells to estrogen enhances osteogenesis and inhibits adipogenesis.

Osteoblasts and adipocytes arise from a common progenitor cell in bone marrow. Whether estrogen directly regulates the progenitor cells differentiating into osteoblasts or adipocytes remains unknown. Using a mouse clonal cell line KS483 cultured in charcoal-stripped fetal bovine serum (FBS), we showed that 17beta-estradiol (E2) stimulates the differentiation of progenitor cells into osteoblasts and concurrently inhibits adipocyte formation in an estrogen receptor (ER)-dependent way. E2 increased alkaline phosphate (ALP) activity and nodule formation and stimulated messenger RNA (mRNA) expression of core-binding factor alpha-1 (Cbfa1), parathyroid hormone/parathyroid hormone-related protein receptors (PTH/PTHrP-Rs), and osteocalcin. In contrast, E2 decreased adipocyte numbers and down-regulated mRNA expression of peroxisome proliferator-activated receptor-gamma (PPARgamma)2, adipocyte protein 2 (aP2), and lipoprotein lipase (LPL). Furthermore, the reciprocal control of osteoblast and adipocyte differentiation by E2 was observed also in the presence of the adipogenic mixture of isobutylmethylxanthine, dexamethasone, and insulin. Immunohistochemical staining showed that ERalpha and ERbeta were present in osteoblasts and adipocytes. A new mouse splice variant ERbeta2 was identified, which differed in two amino acid residues from the rat isoform. E2 down-regulated mRNA expression of ERalpha, ERbeta1, and ERbeta2. The effects of E2 are not restricted to the KS483 cell line because similar results were obtained in mouse bone marrow cell cultures. Our results indicate that estrogen, in addition to stimulation of osteogenesis, inhibits adipogenesis, which might explain the clinical observations that estrogen-deficiency leads to an increase in adipocytes.

Adipocytes↗

Role of Runx proteins in chondrogenesis.

The mammalian RUNX protein family comprises three transcription factorsRUNX1, RUNX2, and RUNX3. RUNX1 is involved in hematopoiesis, RUNX2 has multiple roles in osteogenesis and RUNX3 is associated with neural and gut development. In addition, all RUNX proteins are expressed during chondrogenesis, the process by which cartilage is formed. This review describes the involvement of Runx proteins in chondrogenesis, delineating their expression pattern and emphasizing their active roles in mesenchymal condensation, chondrocyte proliferation, and chondrocyte maturation. It also highlights how Runx proteins regulate transcription of target genes and how Runx proteins are regulated in the cartilaginous skeleton.

Amino Acid Sequence↗

RUNX expression and function in human B cells.

RUNX1 and RUNX3 are expressed at many stages of B-cell differentiation, suggesting that they play a role in the development and functions of this lineage. Transgenic mice lacking expression of RUNX1 or the RUNX protein-binding partner, CBFbeta, have defective B-cell development, with differentiation blocked at an early stage. Specific knockout of RUNX1 in adult hematopoietic cells also caused a decrease in the number of mature B cells, supporting a role for RUNX1 in both developmental and adult hematopoiesis. Furthermore, RUNX proteins have been shown to regulate several B-cell-specific genes and play an important role in TGF-beta-induced immunoglobulin class switching to IgA. The importance of RUNX1 in B-cell development is additionally demonstrated by its dysregulation in the t(12;21) translocation, which is the most frequent translocation found in acute lymphocytic leukemia. Epstein Barr virus immortalized human B lymphoblastoid cell lines express RUNX3, and cross-regulation of RUNX1 by RUNX3 occurs in these cells. Knockdown of RUNX3 in these cells induces RUNX1 expression and inhibits cell proliferation, directly showing that RUNX proteins can regulate B-cell growth.

B-Lymphocytes↗

Hedgehog signaling enhances core-binding factor a1 and receptor activator of nuclear factor-kappaB ligand (RANKL) gene expression in chondrocytes.

Hedgehog signaling is considered to play a crucial role in chondrogenesis by regulation through a network of cytokine actions, which is not fully understood. We examined the effect of hedgehog signaling on the expression of core-binding factor a1 (Cbfa1), a critical transcription factor for the development of bone and cartilage. Primary chondrocytes prepared from the costal cartilage of newborn mice were treated with N-terminal fragment of recombinant murine sonic hedgehog (rmShh-N). Northern blot analysis indicated that Cbfa1 mRNA expression levels in the chondrocyte cultures were elevated by the treatment with rmShh-N. rmShh-N treatment enhanced 1.8 kb Cbfa1 promoter activity in chondrocytes, suggesting the presence of transcriptional control. As Cbfa1-binding site(s) have been located in the promoter of the receptor activator of nuclear factor-kappaB (RANK) ligand (RANKL) gene, we also examined RANKL expression. rmShh-N treatment upregulated RANKL and RANK mRNA expression levels in chondrocytes. Interestingly, RANKL suppressed the hedgehog enhancement of alkaline phosphatase activity in chondrocytes, suggesting the presence of a link between these signaling molecules. We conclude that hedgehog signaling activates Cbfa1 gene expression through its promoter in chondrocytes, and also activates and interacts with RANKL to maintain cartilage development.

Analysis of Variance↗

Bisphosphonate modulates cementoblast behavior in vitro.

BACKGROUND: Cementum formation is deemed to be instrumental for the successful regeneration of periodontal tissues, and thus events and modifiers of cementum formation and mineralization need to be determined. This study aimed to determine whether the bisphosphonate 1-hydroxyethylidene-1,1-bisphosphonate (HEBP) altered the behavior of immortalized cementoblasts (osteocalcin-cementoblasts [OCCM]). METHODS: OCCM from transgenic mice were exposed to HEBP at concentrations ranging from 0.01 to 10.0 microM. The assays performed included the count of cell number for proliferation, Northern blot analysis for gene expression (up to 10 days for core binding factor alpha-1 [Cbfa1], bone sialoprotein [BSP], osteocalcin [OCN], and osteopontin [OPN], markers for cementoblast/osteoblast maturation/mineralization), von Kossa stain and alizarin red S stain for mineralization, and enzyme assay (p-nitrophenol phosphate cleavage) for alkaline phosphatase (ALP) activity. RESULTS: Mineral nodule formation was inhibited at the higher doses of HEBP (1.0 and 10.0 microM) only. At early stages (1, 3, and 6 days), gene expression assays revealed only subtle changes in treated cells versus untreated cells, but by day 10, groups treated with lower doses (0.01 and 0.1 microM) were markedly different at the gene expression level. OCN was significantly downregulated (70%) at the lowest dose, with less pronounced effects at higher doses. In concurrence, the master switch gene for osteoblasts, Cbfa1, was also downregulated at the lower doses. Inversely, OPN mRNA was enhanced at the lower doses. ALP activity was not altered by HEBP. CONCLUSION: Bisphosphonate alters cementoblast function in vitro through the regulation of gene expression and mineral formation.

Alkaline Phosphatase↗

Nuclear structure--skeletal gene expression interrelationships.

Using the osteocalcin gene as a paradigm for bone tissue-specific transcription, evidence is presented for functional linkage of nuclear architecture with developmental and steroid hormone-responsive control. The involvement of chromatin structure, nucleosome organization and the nuclear matrix is evaluated within the context of integrating regulatory signals that activate and/or suppress transcription of the osteocalcin gene. Mechanisms are evaluated which direct the bone and hematopoietic-specific acute myelogenous leukemia/core binding factor (AML/CBF) transcription factors to nuclear matrix-associated subnuclear domains that are competent to support expression.

Animals↗

Study of osteoblast-specific expression of one mouse osteocalcin gene: characterization of the factor binding to OSE2.

In an attempt to understand the mechanisms of osteoblast-specific expression, we analyzed the promoter of the mouse osteocalcin gene 2, an osteoblast-specific gene. In this promoter, using a combination of DNA transfection experiments and DNA binding assays, we have identified two osteoblast-specific cis-acting elements called OSE1 and OSE2. Inspection of OSE2 DNA sequence and site-specific mutagenesis allowed us to define a core sequence for OSE2. This core sequence is identical to the DNA binding site of the PEBP2 alpha transcription factors, the mouse homologues of the Drosophila Runt protein. Here we show that OSF2, the factor present in osteoblast nuclear extracts and binding to OSE2, is immunologically related to the PEBP2 alpha transcription factors. In DNA cotransfection experiment, a human homologue of PEBP2 alpha transcription factor increases the activity of a short osteocalcin promoter through its binding to OSE2. Thus, this study presents evidence that OSF2 is a member of the PEBP2 alpha family of transcription factors.

Animals↗

The osteocalcin gene promoter provides a molecular blueprint for regulatory mechanisms controlling bone tissue formation: role of transcription factors involved in development.

Characterization of regulatory sequences and their cognate binding factors in the bone-specific osteocalcin (OC) gene promoter has provided insight into mechanisms that control expression of the gene under diverse biological conditions. We present evidence for AP-1 motifs and two multipartite conserved regulatory sequences, the OC Box I (nt-99 to-76) and a site designated OC Box II (nt-136 to-130) in contributing to developmental and tissue-specific expression of osteocalcin. OC Box I is characterized by a homeodomain binding site and OC Box II is a recognition sequence for AML-1 (also called PEBP2 alpha), a runt homology-related DNA binding protein. Functional activity of the elements was established in osseous and non-osseous cell lines and is in part related to the binding of osteoblast-specific complexes which enhance OC transcription. The contribution of several elements and binding of multiple classes of transcription factors to independent elements in both these domains serve to illustrate the complexity of control required for tissue-specific OC expression.

Animals↗

Expression of core binding factor alpha1 up-regulated by IGF-I, GM-CSF, and EGF through MAPK pathway in MC3T3-E1 and C2C12 cells.

AIM: To study the regulating function and mechanism of insulin-like growth factor-I (IGF-I), granulocyte-macrophage colony-stimulating factor (GM-CSF), and epidermal growth factor (EGF) on murine core binding factor alpha1 (Cbfalpha1) gene expression. METHODS: Luciferase reporter gene method and RT-PCR technique were used to examine the effects of these growth factors on the promoter activity and mRNA expression of Cbfalpha1 gene in MC3T3-E1 and C2C12 cells. RESULTS: IGF-I (from 1 nmol/L to 1 micromol/L), GM-CSF (100 nmol/L), and EGF (1 micromol/L) increased the luciferase expression in MC3T3-E1 cells (P<0.05). And mitogen-activated protein kinase (MAPK) inhibitor, PD 98059 (10 micromol/L), completely blocked IGF-1, GM-CSF, and EGF-induced expression of Cbfa1 promoter activity (P<0.01). In C2C12 cells, IGF-I (from 1 nmol/L to 10 micromol/L), GM-CSF (100 nmol/L and 1 micromol/L), and EGF (100 nmol/L) enhanced the expression of luciferase reporter plasmid driven by mCbfalpha1 promoter (P<0.05). Addition of PD 98059 also blocked the stimulatory effects of these growth factors on Cbfalpha1 promoter activity (P<0.01). Moreover, Cbfalpha1 mRNA expression was significantly increased after treatment with IGF-I (1 nmol/L, 100 nmol/L), GM-CSF (100 nmol/L, 1 micromol/L), and EGF (1 micromol/L, 100 nmol/L) in MC3T3-E1 and C2C12 cells, respectively (P<0.05). These stimulatory effects of IGF-I, GM-CSF, and EGF on Cbfalpha1 mRNA expression were abolished by PD 98059. CONCLUSION: IGF-I, GM-CSF, and EGF could increase the promoter activity and the mRNA expression of murine Cbfalpha1 gene in MC3T3-E1 and C2C12 cells. These stimulatory effects might be mediated by activating the intracellular MAPK-dependent signaling pathway.

Animals↗

[Effect of elastic stress on expression of corebinding factor a 1 mRNA in human periodontal ligament cells in vitro].

OBJECTIVE: To investigate the osteoblast-like characteristics of human periodontal ligament cells affected by elastic stress in vitro, and the role of corebinding factor a 1 (cbfa1) in alveolar bone formation during orthodontic tooth movement. METHODS: Rat dig-labeled cbfa1 cDNA probe was prepared from SD rat osteoblasts cultured in vitro. Human periodontal ligament cells were cultured on the elastic bottom plate and stimulated by elastic stress using mechanical loading system for cultured cells in vitro. The expression of cbfa1 mRNA was detected by in situ hybridization method. RESULTS: Cbfa1 mRNA express in human periodontal ligament cells stimulated by elastic stress and did not express in normal human periodontal ligament cells. CONCLUSION: It is suggested that elastic stress plays a role in the differentiation process from human periodontal ligament cells to osteoblast-like cells. Cbfa1 is a transcription factor in alveolar bone remodeling during orthodontic tooth movement.

Adolescent↗

[Effects of OGP(10-14) and its derivative G38I on proliferation and differentiation of rat osteoblasts in vitro].

OBJECTIVE: To investigate the effects of the carboxyl end of osteogenic growth peptide (OGP)-OGP((10-14)) and its derivative G38I on the proliferation and differentiation of osteoblasts (OBs). METHODS: Osteoblasts were isolated from the calvariae of newborn SD rats and cultured to G3. OGP((10-14)) or G38I of the concentrations of 10(-15) to 10(-7) mol/L were added to culture medium for 48 hours respectively. The number of cells was counted and MTT analysis was used to examine the proliferation of the cells. The ultrastructure of cells was investigated by electron microscopy. The osteoblasts of G3 were divided into experimental groups, treated with OGP((10-14)) or G38I of the concentration of 10(-11) mol/L for 48 hours, and control group. The alkaline phosphatase activity in the culture medium was measured. The protein expression level of type-I collagen was evaluated by immunohistochemistry. The core binding factor 1 (Cbfa1) and type-I collagen mRNA level of osteoblasts were determined by RT-PCR. RESULTS: With a biphasic effect on, OGP((10-14)) and G38I stimulated the number enhancement of OBs dose-dependently at low concentration and inhibited it at high concentration. The numbers of OB were the highest (37 x 10(4)/ml +/- 7 x 10(4)/ml and 30 x 10(4)/ml +/- 5 x 10(4)/ml respectively) when treated by OGP((10-14)) or G38I of the concentration of 10(-11)mol/L. The rough endoplasm net was flourishing and the secreting vesicle was abounding in the experimental cells. There was calcium crystal in the control cells. The activity of alkaline phosphatase in the culture medium of the OGP (10(-14)) and G38I groups were higher than that in the control group (4.47 U/g and 3.82 U/g vs 2.21 U/g). The protein expression level of type-I collagen was higher and the mRNA levels of Cbfa1 and type-I collagen were higher in the OGP((10-14)) and G38I groups were increased in the experimental groups in comparison with the control group (P < 0.05, P < 0.01, and P < 0.05). CONCLUSION: They stimulated cell number enhancement dose dependently at low concentration and followed by inhibition at high concentration. Just as the native OGP, OGP((10-14)) and its derivative G38I stimulate the proliferation of osteoblasts, and improve their activity, up-regulate the Cbfa1 and type-I collagen mRNA expression levels and increase the collagen synthesis, thus promoting the differentiation and osteogenic effect of osteoblasts.

Alkaline Phosphatase↗

[Effects of core binding factor alpha1 on promotion of osteoblastic differentiation from marrow mesenchymal stem cells].

OBJECTIVE: To observe effects of the core binding factor alpha1 (Cbfalpha1) in its promoting differentiation of the rabbit marrow mesenchymal stem cells (MSCs) into osteoblasts. METHODS: The rabbit marrow MSCs were isolated and cultured in vitro and were divided into 3 groups. In the control group, the marrow MSCs were cultured by DMEM; in the single inducement group, they were cultured by the condition medium (DMEM, 10% fetal bovine serum, dexamethasone 10 mmol/L, vitamin C 50 mg/L, and beta-GP 10 mmol/L); and in the experimental group, they were transfected with AdEasyl/Cbfalpha1, and then were cultured by the condition medium. The alkaline phosphatase (ALP) activity and the expression of osteocalcin as the osteoblast markers were measured with the chemohistological and immunohistochemical methods at 3 days, 1, 2, 3, and 4 weeks after inducement. RESULTS: More than 90% MSCs were grown well in vitro. The GFP was positive in MSCs after their being transfected with AdEasyl/Cbfalpha1. The ALP activity and the expression of osteocalcin were significantly upregulated in the transfection group compared with those in the single inducement group and the control group at 1, 2, 3, and 4 weeks (P < 0.05). The mineralized node began to appear at 2 weeks in the experimental group and the single induction group, but did not appear in control group. CONCLUSION: Cbfalpha1 can obviously promote differentiation of the rabbit marrow mesenchymal stem cells into the osteoblasts.

Animals↗

[Apoptosis of mesenchymal cell line MBA-1 induced by core binding factor alpha 1].

OBJECTIVE: To investigate the effect of two core binding factors alpha 1 (Cbfa1) isfroms (Cbfa1/P56 and Cbfa1/P57) on the apoptosis of mesenchymal cell line MBA-1. METHODS: The two Cbfal isfroms were transiently transfected into MBA-1 cells, then the changes of apoptosis rate were observed by flow cytometer. The protein expressions of Cbfa1, Bax, Bcl-2, caspase-3, and caspase-9, cytochrome-C and TNF-alpha were determined by Western immunoblot. RESULTS: After the transient transfection with the two isforms of Cbfa1, MBA-1, the cells apoptotic rates increased, and the ratio of Bax/Bcl-2, the expressions of cytochrome-C, caspase-3, caspase-9, and TNF-alpha were significantly increased. CONCLUSION: Cbfa1 can promote the apoptosis in mesenchymal cell line MBA-1. Bax/Bcl-2, cytochrome-C, caspase-9, caspase-3, and TNF-alpha are also involved in the apoptosis pathway.

Animals↗

[Interactions of chondrocytes and osteoblasts during endochondral bone formation].

During endochondral bone formation, mesenchymal condensations, chondrocyte differentiation and proliferation, termination of proliferation, hypertrophic differentiation, and replacement by bone occur sequentially. This sequence is spatially represented by the structure of the growth plate of the embryo, and reflects the evolution of bone. Endochondral bone formation is mainly regulated by the interactions of chondrocytes and osteoblasts; a variety of signals are implicated in this regulation. The roles of factors regulating chondrocyte proliferation and hypertrophy including the Sox trio, PTH related peptide (PTHrP), Indian hedgehog (Ihh), the runt-related transcription factor (Runx) family, fibroblast growth factor receptor 3 (FGFR3) and bone morphogenetic protein (BMP) and other factors including hypoxia-inducible factor 1alpha (HIF-1alpha) and vascular endothelial growth factor (VEGF) will be discussed.

Animals↗

[Experimental study on osteoking in promoting gene expression of core binding factor alpha 1 in necrotic femoral head of rabbits].

OBJECTIVE: To study the effects of Osteoking in promoting gene expression of core binding factor alpha 1 (cbfalpha 1) in necrotic femoral head of rabbits. METHODS: Rabbit model of femoral head necrosis (FHN) was induced by intravenous injection of lipopolysaccharide (LPS) 10 microg/kg body weight twice with an interval of 24 h and intramuscular injection with methyl prednisone (MPS) 20 mg/kg body weight 3 times. The dynamic changes of cbfalpha 1 gene expression in the femoral head were observed with immunohistochemistry and real-time quantitative PCR. RESULTS: The protein expression of cbfa 1 gene was negative in both model and treatment groups at the 4th week, it turned to weakly positive in the treatment group at the 8th and 12th week but still negative in the model group. The mRNA expression of cbfalpha 1 in the treatment group was 2.87 times that in the model group at the 12th week. There was no significant difference in cbfalpha 1 expression between the normal rabbits with or without Osteoking treatment. CONCLUSION: Osteoking could promote the endogenous cbfalpha 1 expression in the FHN, the effect is better along with the prolonging of the time applied. But it showed no affection on cbfalpha 1 expression in the normal femoral head of rabbits.

Animals↗