• 제목/요약/키워드: Dlx5

검색결과 14건 처리시간 0.024초

Dlx3 and Dlx5 Inhibit Adipogenic Differentiation of Human Dental Pulp Stem Cells

  • Lee, Hye-Lim;Nam, Hyun;Lee, Gene;Baek, Jeong-Hwa
    • International Journal of Oral Biology
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    • 제37권1호
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    • pp.31-36
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    • 2012
  • Dlx3 and Dlx5 are homeobox domain proteins and are well-known regulators of osteoblastic differentiation. Since possible reciprocal relationships between osteogenic and adipogenic differentiation in mesenchymal stem cells exist, we examined the regulatory role of Dlx3 and Dlx5 on adipogenic differentiation using human dental pulp stem cells. Over-expression of Dlx3 and Dlx5 stimulated osteogenic differentiation but inhibited adipogenic differentiation of human dental pulp stem cells. Dlx3 and Dlx5 suppressed the expression of adipogenic marker genes such as $C/EBP{\alpha}$, $PPAR{\gamma}$, aP2 and lipoprotein lipase. Adipogenic stimuli suppressed the mRNA levels of Dlx3 and Dlx5, whereas osteogenic stimuli enhanced the expression of Dlx3 and Dlx5 in 3T3-L1 preadipocytes. These results suggest that Dlx3 and Dlx5 exert a stimulatory effect on osteogenic differentiation of stem cells through the inhibition of adipogenic differentiation as well as direct stimulation.

두개골 및 두개봉합부 초기발육과정에서의 전사조절인자인 Msx2와 Dlx5의 역할 (THE ROLE OF TRANSCRIPTION FACTOR MSX2 AND DLX5 IN CALVARIAL BONE AND SUTURE DEVELOPMENT)

  • 송민호;박미현;남순현;김영진;류현모;김현정
    • 대한소아치과학회지
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    • 제30권3호
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    • pp.391-405
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    • 2003
  • 두개봉합부의 조기융합으로 일컬어지는 craniosynostosis는 두개봉합부에서의 골아세포의 조기분화 및 석회화의 결과로 나타나는 선천성 발육이상이다. 최근 유전학적 연구에 의하면 homeobox gene인 Msx2의 변이에 의해 Boston-type craniosynostosis가 야기되며, 또한 Dlx5 homozygote mutant mouse의 표현형에서 두개골의 골화지연을 포함한 다양한 두개안면부위의 이상을 발견하였다는 보고가 있었다. 게다가 Msx2와 Dlx5 homeodomain protein의 상호작용에 의해 성숙골아세포의 표지자인 osteocalcin의 전사를 조절할 수 있다는 사실이 알려져 있다. 이러한 일련의 결과들은 Msx2 Dlx5 및 osteocalcin 유전자들이 두개골의 골화과정과 두개봉합부의 형태발생에 중요한 역할을 담당하고 있음을 제시해주고 있다. 두개골의 성장과 두개봉합부의 형태발생시 이러한 유전자들의 기능을 알아보기위해 mouse의 태생기 (E15-E18) 동안 osteocalcin, Msx2, 및 Dlx5 유전자들의 발현양상을 조사하였다. Osteocalcin은 E15부터 두정골의 골막에서 관찰되었으며, 발생시기가 후기일수록 강한 발현양상을 나타내었다. Msx2는 시상봉합부의 미분화간엽조직과 osteogenic front에서 강하게 발현되었으며 경막과 hair follicle에서도 관찰되었다. Dlx5는 osteogenic front를 포함한 두정골의 골막에서 강하게 발현되었으나 시상봉합부의 미분화간엽조직 에서는 발현되지 않아, Msx2와는 발현양상의 차이를 나타내었다. 두개골과 두개봉합부의 발육과정에서의 Msx2와 Dlx5의 기능을 좀더 심도깊게 분석하기위해, 여러 가지 signaling molecule들의 protein을 사용하여 in vitro 실험을 시행하였다. BMP-2, -4 protein의 overexpression은 bead 주위로 Msx2 유전자의 발현을 유도하였으나, 다른 $TGF{\beta}$ superfamily인 $TGF{\beta}1$, GDF-6, -7 bead들 주위로는 Msx2를 관찰할 수 없었다. 또한 FGF, Shh protein 역시 bead주위로 Msx2의 발현을 유도하지않았다. 흥미롭게도 BMP-2, -4 protein의 overexpression은 bead 주위로 Dlx5 유전자의 발현을 유도하였으나, 다른 $TGF{\beta}$ superfamily, FGF, Shh bead주위로는 Dlx5를 관찰할 수 없어, Msx2와 동일한 결과를 나타내었다 이 결과들을 종합해볼 때, Msx2와 Dlx5 유전자는 두개골과 두개봉합부의 성장발육과정에 중요한 역할을 담당하고 있으며, BMP signaling은 이 두 전사조절인자들을 조절하므로써 두개골의 골화과정과 두개봉합부의 형태발생 및 유지에 관여하고 있음을 제시해주고 있다. 특히 BMP signaling에 specific downstream gene인 Msx2 및 Dlx5의 발현양상의 차이는 골아세포의 분화시 이들 유전자가 각각의 독특한 기능을 가지고 있음을 시사해주고 있다.

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The Expression of Matrix Metalloprotease 20 is Stimulated by Wild Type but not by 4 bp- or 2 bp-Deletion Mutant DLX3

  • Park, Hyun-Jung;Ryoo, Hyun-Mo;Woo, Kyung-Mi;Kim, Gwan-Shik;Baek, Jeong-Hwa
    • International Journal of Oral Biology
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    • 제34권1호
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    • pp.21-28
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    • 2009
  • Mutations in DLX3 are associated with both autosomal dominant hypoplastic hypomaturation amelogenesis imperfecta (ADHHAI) and tricho-dento-osseous (TDO) syndrome. ADHHAI is caused by a c.561_562delCT (2bp-del DLX3) mutation whereas TDO syndrome is associated with a c.571_574delGGGG (4bp-del DLX3) mutation. However, although the causal relationships between DLX3 and an enamel phenotype have been established, the pathophysiological role of DLX3 mutations in enamel development has not yet been clarified. In our current study, we prepared expression vectors for wild type and deletion mutant DLX3 products (4bp-del DLX3, 2bp-del DLX3) and examined the effects of their overexpression on the expression of the enamel matrix proteins and proteases. Wild type DLX3 enhanced the expression of matrix metalloprotease 20 (MMP20) mRNA and protein in murine ameloblast-like cells. However, neither a 4bp-del nor 2bp-del DLX3 increased MMP20 expression. Wild type DLX3, but not the above DLX3 mutants, also increased the activity of reporters containing 1.5 kb or 0.5 kb of the MMP20 promoter. An examination of protein stability showed that the half-life of wild type DLX3 protein was less than 12 h whilst that of both deletion mutants was longer than 24 h. Endogenous Dlx3 was also found to be continuously expressed during ameloblast differentiation. Since inactivating mutations in the gene encoding MMP20 are associated with amelogenesis imperfecta, the inability of 4bp-del or 2bp-del DLX3 to induce MMP20 expression suggests a possible involvement of such mutations in the enamel phenotype associated with TDO syndrome or ADHHAI.

Methylation of the Mouse Dlx5 and Osx Gene Promoters Regulates Cell Type-specific Gene Expression

  • Lee, Ji Yun;Lee, Yu Mi;Kim, Mi Jin;Choi, Je Yong;Park, Eui Kyun;Kim, Shin Yoon;Lee, Sam Poong;Yang, Jae Sup;Kim, Dong Sun
    • Molecules and Cells
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    • 제22권2호
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    • pp.182-188
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    • 2006
  • Dlx5 and Osx are master regulatory proteins essential for initiating the cascade leading to osteoblast differentiation in mammals, but the mechanism of osteoblast-specific expression is not fully understood. DNA methylation at CpG sequences is involved in tissue and cell type-specific gene expression. We investigated the methylation status of Dlx5 and Osx in osteogenic and nonosteogenic cell lines by methylationspecific PCR (MSP). The CpG dinucleotides of the Dlx5 and Osx promoter regions were unmethylated in osteogenic cell lines transcribing these genes but methylated in nonosteogenic cell lines. Treatment of C2C12 cells with 5-AzadC induced dose- and timedependent expression of Dlx5 and Osx mRNA by demethylating the corresponding promoters. Furthermore the mRNAs for the osteoblast markers ALP and OC, which were undetectable in untreated cells, gradually increased after 5-AzadC treatment. In addition, BMP-2 stimulation induced Dlx5 expression by hypomethylating its promoter. These findings suggest that DNA methylation plays an important role in cell type-specific expression of Dlx5 and Osx.

Bone Morphogenetic Protein 2 가 두개골 성장 및 두개봉합부의 초기형태발생에 미치는 영향 (THE EFFECT OF BONE MORPHOGENETIC PROTEIN 2(BMP2) ON THE GROWTH OF CRANIAL BONE AND EARLY MORPHOGENESIS OF THE CRANIAL SUTURE)

  • 정혜경;박미현;유현모;남순현;김영진;김현정
    • 대한소아치과학회지
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    • 제30권2호
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    • pp.217-228
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    • 2003
  • 뇌와 두개골의 조화로운 성장 발육은 성장 중인 두개골과 이 뼈들을 연결하는 두개봉합부들 그리고 발육중인 뇌사이의 일련의 상호작용에 의해 이루어진다. 두개봉합부의 조기융합으로 알려진 craniosynostosis는 이러한 상호균형적인 관계가 파괴될 때 야기될 수 있다. Bone morphogenetic protein의 하나인 Bmp2는 골 각각의 형태와 골격의 상대적인 비례성을 조절하는데 관여하고 있으며, Bmp의 하부 유전자로 알려져 있는 Msx2 homeobox 유전자의 돌연변이는 Boston-type craniosynostosis를 야기한다 이와 함께 Dlx5 homozygote mutant mouse의 표현형은 두개골 골화의 지연을 포함한 다양한 두개안면의 이상을 나타낸다. 이러한 사실들은 Bmp2, Msx2, Dlx5 유전자들이 두개봉합부의 형태발생과정에 중요하게 작용할 수 있음을 시사하고 있다. Mouse 두개봉합부의 초기형태발생과정에 위 유전자들의 기능을 알아보기 위해, 태생기 동안의 시상봉합부에서의 Bmp2, Msx2, Dlx5 유전자들의 발현양상을 in situ hybridization 방법을 이용하여 분석하였다. Bmp2 mRNA는 osteogenic front에서 강하게 발현되었으며, parietal bone의 골막에서도 관찰되었다. Msx2 mRNA는 시상봉합부의 미분화 간엽조직에서 강하게 발현되었으며, osteogenie front 및 dura mater에서도 관찰되었다. Dlx5 mRNA는 osteogenic front와 parietal bone에서 강하게 발현되었다. 두개봉합부에서의 Bmp signaling의 역할을 알아보기 위해 태생 15.5일 mouse의 두개골을 이용하여 in vitro 실험을 시행하였다. Bmp2-soaked beads를 osteogenic fronts에 올려놓고 48시간 기관배양한 결과 BSA 대조군에 비해 Bmp2 beads 주위 조직의 두께와 세포수가 증가하였으며 Msx2와 Dlx5 유전자들의 발현을 유도하였다. 그러나 FGF2 beads주위로는 이들 유전자들의 발현이 관찰되지 않았다. 이러한 결과들을 종합해 볼 때, Bmp2 유전자는 두개골 성장과 두개봉합부의 초기 형태발생을 조절하는데 중요한 역할을 담당하고 있으며, Bmp signaling은 Msx2, Dlx5 유전자들을 조절함으로써 두개골의 골화와 두개봉합부의 유지에 관여하고 있음을 제시해 주고 있다.

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마가목 열매에서 추출한 Cryptochlorogenic Acid 처리에 의한 조골세포 분화 촉진 효능 (Effect of Cryptochlorogenic Acid Extracted from Fruits of Sorbus commixta on Osteoblast Differentiation)

  • 김경민;김태훈;장원구
    • 한국식품영양과학회지
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    • 제46권3호
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    • pp.314-319
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    • 2017
  • 본 연구에서는 마가목 열매에서 추출한 chlorogenic acid의 유사체인 cryptochlorogenic acid(CCA)가 조골세포 분화에 미치는 영향에 대해서 알아보았다. 먼저 세포독성 여부를 확인하기 위해 MTT assay를 수행하였고 독성이 없다고 확인된 $5{\mu}M$의 농도에서 실험을 진행하였다. 그리고 조골세포로 분화할 수 있는 다분화능 세포인 C3H10T1/2와 조골세포인 MC3T3-E1에 CCA를 처리하여 표지 유전자인 Id1, Dlx5, Runx2의 발현을 확인하였다. 확인한 결과 표지유전자들의 발현이 대조군에 비교해서 증가한 것을 확인하였고, 그중 조골세포의 핵심 전사조절인자인 Runx2의 전사활성에 미치는 영향을 알아보기 위해 promoter assay를 수행하여 Runx2의 전사활성이 증가하는 것을 재확인하였다. 이러한 결과들을 토대로 CCA는 조골세포 분화를 촉진한다는 것을 알게 되었고, 골 질환 관련 제제로 CCA가 이용 가능할 수 있다고 생각된다.

GATA4 negatively regulates osteoblast differentiation by downregulation of Runx2

  • Song, Insun;Kim, Kabsun;Kim, Jung Ha;Lee, Young-Kyoung;Jung, Hyun-Jung;Byun, Hae-Ok;Yoon, Gyesoon;Kim, Nacksung
    • BMB Reports
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    • 제47권8호
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    • pp.463-468
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    • 2014
  • Osteoblasts are specialized mesenchymal cells that are responsible for bone formation. In this study, we examine the role of GATA4 in osteoblast differentiation. GATA4 was abundantly expressed in preosteoblast cells and gradually down-regulated during osteoblast differentiation. Overexpression of GATA4 in osteoblastic cells inhibited alkaline phosphatase activity and nodule formation in osteogenic conditioned cell culture system. In addition, overexpression of GATA4 attenuated expression of osteogenic marker genes, including Runx2, alkaline phosphatase, bone sialoprotein, and osteocalcin, all of which are important for osteoblast differentiation and function. Overexpression of GATA4 attenuated Runx2 promoter activity, whereas silencing of GATA4 increased Runx2 induction. We found that GATA4 interacted with Dlx5 and subsequently decreased Dlx5 binding activity to Runx2 promoter region. Our data suggest that GATA4 acts as a negative regulator in osteoblast differentiation by downregulation of Runx2.

GATA4 negatively regulates bone sialoprotein expression in osteoblasts

  • Song, Insun;Jeong, Byung-chul;Choi, Yong Jun;Chung, Yoon-Sok;Kim, Nacksung
    • BMB Reports
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    • 제49권6호
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    • pp.343-348
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    • 2016
  • GATA4 has been reported to act as a negative regulator in osteoblast differentiation by inhibiting the Dlx5 transactivation of Runx2 via the attenuation of the binding ability of Dlx5 to the Runx2 promoter region. Here, we determine the role of GATA4 in the regulation of bone sialoprotein (Bsp) in osteoblasts. We observed that the overexpression of Runx2 or Sox9 induced the Bsp expression in osteoblastic cells. Silencing GATA4 further enhanced the Runx2- and Sox9-mediated Bsp promoter activity, whereas GATA4 overexpression down-regulated Bsp promoter activity mediated by Runx2 and Sox9. GATA4 also interacted with Runx2 and Sox9, by attenuating the binding ability of Runx2 and Sox9 to the Bsp promoter region. Our data suggest that GATA4 acts as a negative regulator of Bsp expression in osteoblasts.

치아와 골형성에서의 Runx2와 Osterix의 기능 (FUNCTION OF RUNX2 AND OSTERIX IN OSTEOGENESIS AND TEETH)

  • 김정은
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제33권4호
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    • pp.381-385
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    • 2007
  • Bone is a dynamic organ that bone remodeling occurs throughout life and involves the process in which the bone matrix is broken down through resorption by osteoclasts and then built back again through bone formation by osteoblasts. Usually these two processes balance each other and a stable level of bone mass is maintained. We here discuss transcription factors involved in regulating the osteoblast differentiation pathway. Runx2 is a transcription factor which is essential in skeletal development by regulating osteoblast differentiation and chondrocyte maturation. Its companion subunit, Cbf${\beta}$ is needed for an early step in osteoblast differentiation pathway. Whereas Osterix(Osx) is a new identified osteoblast-specific transcription factor which is required for the differentiation of preosteoblasts into more mature and functional osteoblasts. We also discuss other transcription factors, Msx1 and 2, Dlx5 and 6, Twist, and Sp3 that affect skeletal patterning and development. Understanding the characteristics of mice in which these transcription factors are inactivated should help define their role in bone physiology and pathology of bone defects.

조직공학 재생골을 위한 연구에서 사람 골수 기원 간엽줄기세포의 나이에 따른 조골세포 분화능에 관한 연구 (Osteoblast differentiation of human bone marrow stromal cells (hBMSC) according to age for bone tissue engineering)

  • 송진아;류현모;최진영
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제36권4호
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    • pp.243-249
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    • 2010
  • Tissue engineered bone (TEB) can replace an autogenous bone graft requiring an secondary operation site as well as avoid complications like inflammation or infection from xenogenic or synthetic bone graft. Adult mesenchymal stem cells (MSC) for TEB are considered to have various ranges of differentiation capacity or multipotency by the donor site and age. This study examined the effect of age on proliferation capacity, differentiation capacity and bone morphogenetic protein-2 (BMP-2) responsiveness of human bone marrow stromal cells (hBMSC) according to the age. In addition, to evaluate the effect on enhancement for osteoblast differentiation, the hBMSC were treated with Trichostatin A (TSA) and 5-Azacitidine (5-AZC) which was HDAC inhibitors and methyltransferase inhibitors respectively affecting chromatin remodeling temporarily and reversibly. The young and old group of hBMSC obtained from the iliac crest from total 9 healthy patients, showed similar proliferation capacity. Cell surface markers such as CD34, CD45, CD90 and CD105 showed uniform expression regardless of age. However, the young group showed more prominent transdifferentiation capacity with adipogenic differentiation. The osteoblast differentiation capacity or BMP responsiveness was low and similar between young and old group. TSA and 5-AZC showed potential for enhancing the BMP effect on osteoblast differentiation by increasing the expression level of osteogenic master gene, such as DLX5, ALP. More study will be needed to determine the positive effect of the reversible function of HDAC inhibitors or methyltransferase inhibitors on enhancing the low osteoblast differentiation capacity of hBMSC.