• 제목/요약/키워드: Wnt signaling pathway

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β-catenin 유전자의 3T3-L1 지방세포 및 인체에서의 지방축적 연관성 연구 (Association of β-Catenin with Fat Accumulation in 3T3-L1 Adipocytes and Human Population)

  • 배성민;이해용;채수안;오동진;박석원;윤유식
    • 생명과학회지
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    • 제21권9호
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    • pp.1301-1309
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    • 2011
  • 비만은 중성지방이 체내에 과잉으로 축적되어 지방 본래의 에너지 저장과 대사조절의 기능을 정상적으로 하지 못하는 상태를 말한다. 본 연구진은 siRNA 방법을 이용하여 Wingless-type MMTV integration site (WNT)/${\beta}$-catenin pathway에 의한 지방축적 조절에서 중요한 역할을 하는 유전자를 확인하고자 하였다. WNT/${\beta}$-catenin pathway에 속한 유전자 중 ${\beta}$-catenin을 siRNA기법을 통하여 knock down 한 후 adipogenesis의 핵심 조절자인 peroxisome proliferator-activated receptor (PPAR)${\gamma}$, CCAAT/enhancer binding protein (C/EBP)${\alpha}$의 mRNA와 단백질 발현 변화를 확인해 보았다. 그 결과 ${\beta}$-catenin유전자의 knock down에 의하여 PPAR${\gamma}$, CEBP${\alpha}$의 유전자 및 단백질 발현이 유의하게 증가함을 확인하였다. WNT/${\beta}$-catenin pathway에서 ${\beta}$-catenin의 상위 조절자인 LRP6와 DVL2의 knock down에 의한 adipogenesis 조절 유무를 분석하였으나 유의적인 영향을 미치지 못하는 것으로 발견되었다. 이는 ${\beta}$-catenin이 상위 조절자들의 영향을 받기 보다는 독립적인 기작으로 PPAR${\gamma}$, CEBP${\alpha}$의 mRNA, 단백질 발현의 조절함으로써 adipogenesis의 negative regulator의 기능을 하는 것으로 판단된다. 또한 290명의 한국인을 대상으로 비만의 대표적인 표지인자인 혈중 중성지방 농도와 혈중 콜레스테롤 농도에 대한 ${\beta}$-catenin 유전자의 단일염기다형성(SNP)과의 연관성을 통계 분석해보았다. 그 결과 프로모터 부분에 위치한 4종류의 SNP 중에서 transcription개시 지점으로부터 -10,288위치에 존재하는 C>T polymorphism인 rs7630377이 유의하게 혈중 중성지방 농도와 연관성이 있음을 확인할 수 있었다. 본 연구의 결과는 ${\beta}$-catenin이 세포 수준에서 뿐 아니라 인체에서도 지방축적에 유의적인 영향을 미치고 있음을 제시하고 있다.

Anti-inflammatory Effect of Flower Bud and Fruit of Sweet Persimmon, Diospyros kaki T.

  • Park, Yeo Ok;Lee, Jeong Ah;Park, Seong Moon;Ha, Min Hee;Joo, Woo Hong;Kim, Dong Wan
    • 대한의생명과학회지
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    • 제26권2호
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    • pp.85-92
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    • 2020
  • Various beneficial effects of sweet persimmon (Diospyros kaki T.) including anti-oxidation, anti-bacteria and viruses, anti-allergy were widely reported previously. However, the anti-inflammatory effect and its molecular mechanisms are not clear. In this study, the anti-inflammatory effect of the extracts of flower bud and fruit of sweet persimmon was investigated in LPS-treated RAW264.7 cells. Both extracts of flower bud and fruit showed strong inhibitory effect on the LPS-induced NF-κB activation. IκBα, the inhibitor of NF-κB, was increased and the expressions of NF-κB target genes, COX-2 and iNOS, were suppressed by the treatment with the extracts of flower bud and fruit. The expressions of pro-inflammatory cytokines, IL-1β, IL-6, TNF-α were also suppressed by the extracts. In addition, the LPS-induced wnt/β-catenin pathway and its related gene expressions including cyclin D1, wnt 3a, wnt 5a were suppressed by the extracts. The extracts also showed anti-oxidant activity and suppressive effect on the LPS-induced apoptosis of RAW264.7 cells. These results suggest that the flower bud and fruit of sweet persimmon display strong anti-inflammatory effect through inhibiting the pro-inflammatory signaling pathways in the cells.

The primary cilium as a multiple cellular signaling scaffold in development and disease

  • Ko, Hyuk-Wan
    • BMB Reports
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    • 제45권8호
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    • pp.427-432
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    • 2012
  • Primary cilia, single hair-like appendage on the surface of the most mammalian cells, were once considered to be vestigial cellular organelles for a past century because of their tiny structure and unknown function. Although they lack ancestral motility function of cilia or flagella, they share common ground with multiciliated motile cilia and flagella on internal structure such as microtubule based nine outer doublets nucleated from the base of mother centrioles called basal body. Making cilia, ciliogenesis, in cells depends on the cell cycle stage due to reuse of centrioles for cell division forming mitotic spindle pole (M phase) and assembling cilia from basal body (starting G1 phase and maintaining most of interphase). Ciliary assembly required two conflicting processes such as assembly and disassembly and balance between these two processes determines the length of cilia. Both process required highly conserved transport system to supply needed substance to grow tip of cilia and bring ciliary turnover product back to the base of cilia using motor protein, kinesin and dynein, and transport protein complex, IFT particles. Disruption of ciliary structure or function causes multiple human disorder called ciliopathies affecting disease of diverse ciliated tissues ranging from eye, kidney, respiratory tract and brain. Recent explosion of research on the primary cilia and their involvement on animal development and disease attracts scientific interest on how extensively the function of cilia related to specific cell physiology and signaling pathway. In this review, I introduce general features of primary cilia and recent progress in understanding of the ciliary length control and signaling pathways transduced through primary cilia in vertebrates.

Current Opinion in Molecular Pathology of Ameloblastoma: A Literature Review

  • Dong‑Joon, Lee;Shujin, Li;Han‑Sung, Jung
    • Journal of Korean Dental Science
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    • 제15권2호
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    • pp.121-131
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    • 2022
  • Ameloblastoma is the most representative epithelial odontogenic tumor in the craniofacial region. Through several studies on Ameloblastoma that have been conducted so far, we have been able to get closer to the reality of Ameloblastoma. However, groundbreaking insight into the pathophysiology of Ameloblastoma has not yet been provided. This review assessed three aspects of five recently published papers on Ameloblastoma: cancer stem cells, calcium signaling, and tumor microenvironment, and compared them with previous studies on tumor physiology, including cancer. In addition, the characteristics of Ameloblastoma revealed by the experimental methods presented in the currently published five papers provide the possibility of Ameloblastoma as a study model in general tumor or cancer studies. Furthermore, the mechanisms of action of the chemicals identified in the studies support their potential as candidates for the second-line treatment of Ameloblastoma.

Cloning, Purification and NMR Studies on β-catenin C-terminal Domain

  • Oh, Jeongmin;Choi, Sooho;Yun, Ji-Hye;Ko, Yoon-Joo;Choi, Kang-Yell;Lee, Weontae
    • 한국자기공명학회논문지
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    • 제21권2호
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    • pp.72-77
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    • 2017
  • ${\beta}-catenin$ is a key signaling protein which regulates cell signaling and gene transcription. Abnormal activation of ${\beta}-catenin$ is linked to many cancers, particularly with colorectal cancers. Although many genetic and biological studies on $Wnt/{\beta}-catenin$ have been reported and structures of the complex between ${\beta}-catenin$ and its diverse binding partners have been published, many of them have focused on armadillo repeat domain of ${\beta}-catenin$. Both N- and C-terminal domains have been suggested to regulate interactions of ${\beta}-catenin$ with other molecules, but still little is known about the C-terminal unstructured domain. To investigate the structure of this domain, construct of C-terminus was designed and structural studies were performed using size exclusion chromatography (SEC), circular dichroism (CD), fluorescence and nuclear magnetic resonance (NMR) spectroscopy. We observed that not only the purified full-length construct but the purified C-terminal construct also dimerizes in solution by SEC, suggesting that this domain involves in dimerization of ${\beta}-catenin$. CD and fluorescence data indicate its flexibility and structural formation in the presence of membrane environments.

β-carotene regulates cancer stemness in colon cancer in vivo and in vitro

  • Lee, Kyung Eun;Kwon, Minseo;Kim, Yoo Sun;Kim, Yerin;Chung, Min Gi;Heo, Seung Chul;Kim, Yuri
    • Nutrition Research and Practice
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    • 제16권2호
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    • pp.161-172
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    • 2022
  • BACKGROUND/OBJECTIVES: Colorectal cancer (CRC) is the third most common cancer worldwide and has a high recurrence rate, which is associated with cancer stem cells (CSCs). β-carotene (BC) possesses antioxidant activity and several anticancer mechanisms. However, no investigation has examined its effect on colon cancer stemness. MATERIALS/METHODS: CD133+CD44+ HCT116 and CD133+CD44+ HT-29 cells were isolated and analyzed their self-renewal capacity by clonogenic and sphere formation assays. Expressions of several CSCs markers and Wnt/β-catenin signaling were examined. In addition, CD133+CD44+ HCT116 cells were subcutaneously injected in xenograft mice and analyzed the effect of BC on tumor formation, tumor volume, and CSCs markers in tumors. RESULTS: BC inhibited self-renewal capacity and CSC markers, including CD44, CD133, ALDH1A1, NOTCH1, Sox2, and β-catenin in vitro. The effects of BC on CSC markers were confirmed in primary cells isolated from human CRC tumors. BC supplementation decreased the number and size of tumors and delayed the tumor-onset time in xenograft mice injected with CD133+CD44+ HCT116 cells. The inhibitory effect of BC on CSC markers and the Wnt/β-catenin signaling pathway in tumors was confirmed in vivo as well. CONCLUSIONS: These results suggest that BC may be a potential therapeutic agent for colon cancer by targeting colon CSCs.

Parkin-induced Decrease of ${\beta}$-catenin is Mediated by Protein Kinase C in TNF-${\alpha}$-treated HeLa Cells

  • Lee, Min Ho;Jung, Byung Chul;Kim, Sung Hoon;Lee, Juyeon;Jung, Dongju;Cho, Jang-Eun;Rhee, Ki-Jong;Kim, Yoon Suk
    • 대한의생명과학회지
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    • 제19권2호
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    • pp.83-89
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    • 2013
  • Parkin is a protein known to have tumor suppressive functions. In a previous study, we determined that Parkin expression restores susceptibility to TNF-${\alpha}$-induced death in HeLa cells. ${\beta}$-catenin is a key protein in the Wnt signaling pathway and excessive activation of the ${\beta}$-catenin pathway can promote cancer development. In this study, we found that ${\beta}$-catenin levels decreased dramatically in Parkin over-expressing HeLa cells treated with TNF-${\alpha}$. We used chemical inhibitors of cell signaling pathways to identify the signaling molecules involved in ${\beta}$-catenin down-regulation. Our results indicate that the PKC inhibitor (RO-31-7549) blocked parkin-induced down-regulation of ${\beta}$-catenin. We also show that Parkin-induced decrease in cell viability in TNF-${\alpha}$-treated HeLa cells is alleviated upon treatment with a PKC inhibitor. Taken together, these results suggest the possibility that ${\beta}$-catenin reduction may be associated with Parkin-induced decrease of cell viability in TNF-${\alpha}$ treated HeLa cells.

STAT3 Potentiates SIAH-1 Mediated Proteasomal Degradation of β-Catenin in Human Embryonic Kidney Cells

  • Shin, Minkyung;Yi, Eun Hee;Kim, Byung-Hak;Shin, Jae-Cheon;Park, Jung Youl;Cho, Chung-Hyun;Park, Jong-Wan;Choi, Kang-Yell;Ye, Sang-Kyu
    • Molecules and Cells
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    • 제39권11호
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    • pp.821-826
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    • 2016
  • The ${\beta}$-catenin functions as an adhesion molecule and a component of the Wnt signaling pathway. In the absence of the Wnt ligand, ${\beta}$-catenin is constantly phosphorylated, which designates it for degradation by the APC complex. This process is one of the key regulatory mechanisms of ${\beta}$-catenin. The level of ${\beta}$-catenin is also controlled by the E3 ubiquitin protein ligase SIAH-1 via a phosphorylation-independent degradation pathway. Similar to ${\beta}$-catenin, STAT3 is responsible for various cellular processes, such as survival, proliferation, and differentiation. However, little is known about how these molecules work together to regulate diverse cellular processes. In this study, we investigated the regulatory relationship between STAT3 and ${\beta}$-catenin in HEK293T cells. To our knowledge, this is the first study to report that ${\beta}$-catenin-TCF-4 transcriptional activity was suppressed by phosphorylated STAT3; furthermore, STAT3 inactivation abolished this effect and elevated activated ${\beta}$-catenin levels. STAT3 also showed a strong interaction with SIAH-1, a regulator of active ${\beta}$-catenin via degradation, which stabilized SIAH-1 and increased its interaction with ${\beta}$-catenin. These results suggest that activated STAT3 regulates active ${\beta}$-catenin protein levels via stabilization of SIAH-1 and the subsequent ubiquitin-dependent proteasomal degradation of ${\beta}$-catenin in HEK293T cells.

The Hairless Gene: A Putative Navigator of Hair Follicle Development

  • Kim, Jeong-Ki;Kim, Bong-Kyu;Park, Jong-Keun;Choi, Jee-Hyun;KimYoon, Sung-Joo
    • Genomics & Informatics
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    • 제9권3호
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    • pp.93-101
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    • 2011
  • The Hairless (HR ) gene regulates the expression of several target genes as a transcriptional corepressor of nuclear receptors. The hair follicle (HF), a small independent organ of the skin, resides in the epidermis and undergoes regenerative cycling for normal hair formation. HF development requires many genes and signaling pathways to function properly in time and space, one of them being the HR gene. Various mutations of the HR gene have been reported to cause the hair loss pheno-type in rodents and humans. In recent studies, it has been suggested that the HR gene is a critical player in the regulation of the hair cycle and, thus, HF development. Furthermore, the HR gene is associated with the Wnt signaling pathway, which regulates proliferation and differentiation of cells and plays an essential role in hair and skin development. In this review, we summarize the mutations responsible for human hair disorders and discuss the roles of the HR gene in HF development.