• 제목/요약/키워드: c-myc expression

검색결과 137건 처리시간 0.019초

In vitro에서 1-β-D-arabinofuranosyl-cytosine의 염색체 파열 유도 (1-β-D-Arabinofuranosyl-cytosine Induces Chromosomal Breaks in vitro)

  • 전인상
    • Clinical and Experimental Pediatrics
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    • 제46권12호
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    • pp.1186-1193
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    • 2003
  • 목 적 : 염색체 취약부위는 세포를 특정의 화학물질에 노출시키거나 특수한 배양조건에서 배양 할 때 쉽게 파열되는 염색체상의 특정구역이다. 취약부위는 유전성질환 및 악성종양과 관련이 있으며, 현재에는 분자생물학적 실험기법의 개발로 분자수준에서 이해가 되고 있다. 새로운 취약부위 및 취약부위의 발현을 높이거나 쉽게 관찰할 수 있는 실험실적 조건을 알아보기 위하여 항암제로 사용되는 Ara-C를 이용하여 염색체파열을 조사하여 보았다. 한편 염색체 취약부위가 종양형성과 관련이 있다는 사실에 기초하여 Ara-C에 의해 발열되는 취약부위와 암유전자가 위치하는 부위 및 종양에서 일정하게 염색체변이가 관찰되는 특정의 염색체 부위와의 상관관계도 알아보고자 하였다. 방 법 : 정상 성인 남녀 각각 3명의 말초혈액 내 T-림프구를 세포배양 후 Ara-C를 첨가하고 다시 caffeine을 처리한 뒤 종전에 시행했던 방법과 동일하게 검체 처리하여 염색체파열 부위를 관찰하였다. 염색체 취약부위는 염색체상의 일정부위에서 100개의 염색체파열 당 2회 이상의 염색체파열이 6명 중 4명 이상에서 관찰되는 경우로 정의하였다. 결 과 : 1) T-림프구를 엽산이 부족한 MEN-FA 배지에서 배양 시 Ara-C는 100개의 분열세포 당 252.1개의 염색체파열을 유도하였으며, Ara-C를 처리하지 않은 대조군에서 25.2개가 관찰되어 Ara-C를 처리한 경우에 염색체파열이 의미 있게 많았다(P<0.05). 2) Ara-C에 의한 염색체파열은 엽산이 부족한 MEM-FA 배지에서 엽산이 충분한 RPMI 1640 배지에서 보다 많이 되었다(P<0.05). 한편, 2.0 mM 농도의 caffeine은 엽산만 부족한 배양 배지에서는 염색체파열을 상승시키지 못했으나, Ara-C와 병행사용 시 상승시켰다. 3) Ara-C에 의해 가장 많이 파열된 부위는 3p14.2.이었으며, 발현된 취약부위는 20부위였다. 4) 발현된 취약부위 중 7 부위는 JUN, SKI, REL, N-MYC, FHIT, MET, ETS-1, FOS의 암유전자가 위치하는 부위와 일치하였으며, 15부위는 급성림프구성백혈병, 급성골수성백혈병, 만성림프구성백혈병, 골수이형성성증, 악성흑색종, 신경모세포종, 소세포성폐암, 난소암, 유전성 신장암, 혼합성 지방육종시 염색체상에 이상이 있는 부위와 일치하였다. 결 론 : S기 특이성 항암제인 Ara-C는 정상성인의 T-림프구를 엽산이 부족한 MEM-FA배지에서 배양시 염색체 파열을 대조군에 비해 의미 있게 유도하였다. 한편으로 Ara-C 특이성 염색체 취약부위는 암유전자가 위치하는 부위 및 특정 종양에서 관찰되는 특이한 염색체변이가 있는 부위와 상당 예에서 일치하여 아직 알려지지 않은 암유전자를 찾거나 분석하는데 기초적인 자료를 제공할 뿐 아니라 염색체변화와 종양형성과정의 상관관계를 이해하는데 도움이 될 것으로 사료된다.

역전사 중합효소 연쇄반응을 이용한 표면 적심성에 따른 골수유래 줄기세포의 생물학적 평가 (Biological Evaluation of Bone Marrow-Derived Stem Cells onto Different Wettability by RT-PCR)

  • 김은정;박종수;김문석;조선행;이종문;이해방;강길선
    • 폴리머
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    • 제28권3호
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    • pp.218-224
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    • 2004
  • 고분자 생체재료에서 세포부착과 성장은 재료의 적심성, 화학구조, 표면전하 및 거칠기 등의 표면 성질에 의존한다. 본 연구에서는 저밀도 폴리에틸렌 필름 (LDPE)의 표면 적심성과 골수유래 줄기세포의 증식 및 성장성을 측정하기 위하여 플라즈마 처리를 실시하였으며 개질된 필름 표면의 특성을 조사하였다. 또한 LDPE 필름에서의 세포부착과 증식률은 세포수 관찰과 역전사 중합효소 연쇄반응으로 확인하였다. 표면성질의 하나인 물 접촉각 측정 결과 플라즈마 처리 시간이 길어짐에 따라 필름표면의 접촉각이 감소하였으며 암형성 유전자와 암억제 유전자의 발현률이 60∼70$^{\circ}$ 사이에서 높음을 확인할 수 있었다. 또한 세포수 관찰을 통해 접촉각이 60∼70$^{\circ}$인 표면에서 세포 증식률이 우수하여 표면성질이 세포의 성장과 분화에 중요함을 확인하였다.

Anthocyanins from the Fruit of Vitis Coignetiae Pulliat Inhibit TNF-Augmented Cancer Proliferation, Migration, and Invasion in A549 Cells

  • Lu, Jing Nan;Panchanathan, Radha;Lee, Won Sup;Kim, Hye Jung;Kim, Dong Hoon;Choi, Yung Hyun;Kim, GonSup;Shin, Sung Chul;Hong, Soon Chan
    • Asian Pacific Journal of Cancer Prevention
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    • 제18권11호
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    • pp.2919-2923
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    • 2017
  • Objective: Anthocyanins belong to a class of flavonoids, exhibiting antioxidant and anti-inflammatory actions have been reported to have anti-cancer effects. Here, we investigated whether anthocyanins can inhibit cancer cell proliferation, invasion, and angiogenesis in human lung cancer A549 cells, which are critically involved in cancer metastasis. Methods: We used anthocyanins from fruits of Vitis coignetiae Pulliat (AIMs) which has been used in Korean folk medicine for the treatment of inflammatory diseases and cancers. We have performed cell proliferation assays, cell invasion assay, gelatin zymography, wound healing assay and western blotting to examine whether anthocyanins can inhibit cancer cell proliferation, invasion, and angiogenesis in A549 cells. Result: AIMs did not inhibit cancer cell proliferation on A549 cells. Also, AIMs suppressed cancer migration, and invasion by supressing MMP-2 and MMP-9 expression. The Immuno-blotting results also revealed that AIMs suppressed the proteins involved in cancer proliferation (COX-2, C-myc, cyclin D1), migration and invasion (MMP-2, MMP-9), anti-apoptosis (XIAP, and c-IAP2), adhesion and angiogenesis (ICAM-1, VEGF). Conclusion: This study demonstrates that the anthocyanins isolated from fruits of Vitis coignetiae Pulliat inhibit cancer proliferation, cancer migration, and invasion that is involve in cancer-metastasis. This study provides evidence that AIMs might have anti-cancer effects on human lung cancer.

Differential Activation of Ras/Raf/MAPK Pathway between Heart and Cerebral Artery in Isoproterenol-induced Cardiac Hypertrophy

  • Kim, Hyun-Ju;Kim, Na-Ri;Joo, Hyun;Youm, Jae-Boum;Park, Won-Sun;Warda, Mohamed;Kang, Sung-Hyun;Thu, Vu-Thi;Khoa, Tran-Minh;Han, Jin
    • The Korean Journal of Physiology and Pharmacology
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    • 제9권5호
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    • pp.299-304
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    • 2005
  • Cardiac hypertrophy contributes an increased risk to major cerebrovascular events. However, the molecular mechanisms underlying cerebrovascular dysfunction during cardiac hypertrophy have not yet been characterized. In the present study, we examined the molecular mechanism of isoproterenol (ISO)-evoked activation of Ras/Raf/MAPK pathways as well as PKA activity in cerebral artery of rabbits, and we also studied whether the activations of these signaling pathways were altered in cerebral artery, during ISO-induced cardiac hypertrophy compared to heart itself. The results show that the mRNA level of c-fos (not c-jun and c-myc) in heart and these genes in cerebral artery were considerably increased during cardiac hypertrophy. These results that the PKA activity and activations of Ras/Raf/ERK cascade as well as c-fos expression in rabbit heart during cardiac hypertrophy were consistent with previous reports. Interestingly, however, we also showed a novel finding that the decreased PKA activity might have differential effects on Ras and Raf expression in cerebral artery during cardiac hypertrophy. In conclusion, there are differences in molecular mechanisms between heart and cerebral artery during cardiac hypertrophy when stimulated with β2 adrenoreceptor (AR), suggesting a possible mechanism underlying cerebrovascular dysfunction during cardiac hypertrophy.

miR-133a-3p and miR-145-5p co-promote goat hair follicle stem cell differentiation by regulating NANOG and SOX9 expression

  • Jian Wang;Xi Wu;Liuming Zhang;Qiang Wang;Xiaomei Sun;Dejun Ji;Yongjun Li
    • Animal Bioscience
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    • 제37권4호
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    • pp.609-621
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    • 2024
  • Objective: Hair follicle stem cells (HFSCs) differentiation is a critical physiological progress in skin hair follicle (HF) formation. Goat HFSCs differentiation is one of the essential processes of superior-quality brush hair (SQBH) synthesis. However, knowledge regarding the functions and roles of miR-133a-3p and miR-145-5p in differentiated goat HFSCs is limited. Methods: To examine the significance of chi-miR-133a-3p and chi-miR-145-5p in differentiated HFSCs, overexpression and knockdown experiments of miR-133a-3p and miR-145-5p (Mimics and Inhibitors) separately or combined were performed. NANOG, SOX9, and stem cell differentiated markers (β-catenin, C-myc, Keratin 6 [KRT6]) expression levels were detected and analyzed by using real-time quantitative polymerase chain reaction, western blotting, and immunofluorescence assays in differentiated goat HFSCs. Results: miR-133a-3p and miR-145-5p inhibit NANOG (a gene recognized in keeping and maintaining the totipotency of embryonic stem cells) expression and promote SOX9 (an important stem cell transcription factor) expression in differentiated stem cells. Functional studies showed that miR-133a-3p and miR-145-5p individually or together overexpression can facilitate goat HFSCs differentiation, whereas suppressing miR-133a-3p and miR-145-5p or both inhibiting can inhibit goat HFSCs differentiation. Conclusion: These findings could more completely explain the modulatory function of miR-133a-3p and miR-145-5p in goat HFSCs growth, which also provide more understandings for further investigating goat hair follicle development.

The Effect of (1S,2S,3E,7E,11E)-3,7,11,15-Cembratetraen-17,2-Olide (LS-1) from Lobophyyum sp. on the Apoptosis Induction of SNU-C5 Human Colorectal Cancer Cells

  • Kim, Eun-Ji;Kang, Jung Il;Tung, Nguyen-Huu;Kim, Young-Ho;Hyun, Jin Won;Koh, Young Sang;Chang, Weon-Young;Yoo, Eun Sook;Kang, Hee-Kyoung
    • Biomolecules & Therapeutics
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    • 제24권6호
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    • pp.623-629
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    • 2016
  • (1S,2S,3E,7E,11E)-3,7,11,15-cembratetraen-17,2-olide (LS-1), a marine cembrenolide diterpene, has anticancer activity against colon cancer cells such as HT-29, SNU-C5/5-FU (fluorouracil-resistant SNU-C5) and SNU-C5. However, the action mechanism of LS-1 on SNU-C5 human colon cancer cells has not been fully elucidated. In this study, we investigated whether the anticancer effect of LS-1could result from apoptosis via the modulation of $Wnt/{\beta}$-catenin and the TGF-${\beta}$ pathways. When treated with the LS-1, we could observe the apoptotic characteristics such as apoptotic bodies and the increase of sub-G1 hypodiploid cell population, increase of Bax level, decrease of Bcl-2 expression, cleavage of procaspase-3 and cleavage of poly (ADP-ribose) polymerase in SNU-C5 cells. Furthermore, the apoptosis induction of SNU-C5 cells upon LS-1 treatment was also accompanied by the down-regulation of $Wnt/{\beta}$-catenin signaling pathway via the decrease of GSK-$3{\beta}$ phosphorylation followed by the decrease of ${\beta}$-catenin level. In addition, the LS-1 induced the activation of TGF-${\beta}$ signaling pathway with the decrease of carcinoembryonic antigen which leads to decrease of c-Myc, an oncoprotein. These data suggest that the LS-1 could induce the apoptosis via the down-regulation of $Wnt/{\beta}$-catenin pathway and the activation of TGF-${\beta}$ pathway in SNU-C5 human colon cancer cells. The results support that the LS-1 might have potential for the treatment of human colon cancer.

Overexpression of NDRG2 Can Inhibit Neuroblastoma Cell Proliferation through Negative Regulation by CYR61

  • Zhang, Zhi-Guo;Li, Gang;Feng, Da-Yun;Zhang, Jian;Zhang, Jing;Qin, Huai-Zhou;Ma, Lian-Ting;Gao, Guo-Dong;Wu, Lin
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권1호
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    • pp.239-244
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    • 2014
  • Several recent studies have showed that the n-myc downstream regulated gene 2 (NDRG2) is a new tumor suppressor gene, and that it plays an important role in tumor suppression in several cancers or cancer cell lines. However, few studies focused on its function in neuroblastoma cells. In the present investigation, we demonstrated that NDRG2 overexpression inhibited their proliferation. Using a cDNA microarray, we found that overexpression of NDRG2 inhibited the expression of cysteine-rich protein 61 (CYR61), a proliferation related gene. From our research, CYR61 may partially hinder NDRG2-mediated inhibition of cell proliferation. Overexpression of NDRG2 resulted in accumulation of cells in the G1 phase, which was accompanied by upregulation of p21 and p27 and downregulation of CDK4 and cyclin D1. Taken together, these data indicate that NDRG2 inhibits the proliferation of neuroblastoma cells partially through suppression of CYR61. Our findings offer novel insights into the physiological roles of NDRG2 in neuroblastoma cell proliferation, and NDRG2 may prove to be effective candidate for the treatment of children with neuroblastoma.

Long Non-Coding RNA CCAT1 Acts as a Competing Endogenous RNA to Regulate Cell Growth and Differentiation in Acute Myeloid Leukemia

  • Chen, Lianxiang;Wang, Wei;Cao, Lixia;Li, Zhijun;Wang, Xing
    • Molecules and Cells
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    • 제39권4호
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    • pp.330-336
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    • 2016
  • Long non-coding RNAs (lncRNAs) are involved in multiple cellular events, as well as in tumorigenesis. Colon cance-rassociated transcript-1 (CCAT1) gene encodes an lncRNA whose over-activation was observed in an expanding list of primary human solid tumors and tumor cell lines, however its biological roles in acute myeloid leukaemia (AML) has not been reported yet at present. In this study, the aberrant upregulation of CCAT1 was detected in French-American-British M4 and M5 subtypes of adult AML patients. By gain- and loss-of-function analysis, we determined that CCAT1 repressed monocytic differentiation and promoted cell growth of HL-60 by sequestering tumor suppressive miR-155. Accordingly, a significant decrease in miR-155 level was detected in AML patients. Reintroduction of miR-155 into HL-60 cells restored monocytic maturation and repressed cell proliferation. Furthermore, CCAT1 could up-regulated c-Myc via its competing endogenous RNA (ceRNA) activity on miR-155. In conclusion, these results revealed new mechanism of lncRNA CCAT1 in AML development, and suggested that the manipulation of CCAT1 expression could serve as a potential strategy in AML therapy.

Acceleration of Mesenchymal-to-Epithelial Transition (MET) during Direct Reprogramming Using Natural Compounds

  • Seo, Ji-Hye;Jang, Si Won;Jeon, Young-Joo;Eun, So Young;Hong, Yean Ju;Do, Jeong Tae;Chae, Jung-il;Choi, Hyun Woo
    • Journal of Microbiology and Biotechnology
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    • 제32권10호
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    • pp.1245-1252
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    • 2022
  • Induced pluripotent stem cells (iPSCs) can be generated from somatic cells using Oct4, Sox2, Klf4, and c-Myc (OSKM). Small molecules can enhance reprogramming. Licochalcone D (LCD), a flavonoid compound present mainly in the roots of Glycyrrhiza inflata, acts on known signaling pathways involved in transcriptional activity and signal transduction, including the PGC1-α and MAPK families. In this study, we demonstrated that LCD improved reprogramming efficiency. LCD-treated iPSCs (LCD-iPSCs) expressed pluripotency-related genes Oct4, Sox2, Nanog, and Prdm14. Moreover, LCD-iPSCs differentiated into all three germ layers in vitro and formed chimeras. The mesenchymal-to-epithelial transition (MET) is critical for somatic cell reprogramming. We found that the expression levels of mesenchymal genes (Snail2 and Twist) decreased and those of epithelial genes (DSP, Cldn3, Crb3, and Ocln) dramatically increased in OR-MEF (OG2+/+/ROSA26+/+) cells treated with LCD for 3 days, indicating that MET effectively occurred in LCD-treated OR-MEF cells. Thus, LCD enhanced the generation of iPSCs from somatic cells by promoting MET at the early stages of reprogramming.

Homogeneity of XEN Cells Is Critical for Generation of Chemically Induced Pluripotent Stem Cells

  • Dahee Jeong;Yukyeong Lee;Seung-Won Lee;Seokbeom Ham;Minseong Lee;Na Young Choi;Guangming Wu;Hans R. Scholer;Kinarm Ko
    • Molecules and Cells
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    • 제46권4호
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    • pp.209-218
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    • 2023
  • In induced pluripotent stem cells (iPSCs), pluripotency is induced artificially by introducing the transcription factors Oct4, Sox2, Klf4, and c-Myc. When a transgene is introduced using a viral vector, the transgene may be integrated into the host genome and cause a mutation and cancer. No integration occurs when an episomal vector is used, but this method has a limitation in that remnants of the virus or vector remain in the cell, which limits the use of such iPSCs in therapeutic applications. Chemical reprogramming, which relies on treatment with small-molecule compounds to induce pluripotency, can overcome this problem. In this method, reprogramming is induced according to the gene expression pattern of extra-embryonic endoderm (XEN) cells, which are used as an intermediate stage in pluripotency induction. Therefore, iPSCs can be induced only from established XEN cells. We induced XEN cells using small molecules that modulate a signaling pathway and affect epigenetic modifications, and devised a culture method which can produce homogeneous XEN cells. At least 4 passages were required to establish morphologically homogeneous chemically induced XEN (CiXEN) cells, whose properties were similar to those of XEN cells, as revealed through cellular and molecular characterization. Chemically iPSCs derived from CiXEN cells showed characteristics similar to those of mouse embryonic stem cells. Our results show that the homogeneity of CiXEN cells is critical for the efficient induction of pluripotency by chemicals.