• 제목/요약/키워드: differentiation cycle

검색결과 250건 처리시간 0.022초

Up-Regulation of $p27^{Kip1}$ Protects hES Cells from Differentiation-Associated and Caspase 3-Dependent Apoptosis

  • Park, So-Hyun;Kim, Min Kyoung;Lee, Chul-Hoon
    • Journal of Microbiology and Biotechnology
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    • 제22권12호
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    • pp.1790-1794
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    • 2012
  • Recently, it has been suggested that $p27^{Kip1}$, the cell cycle regulatory protein, plays a pivotal role in the progression of normal differentiation in murine embryonic stem (mES) cells. In the current study, we investigated the role of $p27^{Kip1}$ in the regulation of differentiation and apoptotic induction using Western blotting, quantitative real-time RT-PCR, and small interfering RNA (siRNA) assays and confocal laser scanning microscopic analysis of H9 human ES (hES) cells and H9-derived embryoid bodies (EBs) grown for 10 ($EB_{10}$) and 20 days ($EB_{20}$). Our results demonstrate that the proteins $p27^{Kip1}$ and cyclin D3 are strongly associated with cellular differentiation, and, for the first time, show that up-regulation of $p27^{Kip1}$ protects hES cells from inducing differentiation-associated and caspase 3-dependent apoptosis.

MiR-141-3p regulates myogenic differentiation in C2C12 myoblasts via CFL2-YAP-mediated mechanotransduction

  • Nguyen, Mai Thi;Lee, Wan
    • BMB Reports
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    • 제55권2호
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    • pp.104-109
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    • 2022
  • Skeletal myogenesis is essential to keep muscle mass and integrity, and impaired myogenesis is closely related to the etiology of muscle wasting. Recently, miR-141-3p has been shown to be induced under various conditions associated with muscle wasting, such as aging, oxidative stress, and mitochondrial dysfunction. However, the functional significance and mechanism of miR-141-3p in myogenic differentiation have not been explored to date. In this study, we investigated the roles of miR-141-3p on CFL2 expression, proliferation, and myogenic differentiation in C2C12 myoblasts. MiR-141-3p appeared to target the 3'UTR of CFL2 directly and suppressed the expression of CFL2, an essential factor for actin filament (F-actin) dynamics. Transfection of miR-141-3p mimic in myoblasts increased F-actin formation and augmented nuclear Yes-associated protein (YAP), a key component of mechanotransduction. Furthermore, miR-141-3p mimic increased myoblast proliferation and promoted cell cycle progression throughout the S and G2/M phases. Consequently, miR-141-3p mimic led to significant suppressions of myogenic factors expression, such as MyoD, MyoG, and MyHC, and hindered the myogenic differentiation of myoblasts. Thus, this study reveals the crucial role of miR-141-3p in myogenic differentiation via CFL2-YAP-mediated mechanotransduction and provides implications of miRNA-mediated myogenic regulation in skeletal muscle homeostasis.

Saturated fatty acid-inducible miR-103-3p impairs the myogenic differentiation of progenitor cells by enhancing cell proliferation through Twinfilin-1/F-actin/YAP1 axis

  • Mai Thi Nguyen;Wan Lee
    • The Korean Journal of Physiology and Pharmacology
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    • 제27권3호
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    • pp.277-287
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    • 2023
  • Actin dynamics play an essential role in myogenesis through multiple mechanisms, such as mechanotransduction, cell proliferation, and myogenic differentiation. Twinfilin-1 (TWF1), an actin-depolymerizing protein, is known to be required for the myogenic differentiation of progenitor cells. However, the mechanisms by which they epigenetically regulate TWF1 by microRNAs under muscle wasting conditions related to obesity are almost unknown. Here, we investigated the role of miR-103-3p in TWF1 expression, actin filament modulation, proliferation, and myogenic differentiation of progenitor cells. Palmitic acid, the most abundant saturated fatty acid (SFA) in the diet, reduced TWF1 expression and impeded myogenic differentiation of C2C12 myoblasts, while elevating miR-103-3p levels in myoblasts. Interestingly, miR-103-3p inhibited TWF1 expression by directly targeting its 3'UTR. Furthermore, ectopic expression of miR-103-3p reduced the expression of myogenic factors, i.e., MyoD and MyoG, and subsequently impaired myoblast differentiation. We demonstrated that miR-103-3p induction increased filamentous actin (F-actin) and facilitated the nuclear translocation of Yes-associated protein 1 (YAP1), thereby stimulating cell cycle progression and cell proliferation. Hence, this study suggests that epigenetic suppression of TWF1 by SFA-inducible miR-103-3p impairs myogenesis by enhancing the cell proliferation triggered by F-actin/YAP1.

Cell Cycle Regulation and Induction of Apoptosis by β-carotene in U937 and HL-60 Leukemia Cells

  • Upadhyaya, K.R.;Radha, K.S.;Madhyastha, H.K.
    • BMB Reports
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    • 제40권6호
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    • pp.1009-1015
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    • 2007
  • In this communication, we report the efficacy of $\beta$-carotene towards differentiation and apoptosis of leukemia cells. Dose ($20{\mu}M$) and time dependence (12 h) tests of $\beta$-carotene showed a higher magnitude of decrease (significance p < 0.05) in cell numbers and cell viability in HL-60 cells than U937 cells but not normal cell like Peripheral blood mononuclear cell (PBMC). Microscopical observation of $\beta$-carotene treated cells showed a distinct pattern of morphological abnormalities with inclusion of apoptotic bodies in both leukemia cell lines. When cells were treated with $20{\mu}M$ of $\beta$-carotene, total genomic DNA showed a fragmentation pattern and this pattern was clear in HL-60 than U937 cells. Both the cell lines, on treatment with $\beta$-carotene, showed a clear shift in $G_1$ phase of the cell cycle. In addition the study also revealed anti-oxidant properties of $\beta$-carotene since there was reduction in relative fluorescent when treated than the control at lower concentration. Collectively this study shows the dual phenomenon of apoptosis and differentiation of leukemia cells on treatment with $\beta$-carotene.

GSK-J4-Mediated Transcriptomic Alterations in Differentiating Embryoid Bodies

  • Mandal, Chanchal;Kim, Sun Hwa;Kang, Sung Chul;Chai, Jin Choul;Lee, Young Seek;Jung, Kyoung Hwa;Chai, Young Gyu
    • Molecules and Cells
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    • 제40권10호
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    • pp.737-751
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    • 2017
  • Histone-modifying enzymes are key players in the field of cellular differentiation. Here, we used GSK-J4 to profile important target genes that are responsible for neural differentiation. Embryoid bodies were treated with retinoic acid ($10{\mu}M$) to induce neural differentiation in the presence or absence of GSK-J4. To profile GSKJ4-target genes, we performed RNA sequencing for both normal and demethylase-inhibited cells. A total of 47 and 58 genes were up- and down-regulated, respectively, after GSK-J4 exposure at a log2-fold-change cut-off value of 1.2 (p-value < 0.05). Functional annotations of all of the differentially expressed genes revealed that a significant number of genes were associated with the suppression of cellular proliferation, cell cycle progression and induction of cell death. We also identified an enrichment of potent motifs in selected genes that were differentially expressed. Additionally, we listed upstream transcriptional regulators of all of the differentially expressed genes. Our data indicate that GSK-J4 affects cellular biology by inhibiting cellular proliferation through cell cycle suppression and induction of cell death. These findings will expand the current understanding of the biology of histone-modifying enzymes, thereby promoting further investigations to elucidate the underlying mechanisms.

신경세포 분화에서 세포주기 조절인자로서의 NELL2 유전자의 역할 (NELL2 gene as regulator of cell cycle in neuron differentiation)

  • 정미림;오연미;박우생;박상규
    • Clinical and Experimental Pediatrics
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    • 제49권10호
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    • pp.1100-1105
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    • 2006
  • 목 적 : 신경세포 분화에 있어 NELL2가 세포 주기와 세포자 멸사에 어떤 영향을 미치는지를 규명하고자 하였다. 방 법 : HiB5 세포에 NELL2를 전달감염시켜 배양하여 세포수를 측정하였다. 세포자멸사를 분석하기 위해 DNA 분절검사를 시행하였으며 PI염색으로 DNA양을 측정하였다. 세포주기의 조절에 관여하는 단백질에 대한 NELL2의 효과를 측정하기 위하여 Western blot과 면역염색을 시행하였다. 결 과 : NELL2를 전달감염시킨 군에서 세포수가 의미가 있게 적었고 DNA 분절검사에서 세포자멸사를 확인하였으며 $G_1$ 정지가 증가하였다. Western blot과 면역염색결과 Rb단백, p53, E2F1(KH-95)이 NELL2를 전달감염시킨 군에서 증가하고 cyclin D가 NELL2를 전달감염시킨 군에서 감소하였다. 결 론 : HiB5 세포에서 NELL2에 의하여 일정 수준에서의 세포자멸사가 동반되고 세포 주기에 있어 $G_1$기의 정지가 일어나며 세포주기를 조절하는 단백질의 변화가 발생함을 확인하였다. 따라서 NELL2가 뇌에서 신경세포 분화에 중요한 역할을 할 걸로 생각된다.

sprD유전자의 과발현이 Streptomyces griseus HH1의 분화에 미치는 영향 (Effect of the Overexpression of the sprD Gene Encoding Streptomyces griseus Pretense D for the Differentiation of Streptomyces griseus HH1)

  • 이재학
    • 한국식품영양학회지
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    • 제15권4호
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    • pp.364-369
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    • 2002
  • 방선균은 토양 속에 다양하게 존재하는 미생물의 일종으로 그람 양성 진정세균으로 이차대사산물을 생산하는 시기와 포자 착생이 시작되는 세포분화의 시기가 밀접한 관련이 있다. S. griseus는 streptomycin을 비롯한 다양한 종류의 endopeptidase 및 exopeptidase들을 생산한다. 방선균에서의 protease 생산은 많은 경우에 이차대사산물이 형성되거나 형태분화가 유도되는 시기에 동시에 시작된다는 점에서 Pretense가 이차대사물질 생산 및 세포분화에 일정한 기능을 수행할 것이 라는 점을 시사하고 있다. 본 연구에서는 S. griseus IFO 13350에서 클로닝한 SGPD protease가 각 strain에서 형태학적으로나 생리적으로 어떠한 gene dosage 효과를 미치는지 조사하는 것이었다. sprD 유전자가 S.lividans를 숙주로 사용한 시스템에서 대량발현이 성공적으로 되는 것을 확인한 후, 본 유전자를 클로닝한 S. griseus IFO13350 균주와 이의 A-factor 결손주인 S. griseus HH1에 형질전환하였다. S. griseus HH1과 S. griseus IFO13350에서는 protease activity가 벡터만 도입된 대조군과 sprD 유전자가 들어간 형질전환체에서 큰 차이를 보이지 않았다. 또한 S. griseus IFO 13350 및 HH1 모두에서 생리학적·형태학적 분화의 차이를 발견하지 못하였다. Chymotrypsin계열의 pretense를 암호화하는 유전자만이 S. griseus에서 발현이 repression된다는 사실을 본 연구 결과를 통하여 알게 되었다. 이를 바탕으로 sprD유전자와 동일계열의 chymotrypsin 계열의 유전자들이 공통적으로 S. griseus에서 repression 되는 일반적인 기전이 있을 것으로 판단, chymotrypsin계열 유전자들의 promoter부분의 염기 상동성을 조사하였다 번역개시부위 바로 상부 유전자부터 상동성을 조사한 결과 적어도 상당부분의 염기배열이 잘 보존된 지역이 존재함을 알게 되었다. 향후 이들 발현기구의 조절기구를 연구함으로서 protease의 기능을 밝히는데 좋은 단서를 제공할 것으로 판단된다.

New HDAC inhibitor, IN2001 induces apoptosis/cell cycle arrest in human breast cancer cells

  • Joung, Ki-Eun;Min, Kyung-Nan;Cho, Min-Jung;An, Jin-Young;Kim, Dae-Ki;Sheen, Yhun-Yhong
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 2003년도 Annual Meeting of KSAP : International Symposium on Pharmaceutical and Biomedical Sciences on Obesity
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    • pp.90-90
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    • 2003
  • The acetylation of histone is one of the mechanisms involved in the regulation of gene expression and is tightly controlled by two core enzymes, histone acetyltransferase (HAT) and deacetylase (HDAC). There are several reports that imbalance of HAT and HDAC activity is associated with abnormal behavior of the cells in morphology, cell cycle, differentiation, and carcinogenesis. Recently, an increasing number of structurally diverse HDAC inhibitors have been identified that inhibit proliferation and induce differentiation and/or apoptosis of tumor cells in vivo and in vitro. In this study, we have investigated the effects of novel HDAC inhibitors, IN2001 on ER positive and ER negative human breast cancer cell lines. The growth inhibition, cell cycle arrest and apoptosis of cells by HDAC inhibitors were determined using SRB assay, DNA fragmentation, and flow cytometry. We found that IN 2001 as well as Trichostatin A inhibited cell growth dose-dependently in both ER positive and ER negative human breast cancer cell lines. The growth inhibition with HDAC inhibitors was associated with profound morphological change. The result of cell cycle analysis after 24 h exposure of IN2001 showed G2-M cell cycle arrest in MCF-7 cell and apoptosis in T47D and MDA-MB-231 cell. In summary, IN2001 has antiproliferative effect on human breast cancer cells regardless of the expression of estrogen receptor. These findings heights the possibility of developing HDAC inhibitors as potential anticancer therapeutic agents for the treatment of breast cancer.

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New HDAC inhibitor, IN2001 induces apoptosis/cell cycle arrest in human breast cancer cells

  • Euno, Joung-Ki;Nan, Min-Kyung;Jung, Cho-Min;Young, An-Jin;Kim, -Dae-Ki;Yhong, Sheen-Yhun
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 2003년도 추계국제학술대회
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    • pp.180-180
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    • 2003
  • The acetylation of histone is one of the mechanisms involved in the regulation of gene expression and is tightly controlled by two core enzymes, histone acetyltransferase (HAT) and deacetylase (HDAC). There are several reports that imbalance of HAT and HDAC activity is associated with abnormal behavior of the cells in morphology, cell cycle, differentiation, and carcinogenesis. Recently, an increasing number of structurally diverse HDAC inhibitors have been identified that inhibit proliferation and induce differentiation and/or apoptosis of tumor cells in vivo and in vitro. In this study, we have investigated the effects of novel HDAC inhibitors, IN2001 on ER positive and ER negative human breast cancer cell lines. The growth inhibition, cell cycle arrest and apoptosis of cells by HDAC inhibitors were determined using SRB assay, DNA fragmentation, and flow cytometry. We found that IN 2001 as well as Trichostatin A inhibited cell growth dose-dependently in both ER Positive and ER negative human breast cancer cell lines. The growth inhibition with HDAC inhibitors was associated with profound morphological change. The result of cell cycle analysis after 24 h exposure of IN2001 showed G2-M cell cycle arrest in MCF-7 cell and apoptosis in T47B and MDA-MB-231 cell. In summary, IN2001 has antiproliferative effect on human breast cancer cells regardless of the expression of estrogen receptor. These findings heights the possibility of developing HDAC inhibitors as potential anticancer therapeutic agents for the treatment of breast cancer.

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Adipogenesis관련 유전자발현감소와 Cell Cycle Arrest를 통한 EGCG와 Glucosamine-6-Phosphate의 Anti-Obesity 효과 (Anti-obesity effect of EGCG and glucosamine-6-phosphate through decreased expression of genes related to adipogenesis and cell cycle arrest in 3T3-L1 adipocytes)

  • 김꽃별;장성희
    • Journal of Nutrition and Health
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    • 제47권1호
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    • pp.1-11
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    • 2014
  • 널리 음용되고 있는 녹차의 EGCG과 우리나라 국민의 상당수가 복용하고 있는 건강기능성 식품 성분인 글루코사민은 이전의 연구들을 통해서 지방세포의 분화를 억제하는데 효과가 있다고 보고되어왔다. 이 두 물질의 병합처리로 기대되어지는 지방세포에서의 adipogenesis 및 지방축적감소에 대한 상승효과는 검증된 바 없으며, 효과에 대한 cell cycle 차원에서의 접근은 없었다. 본 연구 결과에서 EGCG와 Glucosamine 6-phosphate는 adipogenesis 전사인자인 $PPAR{\gamma}$, $C/EBP{\alpha}$, SREBP1에 대한 직접적인 발현 억제 뿐아니라, $PPAR{\gamma}$, $C/EBP{\alpha}$, SREBP1와 매개된 FAS, ACSL1, LPL과 같은 adipogenic target 유전자의 발현 감소를 통하여 지방세포의 분화와 지방세포 내 지방축적을 감소시키는 효과를 나타냈다. 그리고 HSL과 perilipin의 발현조절을 통해 부분적인 lipolytic effet도 나타냈다. 또한 지방세포의 분화가 개시되는데 있어 중요한 DNA의 remodeling 과정인 mitotic clonal expansion (MCE) 과정 중 G0/G1 phase 단계에서 cell cycle 정지 유도와 그로인한 S phase 및 G2/M phase로 세포주기이행의 방해를 통해 지방세포가 분화되는 것은 억제하였다. 이러한 효과들은 EGCG 농도가 높아질수록, 그리고 EGCG를 단독으로 처리한경우보다 Glucosamine 6-phosphate와 병합하였을 때 효과적이었다. 따라서 EGCG 단독처리 및 glucosamine 6-phosphate와의 병합처리는 지방세포에서 adipogenesis와 adipogenic관련 유전자들의 발현 억제 및 MCE 단계의 cell cycle arrest를 통해 지방세포의 분화를 억제하고 지방축적을 감소시켜 항비만 효과를 나타냈으며, 이러한 효과는 두 성분의 병합처리에서 조금 더 효과적이었다고 할 수 있다. 비록 두 성분의 병합처리가 기대했던 만큼은 아니었으나 항비만 효과에 대한 상승효과가 있다고 볼 수 있다.