• 제목/요약/키워드: Histone

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Synergistic antitumor activity of sorafenib and MG149 in hepatocellular carcinoma cells

  • Moon, Byul;Park, Mijin;Cho, Seung-Hyun;Kim, Kang Mo;Seo, Haeng Ran;Kim, Jeong-Hoon;Kim, Jung-Ae
    • BMB Reports
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    • 제55권10호
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    • pp.506-511
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    • 2022
  • Advanced hepatocellular carcinoma (HCC) is among the most challenging cancers to overcome, and there is a need for better therapeutic strategies. Among the different cancer drugs that have been used in clinics, sorafenib is considered the standard first-line drug for advanced HCC. Here, to identify a chemical compound displaying a synergistic effect with sorafenib in HCC, we screened a focused chemical library and found that MG149, a histone acetyltransferase inhibitor targeting the MYST family, exhibited the most synergistic anticancer effect with sorafenib on HCC cells. The combination of sorafenib and MG149 exerted a synergistic anti-proliferation effect on HCC cells by inducing apoptotic cell death. We revealed that cotreatment with sorafenib and MG149 aggravated endoplasmic reticulum (ER) stress to promote the death of HCC cells rather than adaptive cell survival. In addition, combined treatment with sorafenib and MG149 significantly increased the intracellular levels of unfolded proteins and reactive oxygen species, which upregulated ER stress. Collectively, these results suggest that MG149 has the potential to improve the efficacy of sorafenib in advanced HCC via the upregulation of cytotoxic ER stress.

주의력결핍 과잉행동장애 치료제 개발을 위한 카테콜아민계 표적화 (Targeting Catecholamines to Develop New Drugs for Attention Deficit Hyperactivity Disorder)

  • 정성철;조창환;김혜지;고은아;하민우;권오빈
    • Journal of Medicine and Life Science
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    • 제18권3호
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    • pp.41-48
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    • 2021
  • The prevalence of attention deficit hyperactivity disorder (ADHD), a developmental neuropsychiatric disorder, is high among children and adolescents. The pathogenesis of ADHD is mediated with genetic, biological, and environmental factors. Most therapeutic drugs for ADHD have so far targeted biological causes, primarily by regulating catecholaminergic neurotransmitters. However, ADHD drugs that are clinically treated have various problems in their addictiveness and drug stability; thus, it is recommended that efficacy and safety should be secured through simultaneous prescription of multiple drugs rather than a single drug treatment. Accordingly, it is necessary to develop drugs that newly target pathogenic mechanisms of ADHD. In this study, we attempt to confirm the possibility of developing new drugs by reviewing dopamine-related developmental mechanisms of neurons and their correlation with ADHD. Histone deacetylase inhibitors (HDACi) can regulate the concentration of intracellular dopamine in neurons by expressing vesicular monoamine transporter 2 and inducing the exocytosis of neurotransmitters to the synaptic cleft, thereby promoting the development of neurons and signal transmission. This cellular modulation of HDACi is expected to treat ADHD by regulating endogenous catecholamines such as dopamine. Although studies are still in the preclinical stage, HDAC inhibitors clearly have potential as a therapeutic agent with low addictiveness and high efficacy for ADHD treatment.

Histone deacetylation effects of the CYP1A1 promoter activity, proliferation and apoptosis of cells in hepatic, prostate and breast cancer cells

  • K. N. Min;K. E. Joung;M. J. Cho;J. Y. An;Kim, D. K.;Y. Y. Sheen
    • 한국환경독성학회:학술대회논문집
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    • 한국환경독성학회 2003년도 추계국제학술대회
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    • pp.181-181
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    • 2003
  • We have studied the mechanism of action of TCDD on CYP1A1 promoter activity in both Hepa Ⅰ and MCF-7 cells using transient transfection system with p1A1-Luc reporter gene. When HDAC inhibitors, such as trichostatin A, HC toxin and a novel HDAC inhibitor, IN2001 were cotreated with TCDD to the cells transfected with plAt-Luc reporter gene, the basal promoter activity of CYP1A1 was increased by HBAC inhibitors. Also, in MCF-7 human breast cancer cells, HDAC inhibitors, such as IN2001 and trichostatin A increased the basal activity of CYP1A1 promoter but TCDD stimulated CYP1A1 promoter activity was not changed by HDAC inhibitors. And, in stably-transfected Hepa Ⅰ cells with p1A1-Luc, HDAC inhibitors increased the basal promoter activity only Also, we have investigated the effects of HDAC inhibitors on the human breast and prostate cancer cells in terms of cell proliferation and apoptosis based on SRB assay. IN2001 as well as trichostatin A inhibited the MCF-7, MDA-MB-231, MDA-MB-468, T47D, ZR75-1, PC3 cell growth dose-dependently. The growth inhibition of these cells with HDAC inhibitors was associated with profound morphological change, which suggests the HDAC inhibitors induced apoptosis of cells. The result of cell cycle analysis after 24h exposure of IN2001 showed G2/M cell cycle arrest in MCF-7 cells and apoptosis in T47D and MDA-MB-231 cells.

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Dental-derived cells for regenerative medicine: stem cells, cell reprogramming, and transdifferentiation

  • Young-Dan Cho;Kyoung-Hwa Kim;Yong-Moo Lee;Young Ku;Yang-Jo Seol
    • Journal of Periodontal and Implant Science
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    • 제52권6호
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    • pp.437-454
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    • 2022
  • Embryonic stem cells have been a popular research topic in regenerative medicine owing to their pluripotency and applicability. However, due to the difficulty in harvesting them and their low yield efficiency, advanced cell reprogramming technology has been introduced as an alternative. Dental stem cells have entered the spotlight due to their regenerative potential and their ability to be obtained from biological waste generated after dental treatment. Cell reprogramming, a process of reverting mature somatic cells into stem cells, and transdifferentiation, a direct conversion between different cell types without induction of a pluripotent state, have helped overcome the shortcomings of stem cells and raised interest in their regenerative potential. Furthermore, the potential of these cells to return to their original cell types due to their epigenetic memory has reinforced the need to control the epigenetic background for successful management of cellular differentiation. Herein, we discuss all available sources of dental stem cells, the procedures used to obtain these cells, and their ability to differentiate into the desired cells. We also introduce the concepts of cell reprogramming and transdifferentiation in terms of genetics and epigenetics, including DNA methylation, histone modification, and non-coding RNA. Finally, we discuss a novel therapeutic avenue for using dental-derived cells as stem cells, and explain cell reprogramming and transdifferentiation, which are used in regenerative medicine and tissue engineering.

PSME4 determines mesenchymal stem cell fate towards cardiac commitment through YAP1 degradation

  • Mira Kim;Yong Sook Kim;Youngkeun Ahn;Gwang Hyeon Eom;Somy Yoon
    • The Korean Journal of Physiology and Pharmacology
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    • 제27권4호
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    • pp.407-416
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    • 2023
  • The regeneration of myocardium following acute circulatory events remains a challenge, despite numerous efforts. Mesenchymal stem cells (MSCs) present a promising cell therapy option, but their differentiation into cardiomyocytes is a time-consuming process. Although it has been demonstrated that PSME4 degrades acetyl-YAP1, the role of PSME4 in the cardiac commitment of MSCs has not been fully elucidated. Here we reported the novel role of PSME4 in MSCs cardiac commitment. It was found that overnight treatment with apicidin in primary-cultured mouse MSCs led to rapid cardiac commitment, while MSCs from PSME4 knock-out mice did not undergo this process. Cardiac commitment was also observed using lentivirus-mediated PSME4 knockdown in immortalized human MSCs. Immunofluorescence and Western blot experiments revealed that YAP1 persisted in the nucleus of PSME4 knockdown cells even after apicidin treatment. To investigate the importance of YAP1 removal, MSCs were treated with shYAP1 and apicidin simultaneously. This combined treatment resulted in rapid YAP1 elimination and accelerated cardiac commitment. However, overexpression of acetylation-resistant YAP1 in apicidin-treated MSCs impeded cardiac commitment. In addition to apicidin, the universal effect of histone deacetylase (HDAC) inhibition on cardiac commitment was confirmed using tubastatin A and HDAC6 siRNA. Collectively, this study demonstrates that PSME4 is crucial for promoting the cardiac commitment of MSCs. HDAC inhibition acetylates YAP1 and facilitates its translocation to the nucleus, where it is removed by PSME4, promoting cardiac commitment. The failure of YAP1 to translocate or be eliminated from the nucleus results in the MSCs' inability to undergo cardiac commitment.

Re-identification of Colletotrichum acutatum Species Complex in Korea and Their Host Plants

  • Le Dinh Thao;Hyorim Choi;Yunhee Choi;Anbazhagan Mageswari;Daseul Lee;Seung-Beom Hong
    • The Plant Pathology Journal
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    • 제39권4호
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    • pp.384-396
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    • 2023
  • Colletotrichum acutatum species complex is one of the most important groups in the genus Colletotrichum with a high species diversity and a wide range of host plants. C. acutatum and related species have been collected from different plants and locations in Korea and deposited into the Korean Agricultural Culture Collection (KACC), National Institute of Agricultural Sciences since the 1990s. These fungal isolates were previously identified based mainly on morphological characteristics, and a limitation of molecular data was provided. To confirm the identification of species, 64 C. acutatum species complex isolates in KACC were used in this study for DNA sequence analyses of six loci: nuclear ribosomal internal transcribed spacers (ITS), betatubulin 2 (TUB2), histone-3 (HIS3), glyceraldehyde3-phosphate dehydrogenase (GAPDH), chitin synthase 1 (CHS-1), and actin (ACT). The molecular analysis revealed that they were identified in six different species of C. fioriniae (24 isolates), C. nymphaeae (21 isolates), C. scovillei (12 isolates), C. chrysanthemi (three isolates), C. lupini (two isolates), and C. godetiae (one isolate), and a novel species candidate. We compared the hosts of KACC isolates with "The List of Plant Diseases in Korea", previous reports in Korea and global reports and found that 23 combinations between hosts and pathogens could be newly reported in Korea after pathogenicity tests, and 12 of these have not been recorded in the world.

Identification of druggable genes for multiple myeloma based on genomic information

  • Rahmat Dani Satria;Lalu Muhammad Irham;Wirawan Adikusuma;Anisa Nova Puspitaningrum;Arief Rahman Afief;Riat El Khair;Abdi Wira Septama
    • Genomics & Informatics
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    • 제21권3호
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    • pp.31.1-31.8
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    • 2023
  • Multiple myeloma (MM) is a hematological malignancy. It is widely believed that genetic factors play a significant role in the development of MM, as investigated in numerous studies. However, the application of genomic information for clinical purposes, including diagnostic and prognostic biomarkers, remains largely confined to research. In this study, we utilized genetic information from the Genomic-Driven Clinical Implementation for Multiple Myeloma database, which is dedicated to clinical trial studies on MM. This genetic information was sourced from the genome-wide association studies catalog database. We prioritized genes with the potential to cause MM based on established annotations, as well as biological risk genes for MM, as potential drug target candidates. The DrugBank database was employed to identify drug candidates targeting these genes. Our research led to the discovery of 14 MM biological risk genes and the identification of 10 drugs that target three of these genes. Notably, only one of these 10 drugs, panobinostat, has been approved for use in MM. The two most promising genes, calcium signal-modulating cyclophilin ligand (CAMLG) and histone deacetylase 2 (HDAC2), were targeted by four drugs (cyclosporine, belinostat, vorinostat, and romidepsin), all of which have clinical evidence supporting their use in the treatment of MM. Interestingly, five of the 10 drugs have been approved for other indications than MM, but they may also be effective in treating MM. Therefore, this study aimed to clarify the genomic variants involved in the pathogenesis of MM and highlight the potential benefits of these genomic variants in drug discovery.

As a Modulator, Multitasking Roles of SIRT1 in Respiratory Diseases

  • Yunxin Zhou;Fan Zhang;Junying Ding
    • IMMUNE NETWORK
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    • 제22권3호
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    • pp.21.1-21.21
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    • 2022
  • As far the current severe coronavirus disease 2019 (COVID-19), respiratory disease is still the biggest threat to human health. In addition, infectious respiratory diseases are particularly prominent. In addition to killing and clearing the infection pathogen directly, regulating the immune responses against the pathogens is also an important therapeutic modality. Sirtuins belong to NAD+-dependent class III histone deacetylases. Among 7 types of sirtuins, silent information regulator type-1 (SIRT1) played a multitasking role in modulating a wide range of physiological processes, including oxidative stress, inflammation, cell apoptosis, autophagy, antibacterial and antiviral functions. It showed a critical effect in regulating immune responses by deacetylation modification, especially through high-mobility group box 1 (HMGB1), a core molecule regulating the immune system. SIRT1 was associated with many respiratory diseases, including COVID-19 infection, bacterial pneumonia, tuberculosis, and so on. Here, we reviewed the latest research progress regarding the effects of SIRT1 on immune system in respiratory diseases. First, the structure and catalytic characteristics of SIRT1 were introduced. Next, the roles of SIRT1, and the mechanisms underlying the immune regulatory effect through HMGB1, as well as the specific activators/inhibitors of SIRT1, were elaborated. Finally, the multitasking roles of SIRT1 in several respiratory diseases were discussed separately. Taken together, this review implied that SIRT1 could serve as a promising specific therapeutic target for the treatment of respiratory diseases.

Valproic acid와 HS-1200의 병용처리가 사람골육종세포에 미치는 세포자멸사 효과에 대한 연구 (Apoptotic Effect of Co-Treatment with Valproic Acid and HS-1200 on Human Osteosarcoma Cells)

  • 김덕한;이기현;김인령;곽현호;박봉수;정성희;고명연;안용우
    • Journal of Oral Medicine and Pain
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    • 제35권3호
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    • pp.165-175
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    • 2010
  • Valproic acid(VPA)는 아주 잘 알려진 항경련제로서, 30년 동안 간질치료제로서 사용되어져 왔다. VPA는 1997년에 최초로 원시 신경외배엽성 암세포의 증식 억제와 분화를 유도하는 항암제의 효능이 밝혀졌다. 그리고 VPA의 항암효과는 히스톤탈 아세틸화효소억제제의 기전에 기인한다고 규명되었다. 담즙산과 합성담즙산유도체가 여러 종류의 암세포에 세포자멸사(apoptosis)를 유도하며, 항암효과가 있다고 알려져 있다. 또한 합성 chenodeoxycholic acid(CDCA) 유도체가 여러 가지 암세포에 유도한 세포자멸사 연구들이 보고되어져 왔다. 본 연구는 히스톤탈아세틸화효소억제제인 VPA와 합성 CDCA 유도체인 HS-1200의 병용처리가 사람골육종세포에 효과적인 상승 세포자멸사 효과가 있는지를 알기 위해서 수행되었다. VPA과 HS-1200의 병용처리가 단독처리에 비해서 효과적인 세포생존율 감소가 있는지 확인하기 위해서 trypan-blue법을 시행하였고, 세포자멸사의 유도와 증가를 확인하기 위해서 Hoechst 염색법, flow cytometry(DNA hypoploidy와 MMP 측정), Western bot 분석법 그리고, 면역형광염색법을 수행하였다. 병용처리 된 사람골육종세포는 단독처리 된 사람골육종세포에서 거의 관찰할 수 없었던 많은 핵 응축, DNA 조각남, 사립체막 전위와 DNA 양의 감소, cytochrome c의 세포질로의 유리, AIF의 핵으로의 이동, caspase-7, caspase-3 그리고 PARP의 파괴와 같은 세포자멸사 증거를 보였다. 48시간 동안 1 mM의 VPA와 $25\;{\mu}M$ HS-1200을 각기 단독처리 한 결과에서는 세포자멸사를 유도 못했으나, 병용처리한 결과에는 아주 탁월한 세포자멸사의 유도를 보였다. 이러한 병용처리 결과는 사람골육종의 새로운 치료적 전략으로 응용될 수 있다고 생각한다.

난소 절제 쥐의 골격근에서 갈근 및 지황 섭취와 운동이 후성 유전적 변화에 미치는 영향 (The Effects of Pueraria and Rehmannia Glutinosa Intake and Exercise on Epigenetic Modification in Ovariectomized Rat Skeletal Muscle)

  • 정현지;김혜진;권오란;이원준
    • 생명과학회지
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    • 제25권11호
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    • pp.1214-1222
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    • 2015
  • 본 연구는 난소 제거 수술을 시행하여 폐경기를 유도시킨 뒤 고지방 식이를 섭취한 쥐에게서 나타난 신체 변화에 있어 운동과 갈근/지황 섭취에 의한 개선 효과를 관찰하고, 그러한 효과가 골격근에서의 후성 유전적 발현 변화에 의한 것임을 규명하고자 하였다. 8주령의 쥐(rat, n=60)의 난소를 제거한 뒤 고지방 식이를 유도하면서 트레드밀 운동(exercise)을 실시하는 그룹과 비운동(sedentary) 그룹으로 나누었다. 두 그룹을 각각 estradiol, 갈근과 지황의 3:1 복합물(HT051), 그리고 물 섭취 군으로 다시 나누어 총 8주간 경구 투여를 함께 실시하였다. 그 결과 운동 그룹과 갈근/지황 섭취 그룹에서 체중이 유의하게 감소하였고, 가자미근과 족저근의 근질량 또한 운동 그룹과 갈근/지황 섭취 그룹에서 유의하게 증가하였다. 한편, 가자미근에서 물을 섭취하며 운동하지 않은 그룹의 H3K9 아세틸화가 억제 되었고 H3K9의 메틸화에는 변화가 없었다. 족저근의 경우 운동 그룹에서 H3K9 아세틸화가 현저하게 눈에 띄었고, 반대로 메틸화는 줄어든 것이 관찰되었다. 나아가 H3K9의 아세틸화와 메틸화를 조절하는 대표적인 효소 중 HDAC4, HDAC5, G9a 유전자의 mRNA 발현양을 정량한 결과, 가자미근에서는 모두 유의한 차이가 없었고 족저근에서 운동 한 그룹의 HDAC5와 G9a 유전자의 mRNA 발현양이 유의하게 감소하였지만 HDAC4의 mRNA는 차이가 없었다. 또한 운동과 갈근/지황의 상호작용 효과는 나타나지 않았다. 본 연구를 통하여 운동과 갈근/지황 섭취가 체중 감소, 근질량 증가에 영향을 미치고, 이러한 현상은 히스톤 H3K9 부분의 아세틸화와 메틸화에 의한 유전자 발현 조절이 그 기전으로 작용한다는 것을 알 수 있었다.