• 제목/요약/키워드: JAK/STAT1

검색결과 67건 처리시간 0.031초

나복자(萊菔子) 에탄올 추출물이 HaCaT 피부각질형성세포에서 피부염증 감소에 미치는 영향 (Effects of Raphani Semen Ethanol Extracts on Skin Inflammation in HaCaT Keratinocytes)

  • 김근립;홍철희;이규영
    • 한방안이비인후피부과학회지
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    • 제35권2호
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    • pp.13-27
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    • 2022
  • 목적 : 본 연구는 인간피부각질형성세포(HaCaT keratinocytes) 모델을 TNF-α와 IFN-γ로 자극하여 내복자(萊菔子)의 피부염증 감소 및 만성 염증성 질환에 미치는 영향을 알아보고자 하였다. 방법 : 내복자(萊菔子) 에탄올 추출물(RSE)이 세포생존율에 미치는 영향을 확인하기 위하여 MTT assay를 시행하였다. 또한 RSE가 TNF-α와 IFN-γ로 자극한 HaCaT 세포에서 p-IκBα, p-ERK, p-JAK2, p-STAT1, p-STAT6의 발현과 periostin, TSLP 단백질 발현에 미치는 영향을 확인하였다. 결과 : RSE는 200㎍/㎖ 이하에서 세포 독성을 보이지 않았고, HaCaT keratinocytes에서 TNF-α와 IFN-γ자극에 의하여 증가된 IκBα, ERK의 인산화를 억제하였다. 또한 JAK2와 STAT1, STAT6의 인산화를 억제하였으며, periostin과 TSLP의 발현을 감소시켰다. 결론 : RSE는 HaCaT keratinocytes에서 pro-inflammatory cytokines 및 transcription factors의 발현을 감소시켜 피부염증 감소 효능을 보였고, 만성 염증성 질환에서 내복자(萊菔子)의 사용 가능성을 확인하였다.

신장암 세포주에서 actinomycin D에 의한 SOCS3 발현 감소를 통한 STAT3 활성화 (Actinomycin D Induces Phosphorylation of STAT3 through Down-Regulation of SOCS3 in Renal Cancer Cells)

  • 우선민;박은정;권택규
    • 생명과학회지
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    • 제21권1호
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    • pp.141-145
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    • 2011
  • 본 연구에서는 전사억제제(transcriptional inhibitor)로 알려진 actinomycin D가 전사조절인자(transcription factor)인 STAT의 인산화를 유도한다는 것을 확인하였다. Actinomycin D 처리 시 STAT1의 Tyr701, Ser727 인산화는 유도되지 않았지만 STAT3의 Tyr705 잔기의 인산화를 특이적으로 유도하는 것을 확인하였다. Actinomycin D에 의한 STAT3의 Tyr705 인산화 유도가 어떠한 기전을 통한 것인지 확인하기 위해서 관련 인자의 단백질 및 mRNA 발현을 확인한 결과 SOCS3의 단백질 및 mRNA 발현의 감소를 확인하였다. STAT3의 탈인산화를 유도한다고 알려진 tyrosine phosphatase인 SHP-1와 STAT의 upstream kinase인 JAK2의 인산화는 변화가 없었다. 또한 actinomycin D 뿐 아니라 다른 전사억제제인 DRB를 처리 하였을 경우에도 STAT3의 Tyr705 인산화가 유도되는 것을 확인하였다. 이상의 결과는 전사억제제에 의하여 특이적인 SOCS3 단백질 발현감소는 SOCS3의 하류의 target인 STAT3 인산화를 유도하였다.

인간 유방암세포 MDA-MB 231에 대한 황금찰수수 추출물의 IGF-1R, STAT Family, Jak/STAT Signaling 발현의 억제를 통한 종양 성장의 억제 효과 연구 (Hwanggeumchal Sorghum Extracts Suppresses Tumor Growth via Inhibitions of IGF-1R, STAT Family and Jak/STAT Signaling Expression for Human MDA-MB 231 Breast Cancer Cells)

  • 박진희;여민아;김선진;권정웅;송성현;용수정;장미소;김명조;박동식;송홍근;안종국;양영목;정일민
    • 한국약용작물학회:학술대회논문집
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    • 한국약용작물학회 2010년도 심포지엄 및 추계학술발표회
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    • pp.495-496
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    • 2010
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Emerging functions for ANKHD1 in cancer-related signaling pathways and cellular processes

  • de Almeida, Bruna Oliveira;Machado-Neto, Joao Agostinho
    • BMB Reports
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    • 제53권8호
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    • pp.413-418
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    • 2020
  • ANKHD1 (ankyrin repeat and KH domain containing 1) is a large protein characterized by the presence of multiple ankyrin repeats and a K-homology domain. Ankyrin repeat domains consist of widely existing protein motifs in nature, they mediate protein-protein interactions and regulate fundamental biological processes, while the KH domain binds to RNA or ssDNA and is associated with transcriptional and translational regulation. In recent years, studies containing relevant information on ANKHD1 in cancer biology and its clinical relevance, as well as the increasing complexity of signaling networks in which this protein acts, have been reported. Among the signaling pathways of interest in oncology regulated by ANKHD1 are Hippo signaling, JAK/STAT, and STMN1. The scope of the present review is to survey the current knowledge and highlight future perspectives for ANKHD1 in the malignant phenotype of cancer cells, exploring biological, functional, and clinical reports of this protein in cancer.

Angelica Sinensis Polysaccharide Induces Erythroid Differentiation of Human Chronic Myelogenous Leukemia K562 Cells

  • Wang, Lu;Jiang, Rong;Song, Shu-Dan;Hua, Zi-Sen;Wang, Jian-Wei;Wang, Ya-Ping
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권9호
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    • pp.3715-3721
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    • 2015
  • Leukemia is a clonal disorder with blocked normal differentiation and cell death of hematopoietic progenitor cells. Traditional modalities with most used radiation and chemotherapy are nonspecific and toxic which cause adverse effects on normal cells. Differentiation inducing therapy forcing malignant cells to undergo terminal differentiation has been proven to be a promising strategy. However, there is still scarce of potent differentiation inducing agents. We show here that Angelica sinensis polysaccharide (ASP), a major active component in Dong quai (Chinese Angelica sinensis), has potential differentiation inducing activity in human chronic erythro-megakaryoblastic leukemia K562 cells. MTT assays and flow cytometric analysis demonstrated that ASP inhibited K562 cell proliferation and arrested the cell cycle at the G0/G1 phase. ASP also triggered K562 cells to undergo erythroid differentiaton as revealed by morphological changes, intensive benzidine staining and hemoglobin colorimetric reaction, as well as increased expression of glycophorin A (GPA) protein. ASP induced redistribution of STAT5 protein from the cytoplasm to the nucleus. Western blotting analysis further identified that ASP markedly sensitized K562 cells to exogenous erythropoietin (EPO) by activating EPO-induced JAK2/STAT5 tyrosine phosphorylation, thus augmenting the EPO-mediated JAK2/STAT5 signaling pathway. On the basis of these findings, we propose that ASP might be developed as a potential candidate for chronic myelogenous leukemia inducing differentiation treatment.

인진청간탕(茵蔯淸肝湯)이 HepG2 cell의 인터페론 신호전달계에 미치는 영향 (The Effects of Injinchunggantang on Interferon Signaling Pathway of HepG2 Cells)

  • 이종훈;김영철;이장훈;우홍정
    • 대한한방내과학회지
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    • 제26권1호
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    • pp.74-92
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    • 2005
  • Objectives/Methods : To analyze the effect of Injinchunggantang(IJCGT) to Interferon-${\alpha}/{\beta}$ signal transmission system in HepG2 cells, HepG2 Cell were treated with IJCGT. Also, revelation of MxA, 2'5'-OAS mRNA leaded by Interferon-${\alpha}/{\beta}$ and revelation and activation of Jak1, TYK1, and STAT 1, all main signal transmission factors, were analyzed. Results : The analysis resulted in the following 1. With interferon ${\alpha}/{\beta}$ there was no affect cell propagation of Hep G2 cells. With IJCGT alone, cell propagation of HepG2 was promoted, and cell propagation control function was recovered. 2. With interferon ${\alpha}/{\beta}$ cell death was unaffected. With IJCGT apoptosis of HepG2 cell was restrained, and the cell's reaction to interferon was unaffected. 3. With interferon ${\alpha}/{\beta}$ treatment mRNA revelation of MxA and 2'5'-OAS was induced. When HepG2 cells were injected with IJCGT without interferon ${\alpha}/{\beta}$ treatment, mRNA revelation of MxA and 2'5'-OAS increased in proportion to the treatment density. With pre-treatment of IJCGT, leaded with interferon ${\alpha}/{\beta}$, promoted revelation of MxA, 2'5' -OAS mRNA. 4. Though mRNA revelation of lakl, TYK1 and STAT1 was unaffected with IJCGT, activation of STAT1 was promoted with an increase of phosphorylation of STAT1 protein. With pre-treatment of IJCGT, Jak1, TYK2, STAT1 phosphorylation, leaded with interferon, strengthened. 5. TNF-a, IL-1b and LPS present, revelation of MxA and 2'5'-OAS mRNA leaded by interferon was restrained when HepG2 cells were treated with IJCGT, and the interferon signal transmission system restraint action leaded by inflammatory cytokines was moderated. Conclusion : These results support a role for IJGCT in promotion of anti-virus action through maintainance of the liver's sensibility toward interferon. A clinical study of an interferon treated patient treated also with IJGCT is needed to determine its efficacy.

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Methylated Alteration of SHP1 Complements Mutation of JAK2 Tyrosine Kinase in Patients with Myeloproliferative Neoplasm

  • Yang, Jun-Jun;Chen, Hui;Zheng, Xiao-Qun;Li, Hai-Ying;Wu, Jian-Bo;Tang, Li-Yuan;Gao, Shen-Meng
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권6호
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    • pp.2219-2225
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    • 2015
  • SHP1 negatively regulates the Janus kinase 2/signal transducer and activator of transcription (JAK2/STAT) signaling pathway, which is constitutively activated in myeloproliferative neoplasms (MPNs) and leukemia. Promoter hypermethylation resulting in epigenetic inactivation of SHP1 has been reported in myelomas, leukemias and other cancers. However, whether SHP1 hypermethylation occurs in MPNs, especially in Chinese patients, has remained unclear. Here, we report that aberrant hypermethylation of SHP1 was observed in several leukemic cell lines and bone marrow mononuclear cells from MPN patients. About 51 of 118 (43.2%) MPN patients including 23 of 50 (46%) polycythaemia vera patients, 20 of 50 (40%) essential thrombocythaemia and 8 of 18 (44.4%) idiopathic myelofibrosis showed hypermethylation by methylation-specific polymerase chain reaction. However, SHP1 methylation was not measured in 20 healthy volunteers. Hypermethylation of SHP1 was found in MPN patients with both positive (34/81, 42%) and negative (17/37, 45.9%) JAK2V617F mutation. The levels of SHP1 mRNA were significantly lower in hypermethylated samples than unmethylated samples, suggesting SHP1 may be epigenetically inactivated in MPN patients. Furthermore, treatment with 5-aza-2'-deoxycytidine (AZA) in K562 cells showing hypermethylation of SHP1 led to progressive demethylation of SHP1, with consequently increased reexpression of SHP1. Meanwhile, phosphorylated JAK2 and STAT3 were progressively reduced. Finally, AZA increased the expression of SHP1 in primary MPN cells with hypermethylation of SHP1. Therefore, our data suggest that epigenetic inactivation of SHP1 contributes to the constitutive activation of JAK2/STAT signaling. Restoration of SHP1 expression by AZA may contribute to clinical treatment for MPN patients.

Prunus Yedoensis Inhibits the Inflammatory Chemokines, MDC and TARC, by Regulating the STAT1-Signaling Pathway in IFN-γ-stimulated HaCaT Human Keratinocytes

  • Kang, Gyeoung-Jin;Lee, Hye-Ja;Yoon, Weon-Jong;Yang, Eun-Jin;Park, Sun-Son;Kang, Hee-Kyoung;Park, Myung-Hwan;Yoo, Eun-Sook
    • Biomolecules & Therapeutics
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    • 제16권4호
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    • pp.394-402
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    • 2008
  • Atopic dermatitis (AD) is an inflammatory skin disease commonly characterized by infiltration of inflammatory cells into skin lesions. Keratinocytes produce many chemokines that are involved in the pathogenesis of skin disorders. In particular, macrophage-derived chemokine (MDC/CCL22) and thymus and activationregulated chemokine (TARC/CCL17) are Th2-type cytokines. Serum MDC and TARC levels are increased in AD patients. In this study, we investigated the anti-inflammatory effect and mechanism of action of the active fraction from Prunus yedoensis bark. We evaluated their inhibitory effects on the AD-like inflammatory markers (MDC and TARC) and JAK-STAT pathway (STAT1) in HaCaT keratinocytes. The EtOAc fraction of the crude extract (80% EtOH) and the E5 sub-fraction potently inhibited the induction of MDC and TARC mRNA and protein at 50 ${\mu}g$/mL in HaCaT cells. In addition, the E5 sub-fraction inhibited the phosphorylation of STAT1 protein associated with IFN-$\gamma$ signaling transduction in a dose-dependent manner. Thus, P. yedoensis may have antiatopic activity by suppressing the inflammatory chemokines (MDC and TARC).

Cryptotanshinone Induces Inhibition of Breast Tumor Growth by Cytotoxic CD4+ T Cells through the JAK2/STAT4/ Perforin Pathway

  • Zhou, Jun;Xu, Xiao-Zhen;Hu, Yao-Ren;Hu, Ai-Rong;Zhu, Cheng-Liang;Gao, Guo-Sheng
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권6호
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    • pp.2439-2445
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    • 2014
  • Cryptotanshinone (CPT), is a quinoid diterpene isolated from the root of the Asian medicinal plant, Salvia miotiorrhiza bunge. Numerous researchers have found that it could work as a potent antitumor agent to inhibit tumor growth in vitro, buith there has been much less emphasis on its in vivo role against breast tumors. Using a mouse tumor model of MCF7 cells, we showed that CPT strongly inhibited MCF7 cell growth in vivo with polarization of immune reactions toward Th1-type responses, stimulation of naive CD4+ T cell proliferation, and also increased IFN-${\gamma}$ and perforin production of CD4+ T cells in response to tumor-activated splenocytes. Furthermore, data revealed that the cytotoxic activity of CD4+ T cells induced by CPT was markedly abrogated by concanamycin A(CMA), a perforin inhibitor, but not IFN-${\gamma}$ Ab. On the other hand, after depletion of CD4+ T cells or blocked perforin with CMA in a tumor-bearing model, CPT could not effectively suppress tumor growth, but this phenomenon could be reversed by injecting naive CD4+ T cells. Thus, our results suggested that CPT mainly inhibited breast tumor growth through inducing cytotoxic CD4+ T cells to secrete perforin. We further found that CPT enhanced perforin production of CD4+ T cells by up-regulating JAK2 and STAT4 phosphorylation. These findings suggest a novel potential therapeutic role for CPT in tumor therapy, and demonstrate that CPT performs its antitumor functions through cytotoxic CD4+ T cells.

Development and Characterization of a Novel Anti-idiotypic Monoclonal Antibody to Growth Hormone, Which Can Mimic Physiological Functions of Growth Hormone in Primary Porcine Hepatocytes

  • Lan, Hai-Nan;Jiang, Hai-Long;Li, Wei;Wu, Tian-Cheng;Hong, Pan;Li, Yu Meng;Zhang, Hui;Cui, Huan-Zhong;Zheng, Xin
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권4호
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    • pp.573-583
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    • 2015
  • B-32 is one of a panel of monoclonal anti-idiotypic antibodies to growth hormone (GH) that we developed. To characterize and identify its potential role as a novel growth hormone receptor (GHR) agonist, we determined that B-32 behaved as a typical $Ab2{\beta}$ based on a series of enzyme-linked immunosorbent assay assays. The results of fluorescence-activated cell sorting, indirect immunofluorescence and competitive receptor binding assays demonstrated that B-32 specifically binds to the GHR expressed on target cells. Next, we examined the resulting signal transduction pathways triggered by this antibody in primary porcine hepatocytes. We found that B-32 can activate the GHR and Janus kinase (2)/signal transducers and activators of transcription (JAK2/STAT5) signalling pathways. The phosphorylation kinetics of JAK2/STAT5 induced by either GH or B-32 were analysed in dose-response and time course experiments. In addition, B32 could also stimulate porcine hepatocytes to secrete insulin-like growth factors-1. Our work indicates that a monoclonal anti-idiotypic antibody to GH (B-32) can serve as a GHR agonist or GH mimic and has application potential in domestic animal (pig) production.