• 제목/요약/키워드: Expression of HSP70

검색결과 211건 처리시간 0.027초

Clinicopathologic and Prognostic Significance of Carboxyl Terminus of Hsp70-interacting Protein in HBV-related Hepatocellular Carcinoma

  • Jin, Ye;Zhou, Li;Liang, Zhi-Yong;Jin, Ke-Min;Zhou, Wei-Xun;Xing, Bao-Cai
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권9호
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    • pp.3709-3713
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    • 2015
  • Background: Many factors, including molecular ones, were demonstrated to be associated with long-term prognosis of hepatocellular carcinoma (HCC). Thus far, the expression and clinicopathologic and prognostic significance of the carboxyl terminus of Hsp70-interacting protein (CHIP) in B-type hepatitis virus (HBV)-related HCC remain unknown. Materials and Methods: CHIP expression was detected by immunohistochemical staining of surgical samples from 79 patients with HCC with HBsAg positivity. In addition, correlations with clinicopathologic parameters and patient survival were evaluated. Results: It was found that positive CHIP staining was observed in tumor, but not non-tumor, tissues. High expression of CHIP was significantly related to larger tumor size, with marginally significant associations noted for presence of portal vein invasion and higher serum a-fetoprotein level. In addition, univariate analysis showed that high CHIP expression was a powerful predictor for dismal overall and disease-free survival. However, independent prognostic implications of CHIP were not proven in multivariate Cox regression test. Conclusions: CHIP is overexpressed in HBV-related HCC and is associated with unfavorable biological behavior as well as poor prognosis. However, its prognostic role needs to be further validated.

The Antitumor Effect of C-terminus of Hsp70-Interacting Protein via Degradation of c-Met in Small Cell Lung Cancer

  • Cho, Sung Ho;Kim, Jong In;Kim, Hyun Su;Park, Sung Dal;Jang, Kang Won
    • Journal of Chest Surgery
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    • 제50권3호
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    • pp.153-162
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    • 2017
  • Background: The mesenchymal-epithelial transition factor (MET) receptor can be overexpressed in solid tumors, including small cell lung cancer (SCLC). However, the molecular mechanism regulating MET stability and turnover in SCLC remains undefined. One potential mechanism of MET regulation involves the C-terminus of Hsp70-interacting protein (CHIP), which targets heat shock protein 90-interacting proteins for ubiquitination and proteasomal degradation. In the present study, we investigated the functional effects of CHIP expression on MET regulation and the control of SCLC cell apoptosis and invasion. Methods: To evaluate the expression of CHIP and c-Met, which is a protein that in humans is encoded by the MET gene (the MET proto-oncogene), we examined the expression pattern of c-Met and CHIP in SCLC cell lines by western blotting. To investigate whether CHIP overexpression reduced cell proliferation and invasive activity in SCLC cell lines, we transfected cells with CHIP and performed a cell viability assay and cellular apoptosis assays. Results: We found an inverse relationship between the expression of CHIP and MET in SCLC cell lines (n=5). CHIP destabilized the endogenous MET receptor in SCLC cell lines, indicating an essential role for CHIP in the regulation of MET degradation. In addition, CHIP inhibited MET-dependent pathways, and invasion, cell growth, and apoptosis were reduced by CHIP overexpression in SCLC cell lines. Conclusion: C HIP is capable of regulating SCLC cell apoptosis and invasion by inhibiting MET-mediated cytoskeletal and cell survival pathways in NCI-H69 cells. CHIP suppresses MET-dependent signaling, and regulates MET-mediated SCLC motility.

SIRT1 inhibitor에 의한 Hsp90 inhibitor의 Hsp90 샤페론 기능 억제 및 항암제 내성세포의 Hsp90 inhibitor에 대한 세포독성 증강 (SIRT1 Inhibitor Enhances Hsp90 Inhibitor-mediated Abrogation of Hsp90 Chaperone Function and Potentiates the Cytotoxicity of Hsp90 Inhibitor in Chemo-resistant Human Cancer Cells)

  • 문현정;이수훈;김학봉;이경아;강치덕;김선희
    • 생명과학회지
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    • 제26권7호
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    • pp.826-834
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    • 2016
  • 본 연구는 Hsp90 inhibitor 및 SIRT1 inhibitor의 병용처리가 항암제 다제내성(MDR) 인간 암세포의 증식 억제에 효과적임을 밝혔다. SIRT1 활성 억제가 Hsp90 inhibitor인 17-AAG의 세포 독성의 효과를 증강시켰으며, 이로 인해 Hsp90 inhibitors에 대한 내성을 극복시킬 수 있음을 인간 자궁암세포인 HeyA8의 MDR 변이주인 HeyA8- MDR 세포에서 확인하였다. SIRT1 inhibitor는 Hsp90 inhibitor에 의한 Hsp90 샤페론 기능 억제를 증강시키며, ubiquitin ligase CHIP의 발현 증강을 유발하여, Hsp90 client protein 인 mutant p53 (mut p53)의 분해를 촉진시킨다. Mut p53 의 발현 감소는 암세포의 Hsp90 inhibitor 내성 획득의 가장 중요한 원인으로 지적되는 heat shock factor 1 (HSF1)/heat shock proteins (Hsps)의 발현 억제와 관련됨을 알 수 있었으며, 이는 항암제 다제내성 세포에서 SIRT1 inhibitor에 의하여 Hsp90 inhibitor에 대한 감수성이 증강되는 분자적 기전임을 밝혔다. 그러므로, SIRT1 억제에 의한 mut p53/HSF1 발현 감소가 MDR 암세포의 Hsp90 inhibitors 내성 극복에 매우 유효함을 시사하는 결과를 얻었다.

염분 노출에 따른 Chironomus riparius의 성장지연과 Heat shock protein 70 유전자 발현 (Gene Expression of Chironomus riparius Heat Shock Protein 70 and Developmental Retardation Exposure to Salinity)

  • 김원석;임병현;홍철;최승원;박기연;곽인실
    • 생태와환경
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    • 제50권3호
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    • pp.305-313
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    • 2017
  • 기후변화로 잦아진 강우에 의해 염분 환경에 유입되는 담수생물의 영향을 파악해 보고자 하였다. 담수의 오염지표생물인 깔따구과의 실내 실험종인 C. riparius를 대상으로 염분 노출에 따른 스트레스 반응으로 생존율과 탈피율, 성장기간, 하순기절 기형을 분석하였고, 분자생물학적으로 스트레스 분자마커로 연구가 이루어진 HSP70 유전자 발현을 측정하였다. C. riparius의 생존율은 노출시간에 따라 감소하였으며 15 psu에서 4일이 경과하면 생존개체가 관찰되지 않았다. C. riparius의 pupation과 emergence는 15 psu 이상에서는 보이지 않았고 탈피의 성공은 10 psu에서 20% 이하였다. 또한 C. riparius의 성장지연은 pupation과 emergence 기간에서 잘 반영되어, 대조군과 5 psu에 비해 10 psu에서 4일이 늦어졌다. 염분 노출 96시간 후 관찰한 C. riparius 하순기절 형태 이상은 10 psu와 15 psu에서 소수 관찰되었다. C. riparius HSP70 유전자 발현은 대조군에 비해 5, 10 psu에서 약 2.5~4배 이상 발현량이 크게 증가하였다. 따라서 염분은 담수생물에게 매우 큰 스트레스를 제공하는 원인물질로 유해물질과 유사한 생태독성학적인 반응과 분자지표 반응을 보여주었다.

Search for Novel Stress-responsive Protein Components Using a Yeast Mutant Lacking Two Cytosolic Hsp70 Genes, SSA1 and SSA2

  • Matsumoto, Rena;Rakwal, Randeep;Agrawal, Ganesh Kumar;Jung, Young-Ho;Jwa, Nam-Soo;Yonekura, Masami;Iwahashi, Hitoshi;Akama, Kuniko
    • Molecules and Cells
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    • 제21권3호
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    • pp.381-388
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    • 2006
  • Heat shock proteins (Hsp) 70 are a ubiquitous family of molecular chaperones involved in many cellular processes. A yeast strain, ssa1/2, with two functionally redundant cytosolic Hsp70s (SSA1 and SSA2) deleted shows thermotolerance comparable to mildly heatshocked wild type yeast, as well as increased protein synthesis and ubiquitin-proteasome protein degradation. Since mRNA abundance does not always correlate well with protein expression levels it is essential to study proteins directly. We used a gel-based approach to identify stress-responsive proteins in the ssa1/2 mutant and identified 43 differentially expressed spots. These were trypsin-digested and analyzed by nano electrospray ionization liquid chromatography tandem mass spectrometry (nESI-LC-MS/MS). A total of 22 non-redundant proteins were identified, 11 of which were confirmed by N-terminal sequencing. Nine proteins, most of which were up-regulated (2-fold or more) in the ssa1/2 mutant, proved to be stress-inducible proteins such as molecular chaperones and anti-oxidant proteins, or proteins related to carbohydrate metabolism. Interestingly, a translational factor Hyp2p up-regulated in the mutant was also found to be highly phosphorylated. These results indicate that the cytosolic Hsp70s, Ssa1p and Ssa2p, regulate an abundance of proteins mainly involved in stress responses and protein synthesis.

Relationship between Heat Shock Protein 70 Synthesis and Development of Thermotolerance in the Olive Flounder, Paralichthys olivaceus

  • Kim, Woo-Jin;Myong, Jeong-In;Lee, Jeong-Ho;Park, Jung-Youn;Park, Jung-Youn;Kim, Doo-Won;Kang, Kyung-KIl;Kim, Han-Do
    • 한국양식학회지
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    • 제13권2호
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    • pp.181-186
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    • 2000
  • Relationship between hsp 70 expression and development of thermotolerance in the olive flounder was investigated by exposing the fish to 23 or 26$^{\circ}C$ for 1 h. After selected intervals, they were re-exposed to 31$^{\circ}C$ for a duration of 15 min. Theremotolerance rapidly developed with increasing interval and peaked at 3 h interval. Subsequently, it gradually decayed and disappeared by 24 h interval. The flounder displayed remarkably high levels of hsp 70 mRNA and protein, as compared to control flounder. Hence, the olive flounder acquires thermotolerance, which is positively correlated with the synthesis of hsp 70.

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Photodynamic Therapy-Mediated Temporal Expression of Thymidine Kinase Genes Ligated to the Human Heat Shock Promotor: Preliminary in vitro Model Study of Enhanced Phototoxicity by PDT-Induced Gene Therapy

  • Kim, Mo-Sun;Kim, Tae-An;Kim, Jong-Ki
    • Journal of Photoscience
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    • 제9권3호
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    • pp.41-43
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    • 2002
  • PDT-mediated cyototoxicity basically depends on the penetrated light-dose into the tumor tissue. This limits the efficiency of PDT to the superficial tumor region typically less than 1 cm. The localized photochemical generation of reactive oxygen species, including singlet oxygen is known to increase expression of assortment of early response genes including heat shock protein. In order to increase PDT cytotoxicity in the treatment of solid tumor, it is desirable to combine PDT with other therapeutic effects. In this preliminary study we evaluated enhanced cytotoxicity from the PDT-mediated expression of thymidine kinase in a transfected tumor cell line. Two types of photo sensitizers, a hematoporphyrin derivative(Photogem, Russia) and aluminium sulphonated phthalocyanine(Photosense, Russia) were used to evaluate the overexpression of hsp-70 in PDT-treated cell. Transient increase of hsp-70 was observed at 6-8 hrs later following irradiation in the photosense-treated cell whereas it was not observed in Photogem-treated cell. In the presence of ganciclovia, transfected cell showed a 17% increase in the cytotoxicity compared to the PDT only cell.

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Fibroblasts 세포주의 HSP70에 대한 DBD-bio-plasma의 effects: Cell에서 Heat Shock에 의한 Molecular Level 변화로의 새로운 접근법 (Effects of DBD-bio-plasma on the HSP70 of Fibroblasts: A New Approach on Change of Molecular Level by Heat Shock in the Cell)

  • 김경연;이준영;남민경;최은하;임향숙
    • KSBB Journal
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    • 제30권1호
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    • pp.21-26
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    • 2015
  • Plasma is an ionized gas mixture, consisting of neutral particles, positive ions, negative electrons, electronically excited atoms and molecules, radicals, UV photons, and various reactive species. Also, plasma has unique physical properties distinct from gases, liquids, and solids. Until now, non-thermal plasmas have been widely utilized in bio-medical applications (called bio-plasma) and have been developed for the plasma-related devices that are used in the medical field. Although numerous bio-plasma studies have been performed in biomedicine, there is no confirmation of the nonthermal effect induced by bio-plasma. Standardization of the biological application of plasma has not been evaluated at the molecular level in living cells. In this context, we investigated the biological effect of bio-plasma on living cells. Hence, we treated the fibroblasts with Dielectric Bauvier Discharge bio-plasma (DBD), and assessed the characteristic change at the molecular level, one of the typical cellular responses. Heat shock protein 70 (HSP70) regulates its own protein level in response to stimuli. HSP70 responds to heat shock by increasing its own expression at the molecular level in cells. Hence, we confirmed the level of HSP70 after treatment of mouse embryonic fibroblasts (MEFs) with DBD. Interestingly, DBD-plasma induced cell death, but there was no difference in the level of HSP70, which is induced by heat shock stimuli, in DBD-treated MEFs. Our data provide the basic information on the interaction between MEFs and DBD, and can help to design a molecular approach in this field.

토종 종계의 암수 합사가 개체의 스트레스 반응 정도에 미치는 영향 (Effect of Mixed Rearing of Male and Female Chickens on the Stress Response of Korean Native Chickens)

  • 정현철;최은식;권재현;조은정;손시환
    • 한국가금학회지
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    • 제47권1호
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    • pp.29-37
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    • 2020
  • 본 연구는 한국토종닭 종계에 있어 암수 합사가 개체들의 스트레스 반응 정도에 미치는 영향을 살펴보고자 한 것으로 스트레스 반응 정도는 합사 이전과 합사 이후 개체들의 H/L ratio, HSPs 유전자 발현량 및 세포 내 DNA 손상율을 분석하였다. 분석 결과, 합사에 따른 개체들의 H/L ratio 값이 합사 이전에 비해 3배 이상 유의하게 증가한 것으로 나타났으며 암수 간 차이는 없는 것으로 나타났다(P<0.001). HSP-70, HSP90-α 및 HSP90-β 유전자 발현율에 있어 모든 HSPs의 유전자 발현율이 암수 합사 이전에 비해 합사 이후 2.5~3.4배 정도 유의하게 상승한 것으로 나타났으며, 특히 암컷이 수컷에 비해 합사에 따른 HSPs 발현율 증가가 높은 것으로 나타났다(P<0.01). 세포 내 DNA 손상율 분석에 있어 모든 Comet 지표들이 암수 합사 이전에 비해 합사 이후에 유의하게 증가하였으며, 암수 간에는 차이가 없는 것으로 나타났다(P<0.001). 이상의 결과들을 종합할 때, 토종 종계에 있어 암수 합사가 암컷과 수컷 모두에게 매우 큰 외적 스트레스 요인으로 작용함을 시사한다고 하겠다.

Effect of hyperthermia on cell viability, amino acid transfer, and milk protein synthesis in bovine mammary epithelial cells

  • Zhou, Jia;Yue, Shuangming;Xue, Benchu;Wang, Zhisheng;Wang, Lizhi;Peng, Quanhui;Hu, Rui;Xue, Bai
    • Journal of Animal Science and Technology
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    • 제64권1호
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    • pp.110-122
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    • 2022
  • The reduction of milk yield caused by heat stress in summer is the main condition restricting the economic benefits of dairy farms. To examine the impact of hyperthermia on bovine mammary epithelial (MAC-T) cells, we incubated the MAC-T cells at thermal-neutral (37℃, CON group) and hyperthermic (42℃, HS group) temperatures for 6 h. Subsequently, the cell viability and apoptotic rate of MAC-T cells, apoptosis-related genes expression, casein and amino acid transporter genes, and the expression of the apoptosis-related proteins were examined. Compared with the CON group, hyperthermia significantly decreased the cell viability (p < 0.05) and elevated the apoptotic rate (p < 0.05) of MAC-T cells. Moreover, the expression of heat shock protein (HSP)70, HSP90B1, Bcl-2-associated X protein (BAX), Caspase-9, and Caspase-3 genes was upregulated (p < 0.05). The expression of HSP70 and BAX (pro-apoptotic) proteins was upregulated (p < 0.05) while that of B-cell lymphoma (BCL)2 (antiapoptotic) protein was downregulated (p < 0.05) by hyperthermia. Decreased mRNA expression of mechanistic target of rapamycin (mTOR) signaling pathway-related genes, amino acid transporter genes (SLC7A5, SLC38A3, SLC38A2, and SLC38A9), and casein genes (CSNS1, CSN2, and CSN3) was found in the heat stress (HS) group (p < 0.05) in contrast with the CON group. These findings illustrated that hyperthermia promoted cell apoptosis and reduced the transport of amino acids into cells, which inhibited the milk proteins synthesis in MAC-T cells.