• Title/Summary/Keyword: HSP-60

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Analysis of the Correlation between Expressions of HSP90α, HSP90β, and GRP94, and the Clinicopathologic Characteristics in Tissues of Non-Small Cell Lung Cancer Patients (비소세포 폐암 환자 조직에서 Hsp90α, Hsp90β, GRP94의 발현과 임상병리학적 특성과의 상관관계 분석)

  • Kim, Mi Kyeong
    • Korean Journal of Clinical Laboratory Science
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    • v.49 no.4
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    • pp.460-469
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    • 2017
  • Heat shock proteins (HSPs) are induced as a self-defense mechanism of cells when exposed to various external stresses, such as high fever, infection, free radicals, and heavy metals. They affect the prognosis in the process of tumor formation. HSP is classified into four families: HSP27, HSP60, HSP90, and HSP100, depending on molecular weight. Heat shock protein 90 (HSP90), a molecular chaperone, plays an important role in the cellular protection against various stressful stimuli and in the regulation of cell cycle progression and apoptosis. In the present study, we assessed the differential expression of HSP90 family proteins in non-small cell lung cancer (NSCLC), and the correlation of their expression levels with clinicopathologic factors and patient survival rates. The result of this study can be summarized as follows; $HSP90{\alpha}$ showed higher expression in patients with no lymphovascular invasion (p=0.014). $HSP90{\beta}$ showed a higher expression of squamous cell carcinoma (p=0.003), and an over expression of glucose-related protein (GRP94) was significantly associated with poor differentiation (p=0.048). However, none of the HSP90 proteins showed a significant association with the survival status in patients with NSCLC. This study also indicates that $HSP90{\alpha}$ might contribute more to the carcinogenesis of NSCLC than $HSP90{\beta}$, and GRP94 and isoform selectivity should be considered when HSP90 inhibitors are studied or utilized in the treatment of NSCLC.

Heat Shock Protein Association with Clinico-Pathological Characteristics of Gastric Cancer in Jordan : HSP70 is Predictive of Poor Prognosis

  • Bodoor, Khaldon;Jalboush, Sara Abu;Matalka, Ismail;Abu-Sheikha, Aya;Waqfi, Rofieda Al;Ebwaini, Hanadi;Abu-Awad, Aymen;Fayyad, Luma;Al-Arjat, Jamal;Haddad, Yazan
    • Asian Pacific Journal of Cancer Prevention
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    • v.17 no.8
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    • pp.3929-3937
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    • 2016
  • Gastric cancer (GC) is a major health problem worldwide and is one of the ten most commonly diagnosed cancers in Jordan. GC is usually diagnosed at late aggressive stages in which treatment options are limited. Recently, heat shock proteins (HSPs) were found to be overexpressed in a wide range of malignancies have been considered as promising candidate biomarkers for GC. The aim of this study was to investigate pathogenic roles of a panel of cytosolic HSPs including HSP90, HSP70, HSP60 and HSP27 in GC. Immunohistochemistry was used to assess the level of expression of these proteins in archived tumor samples (N=87) representing various pathological characteristics of GC. HSP90, HSP60 and HSP27 were expressed abundantly in gastric tumors. On the other hand, HSP70 was reduced significantly and also found to be associated with Helicobacter pylori infection in tissues collected from GC patients. Furthermore, HSP27 was found to be associated with the level of differentiation. Our findings indicate a role of HSP70 as a potential prognostic biomarker, patients harboring positive HSP70 expression displaying worse disease free survival than those with negative HSP70 expression. Differential expression of HSPs may play crucial roles in the initiation and progression of GC, and could be exploited as future therapeutic targets.

Epitope specificity of Porphyromonas gingivalis heat shock protein for T-cell and/or B-cell in human atherosclerosis (동맥경화증에서 T-세포 및 B-세포에 대한 Porphyromonas gingivalis 열충격 단백의 항원 결정 부위 특이성 연구)

  • Bak, Jung-Gyu;Kim, Sung-Jo;Choi, Jeom-Il
    • Journal of Periodontal and Implant Science
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    • v.33 no.2
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    • pp.179-191
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    • 2003
  • Since periodontal infections are suggested as risk factors for the development of cardiovascular diseases, the present study was performed to evaluate the T cell immune responses specific to Pophylomonas gingivalis(P. gingivalis) heat shock protein(hsp) 60 and T-cell and B-cell epitope specificities for P. gingivalis hsp60 in atherosclerosis. Anti-P, gingivalis IgG antibody titers were elevated in all patients. We could establish P. gingivalis hsp-specific T cell lines from the atheroma lesions, a mixture of $CD4^+$ and $CD8^+$ cells producing the cytokines characteristic of both Th1 and Th2 subsets. of 108 overlapping synthetic peptides spanning whole P. gingivalis hsp60 molecule, ten peptides with common epitopes specificities for both T-cell and B-cell were identified. it was concluded that P. gingivalis hsp60 might K involved in the immunoregulatory process of atherosclerotic diseases with epitope specificities.

Reduced alveolar bone loss in rats immunized with Porphyromonas gingivalis heat shock protein (Porphyromonas gingivalis 열충격 단백으로 면역한 백서에서의 치조골 파괴의 감소)

  • Yi, Ni-Na;Lee, Ju-Youn;Choi, Jeom-Il
    • Journal of Periodontal and Implant Science
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    • v.33 no.4
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    • pp.555-562
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    • 2003
  • The present study has been performed to evaluate Porphyromonas gingivalis (P.gingivalis) heat shock protein(HSP)60 as a candidate vaccine to inhibit multiple bacteria-induced alveolar bone loss. Rats were immunized with P.gingivalis HSP60 and experimental alveolar bone loss was induced by infection with multiple periodonto -pathogenic bacteria. Post-immune rat anti-P.gingivalis HSP IgG levels were significantly elevated and have demonstrated highly significant inverse relationship with the amount of alveolar bone loss induced by multiple bacteria. Results from PCR detection of subgingival bacterial plaque indicated that the vaccine successfully eradicated the multiple pathogenic species. We concluded that P.gingivalis HSP60 could potentially be developed as a vaccine to inhibit periodontal disease induced by multiple pathogenic bacteria.

Mitogenic Estrogen Metabolites Alter the Expression of β-estradiol-regulated Proteins Including Heat Shock Proteins in Human MCF-7 Breast Cancer Cells

  • Kim, Seong Hwan;Lee, Su-Ui;Kim, Myung Hee;Kim, Bum Tae;Min, Yong Ki
    • Molecules and Cells
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    • v.20 no.3
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    • pp.378-384
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    • 2005
  • Estrogen metabolites are carcinogenic. The comparative mitogenic activities of $17{\beta}$-estradiol (E2) and four metabolites, 2-hydroxyestradiol (2-OHE2), 4-hydroxyestradiol (4-OHE2), $16{\alpha}$-hydroxyestrone ($16{\alpha}$-OHE1) and 2-methoxyestradiol (2-ME), were determined in estrogen receptor(ER)-positive MCF-7 human breast cancer cells. Each of the E2 metabolites caused proliferation of the MCF-7 cells, but only E2 and $16{\alpha}$-OHE1 induced a greater than 20-fold increases in transcripts of the progesterone receptor (PR) gene, a classical ER-mediated gene. This suggests that the mitogenic action of E2 and $16{\alpha}$-OHE1 could result from their effects on gene expression via the ER. E2 metabolites altered the expression of E2-regulated proteins including heat shock proteins (Hsps). $16{\alpha}$-OHE1 and 2-ME as well as E2 increased levels of Hsp56, Hsp60, $Hsp90{\alpha}$ and Hsp110 transcripts, and the patterns of these inductions resembled that of PR. Hsp56 and Hsp60 protein levels were increased by all the E2 metabolites. Levels of the transcripts of 3 E2-upregulated proteins (XTP3-transactivated protein A, protein disulfide isomerase-associated 4 protein and stathmin 1) and an E2-downregulated protein (aminoacylase 1) were also affected by the E2 metabolites. These results suggest that the altered expression of Hsps (especially Hsp56 and Hsp60) by E2 metabolites such as E2, $16{\alpha}$-OHE1 and 2-ME could be closely linked to their mitogenic action.

The Effect of Supplementary Selenium on Leukocytes and HSP70 Expression after Half-Body Immersion (반신욕 중 셀레늄 섭취가 백혈구와 HSP70 발현에 미치는 영향)

  • Shin, Young-Oh;Han, Min-Kyu;Lee, Jeong-Beom;Um, Byung-Hun
    • Journal of Nutrition and Health
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    • v.44 no.5
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    • pp.378-383
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    • 2011
  • This study examined the effect of supplementary selenium on leukocytes and heat shock protein (HSP) 70 expression in serum during half-body immersion. The subjects were male college tennis athletes. All subjects participated in two repeated experiments with a 1 week interval. During the 30 min intermittent half-body immersion, subjects were given 500 mL of water with or without selenium (100 ${\mu}g$). Blood samples were taken from the antecubital vein, and differential counts were made. Serum HSP70 protein was analyzed using a commercial ELISA kit. After half-body immersion, leukocytes and lymphocytes increased significantly but neutrophils decreased significantly in both trials (with or without selenium). Selenium supplementation, compared with placebo, decreased levels of leukocytes, neutrophils, and monocytes, but not lymphocytes, to the resting level or below 60 min after immersion. Only lymphocytes continued to increase in both trials during the recovery period. Serum HSP70 protein level did not change after immersion, but it decreased 60 min after immersion with the administration of selenium. In conclusion, supplementary selenium reduced the systemic immune response and serum HSP70 protein accumulation after half-body immersion.

Synthesis of 2',4'-Dimethoxychalcone Derivatives and Evaluation of Their Antitumor Activities Against Non-small Cell Lung Cancer (2',4'-Dimethoxychalcone 유도체 합성 및 비소폐암세포주에서 항암 활성평가)

  • Choi, Myeong A;Jeong, Ju Hui;Oh, Yong Jin;Lee, Young Sook;Seo, Young Ho
    • YAKHAK HOEJI
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    • v.60 no.3
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    • pp.135-140
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    • 2016
  • Heat shock protein 90 (Hsp90) is a ubiquitous molecular chaperone, which is associated with stabilization of many oncogenic proteins for cancer cell survival. Hsp90 is overexpressed 2-10 fold higher in cancer cells than normal cells. Due to its potential to simultaneously disable multiple signaling pathway, Hsp90 has been identified as a validated target for cancer therapy. Accordingly, we designed and synthesized 2',4'-dimethoxychalcone derivatives to inhibit Hsp90 chaperone function. Among 2',4'-dimethoxychalcone derivatives, we found that compound 1g disrupted Hsp90 chaperoning function and impaired the growth of cancer cells. These findings indicated that 1g could serve a potential lead compound to target Hsp90 in cancer chemotherapy.

Chaperon Effects of Campylobacter jejuni groEL Genes Products in Escherichia coli (Campylobacter jejuni의 groEL 유전자 산물의 대장균에서의 Chaperon효과)

  • Lim, Chae-Il;Kim, Chi-Kyung;Lee, Jae-Kil
    • Korean Journal of Microbiology
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    • v.32 no.1
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    • pp.47-52
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    • 1994
  • The cells of Campylobacter jejuni heat-shocked at 48${\circ}C$ for 30 min synthesized the heat shock proteins of HSP90, HSP66 and HSP60. Those heat shock proteins were found to correspond to the heat shock proteins of HSP87, HSP66 (DnaK), and HSP58 (GroEL) of E. coli, respectively. By Southern blot analysis of the chromosomal DNAs of C. jejuni with groESL and dnaK genes of E. coli as DNA probes, the heat shock genes of C. jejuni which are homologous to the E. coli groESL and dnaK genes were found to exist in the chromosomal DNA. The genomic libraries of C. jejuni were constructed with the cosmid vector pWE15 and the groEL gene of C. jejuni were cloned in E. coli B178 groEL44 temperature senstive mutant. The hybrid plasmid (pLC1) was inserted with the DNA fragment (about 5.7kb in size) containing the groEL gene. E. coli groEL44 mutant cell transformed with the pLC1 could grow at 42${\circ}C$ by synthesizing the HSP60 of C. jejuni and regained the susceptibility to the ${\lambda}$ vir phage by expression of the groEL gene in the cloned cells. These indicated that the groEL products of C. jejuni had chaperon effects by synthesizing the heat shock proteins in the cloned cells of E. coli.

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Molecular Phylogenetic Analysis of Botrytis cinerea Occurring in Korea (우리나라에 발생하는 잿빛곰팡이병균 Botrytis cinerea의 분자계통학적 유연관계)

  • Back, Chang-Gi;Lee, Seung-Yeol;Jung, Hee-Young
    • The Korean Journal of Mycology
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    • v.42 no.2
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    • pp.138-143
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    • 2014
  • Several isolates were collected from apple, pepper, strawberry, cucumber and tomato having typical gray mold symptoms. All the isolates were identified as Botrytis cinerea by using morphological characteristics and PCR-RFLP method. It was difficult to analyze the phylogenetic relationship of these isolates by using ITS region, HSP60 and G3PDH because these genes were highly homologous in their nucleotide in inter-species of B. cinerea and intra-species of genus Botrytis. However, phylogenetic analysis using combined sequences (RPB2, HSP60 and G3PDH genes) clearly showed that all isolate of B. cinerea were different from Botrytis spp. Furthermore, it was also confirmed that strawberry isolate was distantly related to apple, pepper, cucumber and tomato isolates that were closely related to each other in nucleotide level.

SUV39H1 is a New Client Protein of Hsp90 Degradated by Chaetocin as a Novel C-Terminal Inhibitor of Hsp90

  • Lian, Bin;Lin, Qian;Tang, Wei;Qi, Xin;Li, Jing
    • Biomolecules & Therapeutics
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    • v.29 no.1
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    • pp.73-82
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    • 2021
  • Hsp90 is often overexpressed with activated form in cancer cells, and many key cellular proteins are dependent upon the Hsp90 machinery (these proteins are called "client protein"). Nowadays, more client proteins and more inhibitors of Hsp90 are being discovered. Chaetocin has been identified as an inhibitor of histone methyl transferase SUV39H1. Herein, we find that Chaetocin is an inhibitor of Hsp90 which binds to the C-terminal of Hsp90α. Chaetocin inhibited a variety of Hsp90 client proteins including AMl1-ETO and BCL-ABL, the mutant fusion-protein in the K562 and HL-60 cells. SUV39H1 mediates epigenetic events in the pathophysiology of hematopoietic disorders. We found that inhibition of Hsp90 by Chaetocin and 17-AAG had ability to induce degradation of SUV39H1 through proteasome pathway. In addition, SUV39H1 interacted with Hsp90 through co-chaperone HOP. These results suggest that SUV39H1 belongs to a client protein of Hsp90. Moreover, Chaetocin was able to induce cell differentiation in the two cells in the concentration range of Hsp90 inhibition. Altogether, our results demonstrate that SUV39H1 is a new client protein of Hsp90 degradated by Chaetocin as a novel C-terminal inhibitor of Hsp90. The study establishes a new relationship of Chaetocin and SUV39H1, and paves an avenue for exploring a new strategy to target SUV39H1 by inhibition of Hsp90 in leukemia.