• 제목/요약/키워드: HMGB-1

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Backbone assignment of HMGB1 A-box and molecular interaction with Hoxc9DBD studied by paramagnetic probe

  • Choi, Ji Woong;Park, Sung Jean
    • 한국자기공명학회논문지
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    • 제25권2호
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    • pp.17-23
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    • 2021
  • High mobility group protein B1 (HMGB1) is a highly conserved, non-histone, chromatin associated nuclear protein encoded by HMGB1 gene. HMGB1 proteins may be general co-factors in Hox-mediated transcriptional activation that facilitate the access of Hox proteins to specific DNA targets. It is unclear that the exact binding interface of Hoxc9DBD and HMGB1. To identify the interface and binding affinity of Hoxc9DBD and HMGB1 A-box, the paramagnetic probe, MTSL was used in NMR titration experiment. It is attached to the N-terminal end of HMGB1 A-box by reaction with thiol groups. The backbone assignment of HMGB1 A-box was achieved with 3D NMR techinques. The 15N-labeled HMGB1 A-box was titrated with MTSL-labeled Hoxc9DBD respectively. Based on the chemical shift changes we can identify the interacting residues and further map out the binding sites on the protein structure. The NMR titration result showed that the binding interface of HMGB1 A-box is around loop-1 between helix-1 and helix-2. In addition, the additional contacts were found in N- and C-terminus. The N-terminal arm region of Hoxc9DBD is the major binding region and the loop between helix1 and helix2 is the minor binding region.

High mobility group B1(HMGB1)과 LPS의 염증유발효과 차이의 비교 및 HMGB1에 의한 IL-8 promoter 자극 기전의 규명 (Proinflammatory Effects of High Mobility Group B1 (HMGB1) Versus LPS and the Mechanism of IL-8 Promoter Stimulation by HMGB1)

  • 전은주;곽희원;송주한;이영우;정재우;최재철;신종욱;박인원;최병휘;김재열
    • Tuberculosis and Respiratory Diseases
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    • 제62권4호
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    • pp.299-307
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    • 2007
  • 배경: HMGB1은 염증반응의 후기에 분비되는 중요한 염증유발물질 중 하나이다. 본 연구에서는 기존에 염증유발물질로 잘 알려진 LPS와 새롭게 염증유발물질로 관심을 받고 있는 HMGB1의 염증유발작용을 생체 외 및 생체 내 실험을 통해 비교하고자 하였다. 또한 HMGB1의 자극에 의한 IL-8 promoter region의 활성화에 중요한 역할을 수행하는 전사인자들을 확인하고자 하였다. 방법: RAW264.7 세포에 LPS(100 ng/ml) 또는 HMGB1(500 ng/ml)을 투여하고 각각 0, 2, 4, 8, 12 그리고 24시간 뒤에 세포상층액의 $TNF-{\alpha}$, MIP-2 그리고 $IL-1{\beta}$의 농도를 ELISA법으로 측정하였다. 생쥐의 복강에 LPS(5 mg/kg) 또는 HMGB1(2.5 mg/kg)을 주입하여 급성폐손상을 유발한 후에 폐의 사이토카인의 발현과 MPO 활성도를 측정하였다(LPS는 4시간 뒤, HMGB1은 24 시간 뒤). IL-8 promoter 부위에 있는 NF-IL6, $NF-{\kappa}B$ 그리고 AP-1에 대한 결합부위에 대해 돌연변이를 일으킨 후에 각각의 돌연변이체를 pIL-6luc에 결합시킨 뒤 RAW264.7 세포에 삽입하였다. 이 세포들을 36시간 배양한 후에 HMGB1(500 ng/ml)으로 자극하고, 한 시간 뒤에 세포를 녹인 후 luciferase 활성도를 측정하였다. 결과: LPS 투여 후에 RAW264.7 세포 배양상층액의 $TNF-{\alpha}$농도는 24시간 뒤에, MIP-2 농도는 8시간 뒤에 최고치를 보였다. 한편 HMGB1 투여 후에는 $TNF-{\alpha}$와 MIP-2 농도 모두 24시간 뒤에 최고치를 나타내었다. LPS 복강 내 투여 후 4시간 뒤에 생쥐의 폐의 $TNF-{\alpha}$, MIP-2 그리고 $IL-1{\beta}$의 농도는 대조군에 비해 현저히 증가하였으나, HMGB1 복강 내 투여 후 24시간 뒤에 생쥐의 폐에서는 $IL-1{\beta}$의 농도만 약간 증가하였다. MPO 활성도는 LPS와 HMGB1 투여 후에 모두 증가하였으며, LPS 투여 후가 더 의미있게 증가하였다. $NF-{\kappa}B$ 돌연변이체와 AP-1 돌연변이체에서 luciferase 활성도가 의미있게 감소하였다. 결론: 이상의 결과를 살펴볼 때 HMGB1은 염증유발효과는 LPS에 비해 강도가 떨어지나 지속시간은 오래 계속되는 것으로 보이며, HMGB1에 의한 IL-8의 활성화에 $NF-{\kappa}B$ 뿐만 아니라 AP-1도 중요한 역할을 수행하는 것으로 판단된다.

Non-histone protein HMGB1 inhibits the repair of damaged DNA by cisplatin in NIH-3T3 murine fibroblasts

  • Yusein-Myashkova, Shazie;Ugrinova, Iva;Pasheva, Evdokia
    • BMB Reports
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    • 제49권2호
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    • pp.99-104
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    • 2016
  • The nuclear non-histone protein high mobility group box (HMGB) 1 is known to having an inhibitory effect on the repair of DNA damaged by the antitumor drug cisplatin in vitro. To investigate the role of HMGB1 in living cells, we studied the DNA repair of cisplatin damages in mouse fibroblast cell line, NIH-3T3. We evaluated the effect of the post-synthetic acetylation and C-terminal domain of the protein by overexpression of the parental and mutant GFP fused forms of HMGB1. The results revealed that HMGB1 had also an inhibitory effect on the repair of cisplatin damaged DNA in vivo. The silencing of HMGB1 in NIH-3T3 cells increased the cellular DNA repair potential. The increased levels of repair synthesis could be "rescued" and returned to less than normal levels if the knockdown cells were transfected with plasmids encoding HMGB1 and HMGB1 K2A. In this case, the truncated form of HMGB1 also exhibited a slight inhibitory effect.

Ginsenosides Inhibit HMGB1-induced Inflammatory Responses in HUVECs and in Murine Polymicrobial Sepsis

  • Lee, Wonhwa;Ku, Sae-Kwang;Jeong, Tae Cheon;Lee, Sangkyu;Bae, Jong-Sup
    • Bulletin of the Korean Chemical Society
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    • 제35권10호
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    • pp.2955-2962
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    • 2014
  • Asian ginseng is used as a treatment for cardiovascular diseases, ischemia, and cancers. High mobility group box 1 (HMGB1) protein acts as a late mediator of severe vascular inflammatory conditions. However, the effect of ginsenosides from Asian ginseng on HMGB1-induced inflammatory responses has not been studied. We addressed this question by monitoring the effects of ginsenoside treatment on lipopolysaccharide (LPS) and cecal ligation and puncture (CLP)-mediated release of HMGB1, and HMGB1-mediated regulation of proinflammatory responses. Ginsenoside treatment suppressed LPS-mediated release of HMGB1 and HMGB1-mediated cytoskeletal rearrangements. Ginsenosides also inhibited HMGB1-mediated inflammatory responses. In addition, ginsenosides inhibited the production of tumor necrosis factor-${\alpha}$ (TNF-${\alpha}$) and activation of protein kinase B (Akt), nuclear factor-${\kappa}B$ (NF-${\kappa}B$), and extracellular-regulated kinases (ERK) 1/2 by HMGB1. Ginsenosides also decreased CLP-induced release of HMGB1, production of interleukin (IL) $1{\beta}/6$, and mortality. These results suggested that ginsenosides may be potential therapeutic agents for treatment of vascular inflammatory diseases through inhibition of the HMGB1 signaling pathway.

High Mobility Group Box 1 Protein Is Methylated and Transported to Cytoplasm in Clear Cell Renal Cell Carcinoma

  • Wu, Fei;Zhao, Zuo-Hui;Ding, Sen-Tai;Wu, Hai-Hu;Lu, Jia-Ju
    • Asian Pacific Journal of Cancer Prevention
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    • 제14권10호
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    • pp.5789-5795
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    • 2013
  • Background: The high mobility group box 1 (HMGB1) protein is a widespread nuclear protein present in most cell types. It typically locates in the nucleus and functions as a nuclear cofactor in transcription regulation. However, HMGB1 can also localize in the cytoplasm and be released into extracellular matrix, where it plays critical roles in carcinogenesis and inflammation. However, it remains elusive whether HMGB1 is relocated to cytoplasm in clear cell renal cell carcinoma (ccRCC). Methods: Nuclear and cytoplasmic proteins were extracted by different protocols from 20 ccRCC samples and corresponding adjacent renal tissues. Western blotting and immunohistochemistry were used to identify the expression of HMGB1 in ccRCC. To elucidate the potential mechanism of HMGB1 cytoplasmic translocation, HMGB1 proteins were enriched by immunoprecipitation and analyzed by mass spectrometry (MS). Results: The HMGB1 protein was overexpressed and partially localized in cytoplasm in ccRCC samples (12/20, 60%, p<0.05). Immunohistochemistry results indicated that ccRCC of high nuclear grade possess more HMGB1 relocation than those with low grade (p<0.05). Methylation of HMGB1 at lysine 112 in ccRCC was detected by MS. Bioinformatics analysis showed that post-translational modification might affect the binding ability to DNA and mediate its translocation. Conclusion: Relocation of HMGB1 to cytoplasm was confirmed in ccRCC. Methylation of HMGB1 at lysine 112 might the redistribution of this cofactor protein.

혈관내피세포에서 라이코펜이 염증유전자 발현에 미치는 영향 (Inhibitory Effects of Lycopene on the Expression of Pro-inflammatory Genes in Human Vascular Endothelial Cells)

  • 김태훈;배종섭
    • 한국식품저장유통학회지
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    • 제19권2호
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    • pp.287-293
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    • 2012
  • 본 연구에서는 HMGB1 의해 증가되는 각종 염증관련물질에 대해 라이코펜이 가지는 저해 역할을 규명하고 하였다. 라이코펜은 HMGB1에 의해 증가되는 MCP-1, IL-8, sPLA2-IIA, PGE2의 발현을 NF-${\kappa}B$ 그리고 TNF-${\alpha}$의 활성를 저해함으로써 감소시켰다. 특히, 1 mM에서 그 효능이 통계적으로 유효하였다. 결론적으로 HMGB1에 의해서 발생하는 각종 혈관염증질환에서 라이코펜은 증가하는 각종 염증관련물질을 저해하였고, 결국 라이코펜이 패혈증을 포함하는 염증질환을 효과적으로 치료할 수 있는 방법에 있어 많은 방향성을 제시할 것으로 기대한다.

29-kDa FN-f inhibited autophagy through modulating localization of HMGB1 in human articular chondrocytes

  • Hwang, Hyun Sook;Choi, Min Ha;Kim, Hyun Ah
    • BMB Reports
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    • 제51권10호
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    • pp.508-513
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    • 2018
  • Fibronectin fragments found in the synovial fluid of patients with osteoarthritis (OA) induce the catabolic responses in cartilage. Nuclear high-mobility group protein Box 1 (HMGB1), a damage-associated molecular pattern, is responsible for the regulation of signaling pathways related to cell death and survival in response to various stimuli. In this study, we investigated whether changes induced by 29-kDa amino-terminal fibronectin fragment (29-kDa FN-f) in HMGB1 expression influences the pathogenesis of OA via an HMGB1-modulated autophagy signaling pathway. Human articular chondrocytes were enzymatically isolated from articular cartilage. The level of mRNA was measured by quantitative real-time PCR. The expression of proteins was examined by western blot analysis, immnunofluorescence assay, and enzyme-linked immunosorbent assay. Interaction of proteins was evaluated by immunoprecipitation. The HMGB1 level was significantly lower in human OA cartilage than in normal cartilage. Although 29-kDa FN-f significantly reduced the HMGB1 expression at the mRNA and protein levels 6 h after treatment, the cytoplasmic level of HMGB1 was increased in chondrocytes treated with 29-kDa FN-f, which significantly inhibited the interaction of HMGB1 with Beclin-1, increased the interaction of Bcl-2 with Beclin-1, and decreased the levels of Beclin-1 and phosphorylated Bcl-2. In addition, the level of microtubule-associated protein 1 light chain 3-II, an autophagy marker, was down-regulated in chondrocytes treated with 29-kDa FN-f, whereas the effect was antagonized by mTOR knockdown. Furthermore, prolonged treatment with 29-kDa FN-f significantly increased the release of HMGB1 into the culture medium. These results demonstrated that 29-kDa FN-f inhibits chondrocyte autophagy by modulating the HMGB1 signaling pathway.

Identification of specifically activated angiogenic molecules in HMGB-1-induced angiogenesis

  • Kim, Won Kyu;Kwon, Yujin;Park, Minhee;Yun, Seongju;Kwon, Ja-Young;Kim, Hoguen
    • BMB Reports
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    • 제50권11호
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    • pp.590-595
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    • 2017
  • High-mobility group box-1 (HMGB-1) is expressed in almost all cells, and its dysregulated expression correlates with inflammatory diseases, ischemia, and cancer. Some of these conditions accompany HMGB-1-mediated abnormal angiogenesis. Thus far, the mechanism of HMGB-1-induced angiogenesis remains largely unknown. In this study, we performed time-dependent DNA microarray analysis of endothelial cells (ECs) after HMGB-1 or VEGF treatment. The pathway analysis of each gene set upregulated by HMGB-1 or VEGF showed that most HMGB-1-induced angiogenic pathways were also activated by VEGF, although the activation time and gene sets belonging to the pathways differed. In addition, HMGB-1 upregulated some VEGFR signaling-related angiogenic factors including EGR1 and, importantly, novel angiogenic factors, such as ABL2, CEACAM1, KIT, and VIPR1, which are reported to independently promote angiogenesis under physiological and pathological conditions. Our findings suggest that HMGB-1 independently induces angiogenesis by activating HMGB-1-specific angiogenic factors and also functions as an accelerator for VEGF-mediated conventional angiogenesis.

Expression of High Mobility Group Box - B1 (HMGB-1) and Matrix Metalloproteinase-9 (MMP-9) in Non-small Cell Lung Cancer (NSCLC)

  • Wang, Jing-Luan;Wu, Da-Wei;Cheng, Zhao-Zhong;Han, Wei-Zhong;Xu, Sheng-Wei;Sun, Ni-Na
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권12호
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    • pp.4865-4869
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    • 2014
  • Objective: This study evaluated the expression level of high mobility group box-B1 (HMGB-1) and matrix metalloproteinase-9 (MMP-9) in non-small cell lung cancer (NSCLC) inmorder to reveal any relation with development and prognosis. Methods: NSCLC and normal tissues were selected from 30 patients at age of 30-73, and used for RT-PCR and Western blot analyses of HMGB-1. A total of 100 paraffin embedded NSCLC tissues were also isolated from patients through surgical resection, and used for detection of HMGB-1 by immunohistochemistry. In addition, 50 samples were also applied for MMP-9 detection, and 30 normal tissues were considered as controls. Correlation analysis of HMGB-1 and MMP-9 was carried out by Pearsons correlation coefficient. Results: The average expression level of HMGB-1 in NSCLC patients was significantly higher than in normal lung tissues. In addition, patients in III-IV period exhibit significantly higher positive rate of HMGB-1 when compared with I-II period cases. Furthermore, a positive correlation with HMGB-1 was found in the expression of MPP-9. Conclusion: HMGB-1 was highly expressed in NSCLC, which may become a prognostic and predictive marker for NSCLC. Besides, MPP-9 was positively correlated with HMGB-1.

HMGB1에 의한 alkylating DNA 손상에 의해 유도된 세포사멸의 세포괴사로의 전환 (HMGB1 Switches Alkylating DNA Damage-Induced Apoptosis to Necrosis)

  • 이수연;정의경;전현민;주민경;김초희;박혜경;강호성
    • 생명과학회지
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    • 제21권7호
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    • pp.953-960
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    • 2011
  • 세포괴사는 세포막의 파열, HMGB1을 포함한 세포 내용물의 세포외부로의 방출 등을 수반하는 세포죽음이다. HMGB1은 핵 단백질로 전사조절자로 작용하지만 세포괴사에 의해 세포 밖으로 방출되면 염증을 유발하고 암을 촉진하는 cytokine으로 작용한다. HMGB1의 과발현은 암 발생 및 항암제 저항과 밀접한 연관성을 가지고 있지만, 그 기작에 대한 연구는 미흡한 실정이다. 본 연구에서는, HMGB1이 항암제에 의한 세포 죽음에 미치는 영향을 조사하였다. 그 결과, HMGB1은 MCF-7, MDA-MB231, MDA-MB361 세포에서 cisplatin에 의한 세포사멸을 억제하고 세포운명을 세포괴사로 바꾼다는 사실을 확인하였다. HMGB1의 세포사멸-세포괴사 전환 작용을 4-HC를 처리한 세포에서도 관찰되었다. 그러나, HMGB1은 docetaxel (DOC)에 의한 세포사멸에는 영향을 주지 않음을 확인하였다. MTS를 이용하여 항암제에 의한 세포 죽음에 미치는 영향을 조사한 결과, necrotic core가 형성된 8일째 MCF-7 MTS에서 cisplatin에 의한 세포사멸이 세포괴사로 바뀌는 반면, DOC에 의한 세포사멸은 세포괴사로 전환되지 않는 것을 확인하였다. 또한 spheroid에서 HMGB1 receptor인 RAGE의 발현이 증가함을 확인하였다. 이러한 결과를 통해, HMGB1이 alkylating agent에 의한 세포사멸을 세포괴사로 전환시킴을 알 수 있었다. 따라서, alkylating agent에 의한 항암제 효능을 나타내기 위해선, 이들 항암제의 부작용 즉 세포괴사를 억제하는 전략이 필요한 것으로 생각된다.