• 제목/요약/키워드: human papillomavirus-associated tumor cells

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자궁경부암동물세포에서 표고버섯의 in vitro 및 in vivo 항암효과 -Apoptosis에 의한 종양세포주의 성장억제- (In vitro and in vivo Effects of Extracts of Lentinus edodes on Tumor Growth in a Human Papillomavirus 16 Oncogenes-transformed Animal Tumor Model -Apoptosis-mediated Tumor Cell Growth Inhibition-)

  • 박정민;이성현;김정옥;박홍주;박재복;신정임
    • 한국식품과학회지
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    • 제36권1호
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    • pp.141-146
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    • 2004
  • 여러 발표에서 버섯추출물의 간접적 항종양효과에 대해 보고 되고 있다. 본 연구는 표고버섯의 직접적인 종양세포주 성장억제효과를 탐지하기 위하여 휴먼자궁경부암바이러스 타입 16의 종양유전자가 발현된 동물종양세포주(TC-1)를 이용하였다. 여러 추출용매 중 물을 이용한 추출액에서 TC-1 세포주의 성장억제효과를 탐지할 수 있었다. 이들 세포성장저해는 추출물첨가농도에 상응하며 $IC_{50}$$800\;{\mu}g/mL$로 계산되었다. 또한, 표고버섯 물 추출물은 휴먼자궁경부암세포주(CaSki and HeLa)에서도 유사한 세포성장억제효과를 보여 주었다. 첨가농도가 1.5 mg/mL에서는 첨가후 6시간째에 벌써 완전한 종양세포주(TC-1)의 성장억제가 탐지되었다. 이들 추출물을 열처리시 종양세포주성장억제가 소실되었으나 pH의 변화에서는 그대로 종양세포주성장억제효과가 탐지되었다. 이는 표고버섯 물 추출물 내에 있는 항종양물질이 열에 민감함을 의미한다. Annexin V 및 propidium iodide 염색에 의해 이들 TC-1종양세포주의 성장 억제효과는 apoptosis에 의해 매개됨을 보여 주었다 동물실험에서 표고버섯 물 추출물의 구강투여시 TC-1유래 종양의 성장 및 생성에 아무 효과를 주지 못하였다. 반면, 형성된 종양에 직접 주사시 종양크기의 감소가 탐지되었다. 요약하면 이들 연구에서 표고버섯 물 추출물에 존재하는 항암물질은 열에 민감하며 apoptosis에 의해 휴먼자궁경부암종양유전자에 의해 종양화된 세포주의 세포성장을 직접 억제하는 기능이 있음을 증명한다.

후두편평세포암종에서 Human papillomavirus의 검출과 주조직적합복합체(Major Histocompatibility Complex: MHC) Class I 발현양상 (Detection of Human Papillomavirus and Expression of MHC Class I in Laryngeal Squamous Cell Carcinoma)

  • 오병권;황찬승;홍영호;김훈;김춘길;민헌기
    • 대한기관식도과학회지
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    • 제3권1호
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    • pp.70-78
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    • 1997
  • The development of preneoplastic and neoplastic squamous cell proliferations of body sites such as the skin, female lower genital tract, and larynx is strongly associated with specific types of human papillomaviruses (HPV). Antitumor $CD^{8+}$ cells recognize peptide antigens presented on the surface of tumor cells by major histocompatibility complex (MHC) class I molecules. The MHC class I molecule is a heterodimer composed of an integral membrane glycoprotein designated the alpha chain and a noncovalently associated, soluble protein called beta-2-microglobulin( $\beta$ -2-m). Loss of $\beta$-2-m generally eliminates antigen recognition by antitumor $CD^{8+}$ T cells. We evaluated the expression of $\beta$-2-m as a potential means of tumor escape from immune recognition and the presence of HPV DNA as a cause of laryngeal squamous cell carcinomas (SCCs). Laryngeal SCCs (n=39) were analyzed for MHC class I expression by immunohistochemistry and for presence of HPV by in situ hybridization technique. The results were as follows : 1) HPV DNA was detected in 10 (25.64%) out of 39 cases in laryngeal squamous cell carcinomas. 2) MHC class I down-regulation (heterogenous and negative expression) in HPV positive lesions was higher than HPV negative lesions. 3) The expression of MHC class I was related to cellular differentiation regardless of T-stage and nodal involvement. In conclusion, HPV was thought to be the etiological factor of SCC of larynx, and we found that the down-regulation of MHC class I was a common phenomenon In laryngeal SCC and may provide a way for tumor cells to escape from immune surveillance.

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B Cells Transduced with HPV16 E6/E7-expressing Adenoviral Vector Can Efficiently Induce CTL-dependent Anti-Tumor Immunity

  • Kim, Yun-Sun;Ko, Hyun-Jeong;Kim, Yeon-Jeong;Han, Seung-Hee;Lee, Jung-Mi;Chang, Woo-Sung;Jin, Hyun-Tak;Sung, Young-Chul;Kang, Chang-Yuil
    • IMMUNE NETWORK
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    • 제7권3호
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    • pp.109-116
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    • 2007
  • Background: Human papillomavirus (HPV) infection is responsible for cervical cancer, a common cancer in women. Since HPV infection and cancer development are controlled by the host immune system, immunotherapy against HPV can be helpful in preventing or treating HPV-associated cervical cancer. Two oncoproteins of HPV16, E6 and E7, are promising targets for immunotherapy against cervical cancer, because they are constitutively expressed in cervical cancer. Methods: Since cellular vaccines using B cells as well as dendritic cells offer an efficient approach to cancer immunotherapy, we opted to use B cells. We evaluated the immunogenicity and anti-tumor effects of a B cell vaccine transduced with HPV16 E6/E7-expressing adenovirus. Results: Vaccination with HPV16 E6/E7-transduced B cells induced E6/E7-specific $CD8^+$ T cell-dependent immune responses and generated anti-tumor effects against E6/E7-expressing TC-1 tumor. The anti-tumor effect induced by this B cell vaccine was similar to that elicited by DC vaccine, showing that B cells can be used as an alternative to dendritic cells for cellular vaccines. Conclusion: Thisstudy has shown the feasibility of using B cells as immunogenic APCs and the potential for developing prophylactic and therapeutic vaccines against HPV-associated cervical cancer using a B cell vaccine transduced with adenovirus expressing HPV16 E6/E7.

Molecular Analysis of the Interaction between Human PTPN21 and the Oncoprotein E7 from Human Papillomavirus Genotype 18

  • Lee, Hye Seon;Kim, Min Wook;Jin, Kyeong Sik;Shin, Ho-Chul;Kim, Won Kon;Lee, Sang Chul;Kim, Seung Jun;Lee, Eun-Woo;Ku, Bonsu
    • Molecules and Cells
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    • 제44권1호
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    • pp.26-37
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    • 2021
  • Human papillomaviruses (HPVs) cause cellular hyperproliferation-associated abnormalities including cervical cancer. The HPV genome encodes two major viral oncoproteins, E6 and E7, which recruit various host proteins by direct interaction for proteasomal degradation. Recently, we reported the structure of HPV18 E7 conserved region 3 (CR3) bound to the protein tyrosine phosphatase (PTP) domain of PTPN14, a well-defined tumor suppressor, and found that this intermolecular interaction plays a key role in E7-driven transformation and tumorigenesis. In this study, we carried out a molecular analysis of the interaction between CR3 of HPV18 E7 and the PTP domain of PTPN21, a PTP protein that shares high sequence homology with PTPN14 but is putatively oncogenic rather than tumor-suppressive. Through the combined use of biochemical tools, we verified that HPV18 E7 and PTPN21 form a 2:2 complex, with a dissociation constant of 5 nM and a nearly identical binding manner with the HPV18 E7 and PTPN14 complex. Nevertheless, despite the structural similarities, the biological consequences of the E7 interaction were found to differ between the two PTP proteins. Unlike PTPN14, PTPN21 did not appear to be subjected to proteasomal degradation in HPV18-positive HeLa cervical cancer cells. Moreover, knockdown of PTPN21 led to retardation of the migration/invasion of HeLa cells and HPV18 E7-expressing HaCaT keratinocytes, which reflects its protumor activity. In conclusion, the associations of the viral oncoprotein E7 with PTPN14 and PTPN21 are similar at the molecular level but play different physiological roles.

Effect of STAT3 on Lysophosphatidic Acid-Induced Oral Cancer Cell Invasion

  • Song, Zi Hae;Cho, Kyung Hwa;Kim, Jin Young;Lee, Hoi Young
    • 치위생과학회지
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    • 제19권2호
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    • pp.141-146
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    • 2019
  • Background: Oral cancer has a high incidence worldwide and has been closely associated with smoking, alcohol, and infection by the human papillomavirus. Metastasis is highly important for oral cancer survival. Lysophosphatidic acid (LPA) is a bioactive lipid mediator that promotes various cellular processes, including cell survival, proliferation, metastasis, and invasion. Signal transducer and activator of transcription (STATs) are transcription factors that mediate gene expression. Among the seven types of STATs in mammals, STAT3 is involved in invasion and metastasis of numerous tumors. However, little is known about the role of STAT3 in oral tumor invasion. In the present study, we hypothesized that STAT3 mediates LPA-induced oral cancer invasion. Methods: Immunoblotting was performed to analyze LPA-induced STAT3 activation. 3-(4,5-Dimethyl-2-thiazolyl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) assay was performed to assess the survival rates of YD-10B cells. STAT3 levels in LPA-treated oral tumor cells were evaluated by performing in vitro invasion assay. Results: To the best of our knowledge, this is the first study to demonstrate that LPA enhances STAT3 phosphorylation in oral cancer. In addition, treatment with WP1066, a selective inhibitor of STAT3, at a concentration that does not cause severe reduction in cell viability, significantly attenuated LPA-induced YD-10B cancer cell invasion. Conclusion: The results suggested that LPA induces oral tumor cells with greater invasive potential via STAT3 activation. Our findings provided important insights into the mechanisms underlying mouth neoplasms.

인진에서 분리한 3,5-di-O-Caffeoylquinic acid가 자궁경부암 바이러스 발암단백질의 기능에 미치는 영향 (Effects of 3,5-di-O-Caffeoylquinic acid from Artemisia scoparia Waldstein et Kitamura on the Function of HPV 16 Oncoproteins)

  • 백태웅;이경애;안민정;주혜경;조민철;강정우;김희서;심정현;이희구;오현철;안종석;조용권;명평근;윤도영
    • 생약학회지
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    • 제35권4호통권139호
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    • pp.368-374
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    • 2004
  • Cervical cancer is one of the leading causes of female death. Viral oncoproteins E6 and E7 are selectively retained and expressed in carcinoma cells infected with HPV (Human papillomavirus) type 16. The HPV is cooperated in immotalization and transformation of primary keratinocyte. E6 and E7 oncoproteins interfere the functions of tumor suppressor proteins p53 and retinoblasoma protein (pRb), respectively. Among a lots of natural products, Artemisia scoparia Waldstein et Kitamura has inhibitory effects on the binding between E6 oncoprotein and tumor suppressor p53, or the binding between E6 and E6 associated protein (E6AP), an E3 ubiquitin-protein ligase. HPV oncoprotein inhibitors from Artemisia scoparia W. were isolated by solvent partition and column chromatography (Silica gel, RP-18) and the inhibitory compounds were finally purified by HPLC using an ELISA screening system based on the binding between E6 and E6AP. The aim of this study is to identify the structure of inhibitory compounds and to investigate whether these compounds have inhibitory effects on the functions of E6 oncoprotein. We investigated whether 3,5-di-O-caffeoylquinic acid (DCQA) extracted from Artemisia scoparia W. Could inhibit the function of E6 oncoprutein. DCQA inhibited the in vitro binding of E6 and E6AP which are essential for the binding and degradation of the tumor suppressor p53 and also inhibited the proliferation of human cervical cancer cell lines (SiHa and CaSKi) in a dose response manner. These results suggest that DCQA inhibited the function of E6 oncoprotein, suggesting that it can be used as a potential drug for the treatment of cervical cancers infected with HPV.