• 제목/요약/키워드: Protein p53

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p53에 의한 HIV-1 Tat 활성억제와 ds-RNA-dependent Protein Kinase (PKR) 관련 가능성 연구 (p53-mediated HIV-1 Tat Suppression is Likely to be Associated with duble-stranded RNA-dependent Protein Kinase, PKR)

  • 김정환;변희선;배용수
    • 대한바이러스학회지
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    • 제29권4호
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    • pp.235-245
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    • 1999
  • HIV-1 Tat, a strong transactivator, is essential for the HIV-1 replication and AIDS progression. The Tat function is markedly inhibited by human p53 anti-oncogene. However, the detail mechanism has not yet been clearly revealed. In our previous report, we have addressed that p53 is unlikely to interact directly with HIV-1 Tat. In the consecutive experiments, Tat-phosphorylation was found to increase in proportional to the amounts of transfected p53. This work was initiated to identify the signaling factor that is involved in the p53-mediated Tat suppression. Several protein kinases were tested for the phosphorylation of Tat, and we found that PKR is likely to be involved in the p53-mediated Tat suppression. PKR was co-immunoprecipitated by anti-Tat antibody in the Tat-expressing Jurkat cell lysates only when the cells were transfected by p53, indicating that PKR-Tat interaction depends on the p53 activity. The interaction seems to result in PKR-mediated Tat-phosphorylation. Tat function was not blocked by p53 when co-transfected trasiently with antisense-PKR. We have generated PKR-knock out Jurkat cell clone. The PKR defective Jurkat cells didn't show the p53-mediated Tat suppression. These data indicate that p53-mediated Tat suppression is strongly associated with PKR. PKR-mediated Tat phosphorylation experiments are now under investigation by kinase assay and co-immunoprecipitation in the presence or absence of p53.

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Tissue Microarray Immunohistochemical Profiles of p53 and pRB in Hepatocellular Carcinoma and Hepatoblastoma

  • Azlin, Abdul Hadi;Looi, Lai Meng;Cheah, Phaik Leng
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권9호
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    • pp.3959-3963
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    • 2014
  • The tumour suppressor genes, p53 and pRb, are known to play important roles in neoplastic transformation. While molecular routes to the uncontrolled growth of hepatocytes, leading to primary liver cancer have generated considerable interest, the roles of p53 and pRb mutations in hepatocellular carcinoma (HCC) and hepatoblastoma (HB) remain to be clarified. We examined the immunohistochemical expression of p53 and pRb gene products in 26 HCC and 9 HB, sampled into tissue microarray blocks. 10 (38%) of 26 HCC showed > 10% tumour nuclear staining for p53 protein, 3 of these also being HbsAg positive. Conversely, none of 9 HB expressed nuclear p53 immunopositivity. Some 24 (92%) HCC and 8 (89%) HB showed loss of pRb nuclear expression. Two of the 26 HCC and one of the 9 HB showed >10% tumour nuclear staining for pRb protein. Our results suggest that p53 does not have an important role in the development of HB but may contribute in HCC. There is also loss of pRb expression in the majority of HCC and HB, supporting loss of pRb gene function in the hepatocarcinogenesis pathway. However, a comparison of the staining profiles of p53 and pRb proteins in HCC and HB did not reveal a consistent pattern to differentiate between the two types of tumours immunohistochemically. Hence the use of p53 and pRB protein expression has no contribution in the situation where there is a diagnostic difficulty in deciding between HCC and HB.

Transcriptional Regulation of the Glial Cell-Specific JC Virus by p53

  • Kim, Hee-Sun;Woo, Moom-Sook
    • Archives of Pharmacal Research
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    • 제25권2호
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    • pp.208-213
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    • 2002
  • The human polyomavirus JC virus is the etiologic agent of progressive multifocal leukoencephalopathy (PML). As the JC virus early promoter directs cell-specific expression of the viral replication factor large T antigen, transcriptional regulation constitutes a major mechanism of glial tropism in PML. It has been demonstrated that SV4O or JC virus large T antigen interacts with p53 protein and regulates many viral and cellular genes. In this study we founts that p53 represses the JC virus early promoter in both glial and nonglial cells To identify the cis-regulatory elements responsible for p53-mediated repression, deletional and site-directed mutational analyses were performed . Deletion of the enhancer region diminished p53-mediated transcriptional repression. However, point mutations of several transcription factor binding sites in the basal promoter region did not produce any significant changes. In support of this observation, when the enhancer was fused to a heterologous promoter, p53 red reduced the promoter activity about three fold. These results indicate that the enhancer region is important for tole repression of JC virus transcription by p53. Furthermore, coexpression of JC virus T antigen with a p53 protein abolished p53-mediated repression of the JC virus early promoter in non-glial cells, but not in glial cells. This finding suggests that T antigen interacts with p53 and regulates JC virus transcription in a cell-specific manner.

원발성 폐암환자의 혈청 및 조직에서의 p53단백 표현 (The Significance of p53 Expression in Serum and Tissue from Patients with Lung Cancer)

  • 장중현;성순희
    • Tuberculosis and Respiratory Diseases
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    • 제45권2호
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    • pp.333-340
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    • 1998
  • 연구배경: 폐암은 전세계적으로 암중에서도 높은 발생빈도를 보이는 질환이며 흡연, 공해와 환경오염 등으로 인해 점차 증가하고 있다. 폐암에서는 다양한 유전학적 변화가 나타나는데 그중에서도 특히 p53의 유전자 변이와 그에 따른 p53 본래의 종양억제력의 상실은 종양발생에 관련되는 것으로 밝혀져 있다. P53 변이의 확인은 면역조직염색, PCR 분석법과 ESISA 분석 등으로 조사할 수 있다. 방 법: P53의 혈청학적 측정은 69명의 폐암환자와 대조군으로 42명 비폐암 호흡기질환자에서 조사되었다. 혈청 p53 변이단백은 ELISA 방법으로 측정하였고 조직 면역화학염색은 p53의 단크론항체를 이용하였다. 결 과: 혈청학적 검사에서 비소세포 폐암의 p53 변이단백은 0.28ng/mL, 소세포폐암은 0.20ng/mL, 그리고 대조군은 0.34ng/mL로서 세군간의 유의한 차이는 관찰되지 않았다. 또한 폐암의 임상병기에 따른 p53의 농도에는 어떤 상관성도 발견할 수 없었다. 폐암조직에 대한 p53 면역화학염색상 50%의 양성율을 보였으나 혈청학적 검사와는 어떤 상관성을 볼 수 없었다. 결 론: 결론적으로 본 연구의 변이 p53단백에 대한 혈청학적 검사는 폐암에 대한 진단적 가치는 없는 것으로 생각된다. 또한 원발성 폐암의 p53 변이를 확인하기 위한 조직면역화학염색은 50%에서 양성을 확인하였다.

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Synergistic efficacy of LBH and αB-crystallin through inhibiting transcriptional activities of p53 and p21

  • Deng, Yun;Li, Yongqing;Fan, Xiongwei;Yuan, Wuzhou;Xie, Huaping;Mo, Xiaoyang;Yan, Yan;Zhou, Junmei;Wang, Yuequn;Ye, Xianli;Wan, Yongqi;Wu, Xiushan
    • BMB Reports
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    • 제43권6호
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    • pp.432-437
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    • 2010
  • LBH is a transcription factor as a candidate gene for CHD associated with partial trisomy 2p syndrome. To identify potential LBH-interacting partners, a yeast two-hybrid screen using LBH as a bait was performed with a human heart cDNA library. One of the clones identified encodes ${\alpha}B$-crystallin. Co-immunoprecipitation and GST pull-down assays showed that LBH interacts with ${\alpha}B$-crystallin, which is further confirmed by mammalian two-hybrid assays. Co-localization analysis showed that in COS-7 cells, ${\alpha}B$-crystallin that is cytoplasmic alone, accumulates partialy in the nucleus when co-transfected with LBH. Transient transfection assays indicated that overexpression of LBH or ${\alpha}B$-crystallin reduced the transcriptional activities of p53 and p21, respectively, Overexpression of both ${\alpha}B$-crystallin and LBH together resulted in a stronger repression of the transcriptional activities of p21 and p53. These results showed that the interaction of LBH and ${\alpha}B$-crystallin may inhibit synergistically the transcriptional regulation of p53 and p21.

Ras에 의해 유도된 노화세포에서 핵인 스트레스에 의한 p53 안정화 연구 (The Stability of p53 in Ras-mediated Senescent Cells in Response to Nucleolar Stress)

  • 신충렬;박길홍;이기호;김상훈
    • 생명과학회지
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    • 제19권4호
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    • pp.436-441
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    • 2009
  • B23/nucleophosmin은 핵인 단백질로서 외부 스트레스에 의해 핵인에서 핵으로 이동하게 된다. 이러한 세포 내 위치변화는 MDM2에 의한 p53단백질의 안정화에 영향을 미친다. 노화세포는 거대한 단일 핵인을 가지고 있으며, 외부 스트레스에 의해 p53 안정성이 감소한다. 그렇지만, 노화세포에서 어떠한 기전에 의해 p53의 불안정성이 증가하는 지는 아직 밝혀진 바가 없다. 따라서 본 연구에서는 노화세포에서 B23/nucleophosmin과 p53간의 상호 관련성을 조사하여 p53 안정성에 미치는 영향을 규명하고자 하였다. 본 연구에서는 IMR90세포주에 ras oncogene을 과발현시켜 노화세포를 유도하였다. 핵인 스트레스에 의해 노화세포 내 p53 단백질 발현은 감소하였으나, B23/nucleophosmin 단백질의 발현은 정상세포와 큰 차이가 없었다. 그렇지만, 두 단백질의 세포 내 위치는 노화세포에서 변화가 있었다. 즉, 정상세포와 달리, 노화세포에서는 스트레스에 의해 핵 내 p53발현이 증가하지 않았으며, B23/nucleophosmin은 핵 내로 이동하지 않고, 핵인에 그대로 머물러 있었다. 노화세포에서 MDM2와 p53간 상호결합이 안정적으로 유지된대 비하여, p53과 B23/nucleophosmin간의 상호결합은 감소하였다. 이러한 결과는 노화세포에서 핵인 스트레스에 의한 p53단백질의 안정성은 B23/nucleophosmin 결합이 감소하여 일어나는 것으로 해석된다.

DMBA로 유도된 햄스터 협낭암종에서 p53 유전자 변이와 mdm-2 단백의 발현에 관한 연구 (STUDY ON MUTATION OF P53 AND EXPRESSION OF MDM-2 IN DMBA INDUCED CARCINOMA OF HAMSTER BUCCAL POUCH)

  • 박용선;김경욱;이재훈;김창진
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제27권5호
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    • pp.373-384
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    • 2001
  • Cellular proliferation is an intricately regulated process mediated by the coordinated interactions of critical growth control genes. Two of these factors in mammalian cells are the p53 and mdm-2 genes. A protein product of the mem-2 oncogene has been recently shown to associate with the protein encoded by the tumor suppressor gene p53. The p53 tumor suppressor protein is stabilized in response to DNA damage and other stress signals and causes the cell to undergo growth arrest or apoptosis, thus preventing the establishment of mutations in future cellular generations. Mutation or loss of p53 is a very common event in tumor progression. It occurs in about 50% of all tumors analysed including of colon, lung, breast and liver. The cellular mdm-2 gene, which has potential transforming activity that can be activated by overexpression, is amplified in a significant percentage of human sarcoma and in other mammalian tumors. Proteins encoded by the mdm-2 gene are able to bind to the p53 protein and, when overexpressed, can inhibit p53's transcriptional activation function, thus mdm-2 can act as a negative regulator of p53 function. Experimental study was performed to observe the relationship between p53 gene mutation and mdm-2 protein expression and apply the results to the clinical activity. 36 golden syrian hamster each weighing $60{\sim}80g$ were used and painted with 0.5% DMBA by 3 times weekly on the right buccal cheek(experimental side) for 6, 8, 10, 12, 14 and 16 weeks. Left buccal cheek(control side) was treated with mineral oil as the same manner to the right side. The hamsters were sacrificed on the 6, 8, 10, 12, 14 & 16 weeks. Normal and tumor tissues from paraffin block were examined for histology and immunohistochemistry observation, and were completely dissected by microdissection and DNA from both tissue were isolated by proteins K/phenol/chloroform extraction. Segments of the hamster p53 exons 5, 6, 7 and 8 were amplified by PCR using the oligonucleotide primers, and then confirmational change was observed by SSCP respectively. The results were as follows : 1. Dysplasia at 6 weeks, carcinoma in situ at 8 weeks and invasive carcinoma from 10 weeks could be observed in experimental groups. 2. p53 mutations were detected in 10 of the 36(28%) and the exons 6(6 of the 10 : 60%) was the most hot spot area among the highy conserved region(exons 5, 6, 7 & 8). 3. Immunohistochemical study confirmed 22 of the 36(61%) of p53 expression involving 10 of p53 mutations. 4. mdm-2 expression of was showed in 3 of the 36(8%) involving 1 of the 22 of p53 expression and 2 of the 14 of p53 non-expression. From the above results, mutation of p53 gene or expression of p53 protein may have the influence of the DMBA induced carcinoma of hamster buccal pouch but the expression of mdm-2 protein may not have relationship with tumorigenesis.

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식도암 조직에시 p53 및 nm23 유전자 발현의 임상적 의의 (Clinical Significance of p53 Gene and nm23 Gene Expression in Esophageal Cancer)

  • 박건;이종호;사영조;진웅;권종범;박재길;이선희;곽문섭
    • Journal of Chest Surgery
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    • 제37권3호
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    • pp.261-266
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    • 2004
  • 식도암 환자에서 조기진단 및 수술적 치료 방법의 상당한 진전에도 불구하고 환자의 예후는 여전히 좋지 않다. p53 종양 억제유전자는 세포의 성장과 증식을 조절하는 것으로 알려져 있고 nm23 유전자는 설치류 흑색종에서 종양의 전이억제 효과가 있다고 알려져 있다. 이 실험은 p53과 nm23유전자 발현과 식도암 환자의 임상병리학적인 특징상의 관련성을 알아보고자 하였다. 가톨릭대학교 의과대학 부속 성모병원에서 수술한 식도암 환자 40명의 조직을 대상으로 하였고, p53 변이형 단백질과 nm23단백질을 면역화학적 염색을 시행하여 <10% 양성 종양세포 : negative ; 10∼30% 양성 종양세포: +; 30∼50% 양성 종양세포 : ++; >50% 양성 종양세포: +++의 4개의 군으로 분류하였고, 또한 종양의 침습 정도는 none, mild, moderate, severe로 분류하여 평가하였다. p53 변이형 단백질과 nm23 단백질의 과발현은 생존율 및 임상병리학적 특징과 연관성이 없었고, 또한 p53 및 nm23유전자 발현의 조합 분석에서도 유의한 상관관계를 발견하지 못하였다.

사람의 p53 유전자와 Glutathione S-Transferase와의 융합 단백질의 대장균에서의 발현 (Expression of Human p53 Gene as Glutathione S-transferase Fusion Proteins in Escherichia coli)

  • 오상진
    • 미생물학회지
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    • 제31권4호
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    • pp.279-285
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    • 1993
  • p53 유전자의 변화는 인간의 여러 암에서 가장 흔하게 발견되며 종양세포내에서는 이러한 변형된 p53 단백질의 양의 증가가 초래된다. 세포내에 축적된 p53 단백질의 발견은 인간의 암증세를 판단할 유용한 기중이 되기도 한다. 본 연구에서는 이러한 면역조직화학 검사에 쓰일 수 있는 폴리클로날 항체를 만들기 위햐여 사람의 p53 유전자를 glutathione S-transferase 와의 융합 단백질의 형태로서 대장균내에서 발현시켰다. p53 의 아미노산 1-158번을 코딩하고 있는 NeoI fragment 와 아미노산 159-393 번을 코딩하는 NocI-BamHI fragment 를 BamHI linker 를 이용하여 in frame 으로 pGEX-2T 의 BamHI 자리에 삽입하여 재조합 플라스미드 pGTNS 와 pGTNL 을 각각 만들었다. 또 PCR 에 의한 증폭에 의햐여 아미노산 38-145번을 코딩하는 유전자 부위를 증폭하였으며 BamHI 과 PvuII 로 절단하여 pGEX-2T의 BamHI 과 SmaI 자리에 삽입함으로써 pGTBP 를 제조하였다. 이들 재조합 균주들을 IPTG 로 4시간 induction 한 후 세포 추출물로부터 glutathione Sepharose bead 를 이용하여 융합단백질을 분리하였다. Bead 에 결합된 단백질은 10% SDS-polyacrylamide gel 에서 전기영동하였으며, 각각의 분자량은 54 kDa, 53 kDa 와 40 kDa 였다. 이러한 방법으로 1리터 배양으로부터 약 1mg 의 단백질을 정제하였다.

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DNA Damage-inducible Phosphorylation of p53 at Ser20 is Required for p53 Stabilization

  • Yang, Dong-Hwa;Rhee, Byung-Kirl;Yim, Tae-Hee;Lee, Hye-Jin;Kim, Jungho
    • Animal cells and systems
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    • 제6권3호
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    • pp.263-269
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    • 2002
  • The p53 tumor suppressor gene is among the most frequently mutated and studied genes in human cancer, but the mechanisms by which it sur presses tumor formation remain unclear. DNA damage regulates both the protein levels of p53 and its affinity for specific DNA sequences. Stabilization of p53 in response to DNA damage is caused by its dissociation from Mdm2, a downstream target gene of p53 and a protein that targets p53 for degradation in the proteosome. Recent studies have suggested that phosphorylation of human p53 at Ser20 is important for stabilizing p53 in response to DNA damage through disruption of the interaction between Mdm2 and p53. We generated mice with an allele encoding changes at Ser20, known to be essential for p53 accumulation following DNA damage, to enable analyses of p53 stabilization in vivo. Our data showed that the mutant p53 was clearly defective for full stabilization of p53 in response to DNA damage. We concluded that Ser20 phosphorylation is critical for modulating the negative regulation of p53 by Mdm2, probably through phosphorylation-dependent inhibition of p53-Mdm2 interaction in the physiological context.