• 제목/요약/키워드: Genes, p53

검색결과 335건 처리시간 0.038초

Novel functional roles of caspase-related genes in the regulation of apoptosis and autophagy

  • Shin, Ju-Hyun;Min, Sang-Hyun
    • The Korean Journal of Physiology and Pharmacology
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    • 제20권6호
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    • pp.573-580
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    • 2016
  • Caspases, a family of cysteine proteases, cleave substrates and play significant roles in apoptosis, autophagy, and development. Recently, our group identified 72 genes that interact with Death Caspase-1 (DCP-1) proteins in Drosophila by genetic screening of 15,000 EP lines. However, the cellular functions and molecular mechanisms of the screened genes, such as their involvement in apoptosis and autophagy, are poorly understood in mammalian cells. In order to study the functional characterizations of the genes in human cells, we investigated 16 full-length human genes in mammalian expression vectors and tested their effects on apoptosis and autophagy in human cell lines. Our studies revealed that ALFY, BIRC4, and TAK1 induced autophagy, while SEC61A2, N-PAC, BIRC4, WIPI1, and FALZ increased apoptotic cell death. BIRC4 was involved in both autophagy and apoptosis. Western blot analysis and luciferase reporter activity indicated that ALFY, BIRC4, PDGFA, and TAK1 act in a p53-dependent manner, whereas CPSF1, SEC61A2, N-PAC, and WIPI1 appear to be p53-independent. Overexpression of BIRC4 and TAK1 caused upregulation of p53 and accumulation of its target proteins as well as an increase in p53 mRNA levels, suggesting that these genes are involved in p53 transcription and expression of its target genes followed by p53 protein accumulation. In conclusion, apoptosis and/or autophagy mediated by BIRC4 and TAK1 may be regulated by p53 and caspase activity. These novel findings may provide valuable information that will aid in a better understanding of the roles of caspase-related genes in human cell lines and be useful for the process of drug discovery.

DNA Hypermethylation of Cell Cycle (p15 and p16) and Apoptotic (p14, p53, DAPK and TMS1) Genes in Peripheral Blood of Leukemia Patients

  • Bodoor, Khaldon;Haddad, Yazan;Alkhateeb, Asem;Al-Abbadi, Abdullah;Dowairi, Mohammad;Magableh, Ahmad;Bsoul, Nazzal;Ghabkari, Abdulhameed
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권1호
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    • pp.75-84
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    • 2014
  • Aberrant DNA methylation of tumor suppressor genes has been reported in all major types of leukemia with potential involvement in the inactivation of regulatory cell cycle and apoptosis genes. However, most of the previous reports did not show the extent of concurrent methylation of multiple genes in the four leukemia types. Here, we analyzed six key genes (p14, p15, p16, p53, DAPK and TMS1) for DNA methylation using methylation specific PCR to analyze peripheral blood of 78 leukemia patients (24 CML, 25 CLL, 12 AML, and 17 ALL) and 24 healthy volunteers. In CML, methylation was detected for p15 (11%), p16 (9%), p53 (23%) and DAPK (23%), in CLL, p14 (25%), p15 (19%), p16 (12%), p53 (17%) and DAPK (36%), in AML, p14 (8%), p15 (45%), p53 (9%) and DAPK (17%) and in ALL, p15 (14%), p16 (8%), and p53 (8%). This study highlighted an essential role of DAPK methylation in chronic leukemia in contrast to p15 methylation in the acute cases, whereas TMS1 hypermethylation was absent in all cases. Furthermore, hypermethylation of multiple genes per patient was observed, with obvious selectiveness in the 9p21 chromosomal region genes (p14, p15 and p16). Interestingly, methylation of p15 increased the risk of methylation in p53, and vice versa, by five folds (p=0.03) indicating possible synergistic epigenetic disruption of different phases of the cell cycle or between the cell cycle and apoptosis. The investigation of multiple relationships between methylated genes might shed light on tumor specific inactivation of the cell cycle and apoptotic pathways.

Membrane Microarray를 이용한 Resveratrol에 의해 차별적으로 발현되는 유전자 군의 분석 (Analysis of Differentially Expressed Genes by Resveratrol Using Membrane Microarray)

  • 김종식;장민정;김효은;김순영;김병오;손호용
    • 생명과학회지
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    • 제17권8호통권88호
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    • pp.1115-1120
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    • 2007
  • 본 연구에서는 다섯 종류의 phytochemical (resveratrol, genistein, epicatechin gallate, diaIly disulfide, caffeic acid phenetyl ester)과 sulindac sulfide가 암 억제 단백질 p53을 유도할 수 있는지에 대해 연구하였다. 처리한 모든 phytochemical에 의해 p53 단백질의 발현이 강하게 유도된 반면, sulindac sulfide에 의해서는 p53 단백질이 유도되지 않았다. 처리한 phytochemical 중 포도껍질이나 와인에 많이 들어있는 resveratrol에 의해 p53 단백질이 농도의존적 혹은 처리시간 의존적으로 증가 발현되는 것을 확인하였다. 암 억제 단백질인 p53 하위 단계의 유전자들만 집적되어 있는 membrane microarray를 이용하여 실험을 수행한 결과, 25개의 유전자가 up-regulation 된 반면, 2개의 유전자가 down-regulation 되는 것을 확인하였다. Up-regulation 되는 유전자중 4개를 선택하여, RT-PCR을 수행한 결과 모두 membrane microarray 실험의 결과와 일치하였다. 게다가 p53 null인 HCT116 세포주를 이용한 RT-PCR을 통하여 TSP-1 유전자의 발현은 p53 의존적이지 않은 반면, MASPIN 유전자는 p53 의존적임을 확인하였다. 이러한 연구 결과는 resveratrol에 의한 화학적 암 예방법의 분자생물학적 기전을 이해하는데 도움을 줄 것으로 기대된다.

Lack of Mutation in p53 and H-ras Genes in Phenytoin Induced Gingival Overgrowth Suggests its Non Cancerous Nature

  • Jayaraman, Bhaskar;Valiathan, Gopalakrishnan Mohan;Jayakumar, Keerthivasan;Palaniyandi, Arunmozhi;Thenumgal, Siji Jacob;Ramanathan, Arvind
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권11호
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    • pp.5535-5538
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    • 2012
  • Background: There have been case reports of oral squamous cell carcinoma arising from gingival overgrowth induced by phenytoin - an antiepileptic drug. However, a detailed analysis for the presence of mutations in p53 and ras genes, which are the two most frequently mutated genes in cancers, in phenytoin induced gingival overgrowth tissues has hitherto not been performed. Methods: Cellular DNA isolated from twenty gingival overgrowth tissues collected from patients undergoing phenytoin therapy were amplified using primers for p53 (exons 5-8) and H-ras (exons 1-2) genes. The PCR amplicons were then gel purified and subjected to direct sequencing analysis to screen for mutations. Results: Direct sequencing of twenty samples of phenytoin induced gingival growth did not identify mutations in any of the exons of p53 and H-ras genes that were analyzed. Conclusion: Our result indicates that mutational alteration of p53 and H-ras genes is infrequent in phenytoin induced gingival growth, which thus suggests a non malignant nature of this pathology. The findings in the present study are clinically significant as a large number of epileptic patients are treated with phenytoin.

감마선 조사에 의한 뇌조직의 Jun 및 p53유전자 발현 (Expression of Jun and p53 Genes from the Brain of Rats Irradiated with $^{60}Co{\gamma}$-ray)

  • 김용석;우종규;이용성;고재경;전하정;이명자
    • Radiation Oncology Journal
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    • 제14권4호
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    • pp.265-279
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    • 1996
  • 방사선은 DNA손상을 초래하고 세포 성장에 관련된 유전자의 발현 조절 및 apoptosis등을 유발한다고 알려져 있으며 본 연구는 신경계에 있어 방사선 조사 후 종양 발생율과 시간 경과의 관계 및 조사 양과 암 발생의 관계를 구명하기 위해 코발트 60의 전신조사에 따른 흰쥐 뇌 조직의 생체 반응을 연구하고자 하였다. 이를 위하여 상기조직의 jun 및 p53 유전자의 발현도를 1 Gy로 부터 100 Gy 범위의 감마선 용량별 및 1시간에서 6시간까지의 조사 훈 경과 시간 별로 Northern 분석하였다. Jun유전자 발현도는 ley이하에서 1시간 이내에 한계수준에 도달하였으며 30 Gy의 조사 1시간 째에 최대였다. 또한 조사 1시간 이후 1 Gy로부터 10 Gy 범위에서는 조사 5시간 및 6시간까지 점진적으로 증가되었으나 20 Gy로부터 100 Gy 범위에서는 조사 2시간까지 증가 후 감소되는 양상을 나타냈다. p53유전자의 발현도는 1 Gy이하에서 1시간 이내에 한계 수준에 근접했고 1 Gy의 조사 후 6시간 째에 최대였다. 1 Gy로부터 40 Gy까지의 범위에서는 조사 5시간 및 6시간까지 점진적으로 증가되는 반면 50 Gy에서 100 Gy범위에서는 조사 2시간 째까지 증가 후 감소되는 양상을 보였다. 따라서 감마선 조사양이 높을수록 jun 및 p53유전자는 신속하게 최대로 발현되었고 감마선 조사양이 낮을수록 서서히 증가되었다 그러나 jun유전자와 p53유전자의 감마선 조사에 따른 발현 양상에는 상호간의 연관성을 찾을 수 없었다.

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Prevention of UV-induced Skin Damage by Activation of Tumor Suppressor Genes p53 and $p14^{ARF}$

  • Petersen, R.;John, S.;Lueder, M.;Borchert, S.
    • 대한화장품학회:학술대회논문집
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    • 대한화장품학회 2003년도 IFSCC Conference Proceeding Book I
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    • pp.338-351
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    • 2003
  • UV radiation is the most dangerous stress factor among permanent environmental impacts on human skin. Consequences of UV exposure are aberrant tissue architecture, alterations in skin cells including functional changes. Nowadays new kinds of outdoor leisure-time activities and changing environmental conditions make the question of sun protection more important than ever. It is necessary to recognize that self-confident consumers do not consider to change their way of life, they demand modern solutions on the basis of new scientific developments. In the past one fundamental principle of cosmetics was the use of physical and organic filter systems against damaging UV-rays. Today new research results demonstrate that natural protecting cell mechanisms can be activated. Suitable biological actives strongly support the protection function not from the surface but from the inside of the cell. A soy seed preparation (SSP) was proven to stimulate natural skin protective functions. The major functions are an increased energy level and the prevention of DNA damage. These functions can I be defined as biological UV protection. The tumor suppressor protein p53 plays a key role in the regulation of DNA repair. p53 must be transferred into the phosphorylated form to work as transcription factor for genes which are regulating the cell cycle or organizing DNA repair. A pretreatment with SSP increases the phosphorylation rate of p53 of chronically UV-irradiated human keratinocytes significantly. According to the same test procedure SSP induces a dramatic increase in the expression of the tumor suppressor protein p14$^{ARF}$ that is supporting the p53 activity by blocking the antagonist of p53, the oncoprotein Mdm2. Mdm2, a ubiquitin E3-ligase, downregulates p53 and at the same time it prevents phosphorylation of p53. The positive influence of the tumor suppressor proteins explains the stimulation of DNA repair and prevention of sunburn cell formation by SSP, which was proven in cell culture experiments. In vivo the increased skin tolerance against UV irradiation by SSP could be confirmed too. We have assumed, that an increased repair potential provides full cell functionality.y.

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원발성 폐암에서 종양억제유전자 RB와 p53 단백질 발현양상과 예후와의 상관관계 (Expression Pattern of RB and p53 Proteins and its Correlation with Prognosis in Primary Lung Cancer)

  • 이상용;허혜경;최필조;우종수;홍숙희
    • Journal of Chest Surgery
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    • 제29권11호
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    • pp.1223-1231
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    • 1996
  • 72예의 원발성 폐암조직에서 두 종양억제유전자 RB와 p53의 단백질 발현 빈도를 면역조직화학적 방법으로 검출한 결과 RB 단백질 발현은 38예 (52.8%)에서 감소하거나 소실되었고, 변이형 p53 단백질은 35예(48.6%)에서 발현을 보였다. 이들의 발현 빈도는 폐암의 조직형에 따라 유의한 차이를 보여 RB는 선암에서 그리고 p53은 편평세포암에서 발현율이 높았다(p<0.05). 그러나 임상 병기와는 두 단백질의 발현율과는 상관이 없었다. 폐암 환자의 2년 생존율은 두 단백질 발현의 변화가 동반된 군(RB-/p53+)에서 22.4%, 두 단백질 발현의 변화가 전혀 없는 군(RB+/p53-)에서 63.1%로 두 군 사이에 통계적으로 유의한 차이를 보였다(p<0.05).본 연구에서 RB와 p53단백질의 발현의 유무가 원발성 폐암 환자의 생존율과 관련이 있음을 나타내었고, 특히 RB가 원발성 폐암의 예후에 가장 큰 영향을 미치는 인자임을 나타내었다.

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Transcriptional Alteration of p53 Related Processes As a Key Factor for Skeletal Muscle Characteristics in Sus scrofa

  • Kim, Seung-Soo;Kim, Jung-Rok;Moon, Jin-Kyoo;Choi, Bong-Hwan;Kim, Tae-Hun;Kim, Kwan-Suk;Kim, Jong-Joo;Lee, Cheol-Koo
    • Molecules and Cells
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    • 제28권6호
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    • pp.565-573
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    • 2009
  • The pig could be a useful model to characterize molecular aspects determining several delicate phenotypes because they have been bred for those characteristics. The Korean native pig (KNP) is a regional breed in Korea that was characterized by relatively high intramuscular fat content and reddish meat color compared to other western breeds such as Yorkshire (YS). YS grew faster and contained more lean muscle than KNP. We compared the KNP to Yorksire to find molecular clues determining muscle characteristics. The comparison of skeletal gene expression profiles between these two breeds showed molecular differences in muscle. We found 82 differentially expressed genes (DEGs) defined by fold change (more than 1.5 fold difference) and statistical significance (within 5% of false discovery rate). Functional analyses of these DEGs indicated up-regulation of most genes involved in cell cycle arrest, down-regulation of most genes involved in cellular differentiation and its inhibition, down-regulation of most genes encoding component of muscular-structural system, and up-regulation of most genes involved in diverse metabolism in KNP. Especially, DEGs in above-mentioned categories included a large number of genes encoding proteins directly or indirectly involved in p53 pathway. Our results indicated a possible role of p53 to determine muscle characteristics between these two breeds.

인간 대장암 세포주에서 capsaicin 처리에 의한 차별적인 유전자 발현의 p53 의존성 분석 (Analysis of p53-Dependency of Differentially Expressed Genes by Capsaicin in Human Colorectal Cancer Cell)

  • 김효은;장민정;임승현;김효림;김순영;이건주;김종식
    • 생명과학회지
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    • 제20권2호
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    • pp.213-218
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    • 2010
  • 본 연구에서는 대장암 세포주 모델에서 파이토케미칼 capsaicin에 의한 항 생장 활성과 유전체 수준에서의 유전자 발현 변화를 연구하였다. 그 결과, 처리한 capsaicin 농도 의존적으로 세포 생존율이 감소함을 확인하였고, capsaicin은 다양한 유전자의 발현 변화를 유도하였다. DNA microarray 실험결과 $100\;{\mu}M$ capsaicin의 처리에 의해 2배 이상 증가되는 유전자 103개가 확인된 반면, 2배 이상 발현이 감소되는 유전자 153개가 확인되었다. 발현이 증가되는 유전자 중 4개(NAG-1, DDIT3, GADD45A 그리고 PCK2)를 선택하여 RT-PCR을 수행한 결과, DNA micorarray 실험과 일치함을 확인하였다. 또한 $100\;{\mu}M$ capsaicin의 처리에 의해 암 억제유전자인 p53의 발현이 증가됨을 RT-PCR과 real-time PCR 방법으로 확인하였다. 게다가, NAG-1, DDIT3 그리고 GADD45A 유전자는 p53의 존재에 관계없이 발현이 증가되는 반면, PCK2 유전자는 반드시 p53에 의해 발현이 유도됨을 확인할 수 있었다. 이러한 연구는 대장암 세포주에서 capsaicin에 의한 항암 기전을 이해하는데 도움을 줄 것으로 기대된다.

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.