• 제목/요약/키워드: Base excision repair

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Identification of New Potential APE1 Inhibitors by Pharmacophore Modeling and Molecular Docking

  • Lee, In Won;Yoon, Jonghwan;Lee, Gunhee;Lee, Minho
    • Genomics & Informatics
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    • 제15권4호
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    • pp.147-155
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    • 2017
  • Apurinic/apyrimidinic endonuclease 1 (APE1) is an enzyme responsible for the initial step in the base excision repair pathway and is known to be a potential drug target for treating cancers, because its expression is associated with resistance to DNA-damaging anticancer agents. Although several inhibitors already have been identified, the identification of novel kinds of potential inhibitors of APE1 could provide a seed for the development of improved anticancer drugs. For this purpose, we first classified known inhibitors of APE1. According to the classification, we constructed two distinct pharmacophore models. We screened more than 3 million lead-like compounds using the pharmacophores. Hits that fulfilled the features of the pharmacophore models were identified. In addition to the pharmacophore screen, we carried out molecular docking to prioritize hits. Based on these processes, we ultimately identified 1,338 potential inhibitors of APE1 with predicted binding affinities to the enzyme.

Enzymatic DNA oxidation: mechanisms and biological significance

  • Xu, Guo-Liang;Walsh, Colum P.
    • BMB Reports
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    • 제47권11호
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    • pp.609-618
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    • 2014
  • DNA methylation at cytosines (5mC) is a major epigenetic modification involved in the regulation of multiple biological processes in mammals. How methylation is reversed was until recently poorly understood. The family of dioxygenases commonly known as Ten-eleven translocation (Tet) proteins are responsible for the oxidation of 5mC into three new forms, 5-hydroxymethylcytosine (5hmC), 5-formylcytosine (5fC) and 5-carboxylcytosine (5caC). Current models link Tet-mediated 5mC oxidation with active DNA demethylation. The higher oxidation products (5fC and 5caC) are recognized and excised by the DNA glycosylase TDG via the base excision repair pathway. Like DNA methyltransferases, Tet enzymes are important for embryonic development. We will examine the mechanism and biological significance of Tet-mediated 5mC oxidation in the context of pronuclear DNA demethylation in mouse early embryos. In contrast to its role in active demethylation in the germ cells and early embryo, a number of lines of evidence suggest that the intragenic 5hmC present in brain may act as a stable mark instead. This short review explores mechanistic aspects of TET oxidation activity, the impact Tet enzymes have on epigenome organization and their contribution to the regulation of early embryonic and neuronal development.

Association of the XRCC1 c.1178G>A Genetic Polymorphism with Lung Cancer Risk in Chinese

  • Wang, Lei;Lin, Yong;Qi, Cong-Cong;Sheng, Bao-Wei;Fu, Tian
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권9호
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    • pp.4095-4099
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    • 2014
  • The X-ray repair cross-complementing group 1 protein (XRCC1) plays important roles in the DNA base excision repair pathway which may influence the development of lung cancer. This study aimed to evaluate the potential association of the XRCC1 c.1178G>A genetic polymorphism with lung cancer risk. The created restriction site-polymerase chain reaction (CRS-PCR) and DNA sequencing methods were utilized to evaluate the XRCC1 c.1178G>A genetic polymorphism among 376 lung cancer patients and 379 controls. Associations between the genetic polymorphism and lung cancer risk were determined with an unconditional logistic regression model. Our data suggested that the distribution of allele and genotype in lung cancer patients was significantly different from that of controls. The XRCC1 c.1178G>A genetic polymorphism was associated with an increased risk of lung cancer (AA vs GG: OR=2.91, 95%CI 1.70-4.98, p<0.001; A vs G: OR=1.52, 95%CI 1.22-1.90, p<0.001). The allele A and genotype AA may contribute to risk of lung cancer. These preliminary results suggested that the XRCC1 c.1178G>A genetic polymorphism is statistically associated with lung cancer risk in the Chinese population.

Association of Two Polymorphisms of DNA Polymerase Beta in Exon-9 and Exon-11 with Ovarian Carcinoma in India

  • Khanra, Kalyani;Panda, Kakali;Bhattacharya, Chandan;Mitra, A.K.;Sarkar, Ranu;Bhattacharyya, Nandan
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권4호
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    • pp.1321-1324
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    • 2012
  • Background: DNA polymerase beta ($pol{\beta}$) is a key enzyme in the base excision repair pathway. It is 39kDa protein, with two subunits, one large subunit of 31 kDa having catalytic activity between exon V to exon XIV, and an 8 kDa smaller subunit having single strand DNA binding activity. Exons V to VII have double strand DNA binding activity, whereas exons VIII to XI account for the nucleotidyl transferase activity and exons XII to XIV the dNTP selection activity. Aim: To examine the association between $pol{\beta}$ polymorphisms and the risk of ovarian cancer, the present case control study was performed using 152 cancer samples and non-metastatic normal samples from the same patients. In this study, mutational analysis of $pol{\beta}$ genomic DNA was undertaken using primers from exons IX to XIV - the portion having catalytic activity. Results: We detected alteration in DNA polymerase beta by SSCP. Two specific heterozygous point mutations of $pol{\beta}$ were identified in Exon 9:486, A->C (polymorphism 1; 11.18%) and in Exon 11:676, A->C (polymorphism 2; 9.86%). The correlation study involving polymorphism 1 and 4 types of tissue showed a significant correlation between mucinous type with a Pearson correlation value of 4.03 (p=0.04). The association among polymorphism 2 with serous type and stage IV together have shown Pearson ${\chi}^2$ value of 3.28 with likelihood ratio of 4.4 (p=0.07) with OR =2.08 (0.3-14.55). This indicates that there is a tendency of correlation among polymorphism 2, serous type and stage IV, indicating a risk factor for ovarian cancer. Conclusion: Hence, the results indicate that there is a tendency for $pol{\beta}$ polymorphisms being a risk factor for ovarian carcinogenesis in India.

NMR study of the interaction of T$_4$ Endonuclease V with DNA

  • 이봉진;유준석;임형미;임후강
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1994년도 춘계학술대회 and 제3회 신약개발 연구발표회
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    • pp.267-267
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    • 1994
  • In order to obtain insight into the mechanism by which DNA containing a thymine photo-dimer is recognized by the excision repair enzyme, T$_4$ endonuclease V, we have taken NMR study of this protein and its complex with oligonucleotides. The conformations of five different DNA duplexes DNA I : d(GCGGATGGCG).d(CGCCTACCGC), DNA II d(GCGGTTGGCG) .d(CGCCAACCGC), DNA III : d(GCGGT ^ TGGCG) .d(CGCCAACCGC), DNA IV d(GCGGGCGGCG).d(CGCCCGCCGC) and DNA V d(GCGGCCGGCG) . d(CGCCGGCCGC) were studied by $^1$H NMR. The NMR spectra of these five DNA duplexes in the absence of the enzyme clearly show that the formation of a thymine dimer within the DNA induces only a minor distortion in the structure, and that the overall structure of B type DNA is retained. The photo-dimer formation is found to cause a large change in chemical shifts at the GC7 base pair, which is located at the 3'-side of the thymine dimer, accompanied by the major conformational change at the thymine dimer site. The binding of a mutant T$_4$ endonuclease V (E23Q), which is unable to digest DNA containing a thymine dimer, to the DNA duplex d(GCGGT ^ TGGCG)ㆍd(CGCCAACCGC) causes a large down-field shift in the imino proton resonance of GC7. Therefore, this position is thought to be either the crucial point of the interaction wi th T$_4$ endonuclease V, or the si to of a conformational change in the DNA caused by the binding of T$_4$ endonuclease V. Usually, it is very difficult to assign NMR peaks in DNA * protein complex because of severe peak overlaps. In order to overcome these peak overlaps, we used a method of deuterium incorporation.

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HeLa Cells Containing a Truncated Form of DNA Polymerase Beta are More Sensitized to Alkylating Agents than to Agents Inducing Oxidative Stress

  • Khanra, Kalyani;Chakraborty, Anindita;Bhattacharyya, Nandan
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권18호
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    • pp.8177-8186
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    • 2016
  • The present study was aimed at determining the effects of alkylating and oxidative stress inducing agents on a newly identified variant of DNA polymerase beta ($pol{\beta}{\Delta}_{208-304}$) specific for ovarian cancer. $Pol{\beta}{\Delta}_{208-304}$ has a deletion of exons 11-13 which lie in the catalytic part of enzyme. We compared the effect of these chemicals on HeLa cells and HeLa cells stably transfected with this variant cloned into in pcDNAI/neo vector by MTT, colony forming and apoptosis assays. $Pol{\beta}{\Delta}_{208-304}$ cells exhibited greater sensitivity to an alkylating agent and less sensitivity towards $H_2O_2$ and UV when compared with HeLa cells alone. It has been shown that cell death in $Pol{\beta}{\Delta}_{208-304}$ transfected HeLa cells is mediated by the caspase 9 cascade. Exon 11 has nucleotidyl selection activity, while exons 12 and 13 have dNTP selection activity. Hence deletion of this part may affect polymerizing activity although single strand binding and double strand binding activity may remain same. The lack of this part may adversely affect catalytic activity of DNA polymerase beta so that the variant may act as a dominant negative mutant. This would represent clinical significance if translated into a clinical setting because resistance to radiation or chemotherapy during the relapse of the disease could be potentially overcome by this approach.

IDENTIFICATION OF GENES EXPRESSED IN LOW-DOSE-RATE γ-IRRADIATED MOUSE WHOLE BRAIN

  • Bong, Jin Jong;Kang, Yu Mi;Choi, Seung Jin;Kim, Dong-Kwon;Lee, Kyung Mi;Kim, Hee Sun
    • Journal of Radiation Protection and Research
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    • 제38권4호
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    • pp.166-171
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    • 2013
  • While high-dose ionizing radiation results in long term cellular cytotoxicity, chronic low-dose (<0.2 Gy) of X- or ${\gamma}$-ray irradiation can be beneficial to living organisms by inducing radiation hormesis, stimulating immune function, and adaptive responses. During chronic low-dose-rate radiation (LDR) exposure, whole body of mice is exposed to radiation, however, it remains unclear if LDR causes changes in gene expression of the whole brain. Therefore, we aim to investigate expressed genes (EGs) and signaling pathways specifically regulated by LDR-irradiation ($^{137}Cs$, a cumulative dose of 1.7 Gy for total 100 days) in the whole brain. Using microarray analysis of whole brain RNA extracts harvested from ICR and AKR/J mice after LDR-irradiation, we discovered that two mice strains displayed distinct gene regulation patterns upon LDR-irradiation. In ICR mice, genes involved in ion transport, transition metal ion transport, and developmental cell growth were turned on while, in AKR/J mice, genes involved in sensory perception, cognition, olfactory transduction, G-protein coupled receptor pathways, inflammatory response, proteolysis, and base excision repair were found to be affected by LDR. We validated LDR-sensitive EGs by qPCR and confirmed specific upregulation of S100a7a, Olfr624, and Gm4868 genes in AKR/J mice whole brain. Therefore, our data provide the first report of genetic changes regulated by LDR in the mouse whole brain, which may affect several aspects of brain function.

대장, 직장암 환자에서 화학방사선치료의 급성 부작용과 XRCC1 유전자 다형성과의 상관관계 (Relationship between XRCC1 Polymorphism and Acute Complication of Chemoradiation Therapy in the Patients with Colorectal Cancer)

  • 김우철;홍윤철;최선근;우제홍;남정현;최광성;이문희;김순기;송순욱;노준규
    • Radiation Oncology Journal
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    • 제24권1호
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    • pp.30-36
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    • 2006
  • 목적: 방사선치료와 항암제치료의 급성부작용은 환자 개인에 따라 차이가 많다는 것은 임상경험을 통하여 널리 알려져 있다. 그러나 아직 이를 미리 예측할 수 있는 인자로 알려진 것은 없다. XRCC1 유전자는 DNA base-excision repair에 관여하는 유전자로 알려져 있다 저자들은 대장 직장암 환자를 대상으로 방사선치료와 항암제치료로 인한 급성부작용과 XRCC1 유전자의 다형성이 관련이 있는지를 알아보고자 본 연구를 수행하게 되었다. 대상 및 방법: 1997년 7월부터 2003년 6월까지 인하대학교병원에서 치료를 받은 대장 직장암 환자 85명을 대상으로 하였다. 대장암이 2명, 5자결장암이 13명, 직장암이 71명이었다 병기는 B기가 22명, C기가 50명, D기가 8명이었고 절제 불가능한 경우가 6명이었다 방사선치료 범위는 골반강만 조사된 경우가 81명, extended field로 조사된 경우가 5명이었고 방사선량은 일일 1.8 Gy로 주 5회 조사하여 총 $30.6 Gy{\sim}59.4 Gy$ (중앙값: 54 Gy)를 조사하였다. 항암제치료는 전 환자에서 5FU를 근간으로 한 약제를 투여받았고 방사선 치료기간 중에 시행된 횟수는 1회가 24명, 2회가 45명이었고 17명은 동시에 투여 받지는 않았다. 치료의 급성부작용은 상부위장관과 하부위장관으로 나누어 기록하였고 증상이 전혀 없는 경우를 0, 증상이 있으나 투약이 필요하지 않은 경우를 1, 투약이 필요한 경우를 2, 투약에도 불구하고 증상이 심하여 치료의 휴식 또는 입원을 한 경우를 3으로 분류하였고 전 치료기간 중 최초, 최저 수치와 방사선치료기간 중 최초, 최저 백혈구, 혈소판 수치를 조사하였다. 환자의 동의 하에 혈액을 채취하여 림프구를 분리한 후 DNA를 추출하여 PCR-RFLP 방법으로 XRCC1 유전자의 코돈 194, 280, 399번 위치의 다형성을 분석하였다. 통계는 Chi-square, t-test, logistic regression, ANOVA를 사용하였다. 결과: 다변량 분석결과 상부위장관 부작용에 영향을 미치는 인자는 재발유무였고, 하부위장관의 부작용에 영향을 미치는 인자는 XRCC1 339 다형성, 방사선량, 방사선 중 항암제횟수 순이었다. 방사선 치료 중 백혈구 감소에 영향을 미치는 인자는 XRCC1 399 다형성, 194 다형성이었고, 혈소판 감소에 영향을 미치는 인자는 진단명, XRCC1 399 다형성이었다. 결론: 대장 직장암 환자에서 방사선치료와 항암제의 치료에 따른 정상조직의 급성부작용을 예측하는데 XRCC1 유전자의 코돈 399번의 다형성이 사용될 가능성이 있을 것으로 생각된다.

Association of Poly (ADP-Ribose) Polymerase 1 Variants with Oral Squamous Cell Carcinoma Susceptibility in a South Indian Population

  • Anil, Sukumaran;Gopikrishnan, PB;Basheer, Ashik Bin;Vidyullatha, BG;Alogaibi, Yahya A;Chalisserry, Elna P;Javed, Fawad;Dalati, MHN;Vellappally, Sajith;Hashem, Mohamed Ibrahim;Divakar, Darshan Devang
    • Asian Pacific Journal of Cancer Prevention
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    • 제17권8호
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    • pp.4107-4111
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    • 2016
  • Background: Oral cancers account for approximately 2% of all cancers diagnosed each year; however, the vast majority (80%) of the affected individuals are smokers whose risk of developing a lesion is five to nine times greater than that of non-smokers. Tobacco smoke contains numerous carcinogens that cause DNA damage, including oxidative lesions that are removed effectively by the base-excision repair (BER) pathway, in which poly (ADP-ribose) polymerase 1 (PARP-1), plays key roles. Genetic variations in the genes encoding DNA repair enzymes may alter their functions. Several studies reported mixed effects on the association between PARP-1 variants and the risk of cancer development. Till now no reported studies have investigated the association between PARP-1 variants and oral squamous cell carcinoma (OSCC) risk in an Indian population. Materials and Methods: In the present case control study 100 OSCC patients and 100 matched controls were genotyped using PARP1 single nucleotide peptides (SNP's) rs1136410 and rs3219090 using TaqMan assays. Results: The results indicated significantly higher risk with PARP1 rs1136410 minor allele "C" (OR=1.909; p=0.02942; CI, 1.060-3.439). SNP rs1136410 also showed significantly increased risk in patients with smoking habit at C/C genotype and at minor allele C. Conclusions: The PAPR-1 Ala762Val polymorphism may play a role in progression of OSCC. Larger studies with a greater number of samples are needed to verify these findings.

Bradykinin으로 자극한 혈관내피세포에서 Ref-1의 세포내 과발현에 의한 NO 생성 증진 효과에 대한 연구 (Adenoviral-Mediated Ref-1 Overexpression Potentiates NO Production in Bradykinin-Stimulated Endothelial Cells)

  • 송주동;김강미;이상권;김종민;박영철
    • 생명과학회지
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    • 제17권7호통권87호
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    • pp.905-909
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    • 2007
  • Redox Factor-1 (Ref-1)은 손상된 DNA의 복구 및 많은 세포내 산화환원에 민감한 transcription factors의 활성화에 기여하는 양면의 역할을 수행하는 단백질이다. 본 연구에서는 혈관내피세포에서의 nitric oxide (NO) 생성과정에서 Ref-1의 역할을 살펴보았다. Ref-1의 세포내 과발현을 위하여 adenoviral vector를 사용하였고 bradykinin으로 자극한 혈관내피세포에서 생성되는 NO 측정을 위하여 fluorophore DAF-2를 사용하였다. Ref-1 과 발현은 bradykinin으로 자극한 혈관내피세포의 NO 생성을 증가시켰다. 또한 자극되지 않은 Ref-1 과발현 세포는 viral vector로 감염되지 않은 그리고 control로 사용한 AdD1312로 감염된 세포보다 높은 fluorescence intensity를 나타내었다. 이와 비슷하게, Ref-1 과발현은 bradykinin으로 자극한 세포뿐만 아니라 자극하지 않은 세포에서도 감염되지 않은 그리고 AdD1312로 감염된 세포와 비교할 때 endothelial NO synthase (eNOS)의 활성을 크게 증가시켰다. 이는Ref-1 자신이 eNOS의 효소활성을 직접 조절할 수 있다는 것을 의미한다. 결론적으로 Ref-1이 혈관계에서 NO생성에 의해 기인되는 endothelium-dependent vasorelaxation에서 중요한 역할을 한다는 것을 시사한다.