• 제목/요약/키워드: Genomic stability

검색결과 60건 처리시간 0.027초

SET7-mediated TIP60 methylation is essential for DNA double-strand break repair

  • Song Hyun, Kim;Junyoung, Park;Jin Woo, Park;Ja Young, Hahm;Seobin, Yoon;In Jun, Hwang;Keun Pil, Kim;Sang-Beom, Seo
    • BMB Reports
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    • 제55권11호
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    • pp.541-546
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    • 2022
  • The repair of DNA double-strand breaks (DSBs) by homologous recombination (HR) is crucial for maintaining genomic integrity and is involved in numerous fundamental biological processes. Post-translational modifications by proteins play an important role in regulating DNA repair. Here, we report that the methyltransferase SET7 regulates HR-mediated DSB repair by methylating TIP60, a histone acetyltransferase and tumor suppressor involved in gene expression and protein stability. We show that SET7 targets TIP60 for methylation at K137, which facilitates DSB repair by promoting HR and determines cell viability against DNA damage. Interestingly, TIP60 demethylation is catalyzed by LSD1, which affects HR efficiency. Taken together, our findings reveal the importance of TIP60 methylation status by SET7 and LSD1 in the DSB repair pathway.

Modulation of DNA methylation by one-carbon metabolism: a milestone for healthy aging

  • Sang-Woon Choi ;Simonetta Friso
    • Nutrition Research and Practice
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    • 제17권4호
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    • pp.597-615
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    • 2023
  • Healthy aging can be defined as an extended lifespan and health span. Nutrition has been regarded as an important factor in healthy aging, because nutrients, bioactive food components, and diets have demonstrated beneficial effects on aging hallmarks such as oxidative stress, mitochondrial function, apoptosis and autophagy, genomic stability, and immune function. Nutrition also plays a role in epigenetic regulation of gene expression, and DNA methylation is the most extensively investigated epigenetic phenomenon in aging. Interestingly, age-associated DNA methylation can be modulated by one-carbon metabolism or inhibition of DNA methyltransferases. One-carbon metabolism ultimately controls the balance between the universal methyl donor S-adenosylmethionine and the methyltransferase inhibitor S-adenosylhomocysteine. Water-soluble B-vitamins such as folate, vitamin B6, and vitamin B12 serve as coenzymes for multiple steps in one-carbon metabolism, whereas methionine, choline, betaine, and serine act as methyl donors. Thus, these one-carbon nutrients can modify age-associated DNA methylation and subsequently alter the age-associated physiologic and pathologic processes. We cannot elude aging per se but we may at least change age-associated DNA methylation, which could mitigate age-associated diseases and disorders.

Analysis of nucleotide sequence of a novel plasmid, pILR091, from Lactobacillus reuteri L09 isolated from pig

  • Lee, Deog-Yong;Kang, Sang-Gyun;Rayamajhi, Nabin;Kang, Milan;Yoo, Han Sang
    • 대한수의학회지
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    • 제48권4호
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    • pp.441-449
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    • 2008
  • The genus Lactobacillus is the largest of the genera included in lactic acid bacteria and is associated with mucosal membranes of human and animal. Only a few Lactobacillus plasmid-encoded functions have been discovered and used. In this study, a novel plasmid (pILR091) was isolated from a wild L. reuteri isolated from pig and described the characteristics of its replicons, genetic organization, and relationship with other plasmids. After digestion of the plasmid, pILR091, with SalI, plasmid DNA was cloned into the pQE-30Xa vector and sequenced. The complete sequence was confirmed by the sequencing of PCR products and analyzed with the Genbank database. The isolate copy number and stability were determined by quantitative-PCR. The complete sequence of L. reuteri contained 7,185 nucleotides with 39% G-C content and one cut site by two enzymes, SalI and HindIII. The similar ori sequence of the pC194- rolling circle replication family (TTTATATTGAT) was located 63 bp upstream of the protein replication sequence, ORF 1. Total of five ORFs was identified and the coding sequence represented 4,966 nucleotides (70.4%). ORF1 of pILR091 had a low similarity with the sequence of pTE44. Other ORFs also showed low homology and E-values. The average G-C content of pILR091 was 39%, similar with that of genomic DNA. The copy number of pILR091 was determined at approximately 24 to 25 molecules per genomic DNA. These results suggested that pILR091 might be a good candidate to construct a new vector, which could be used for cloning and expression of foreign genes in lactobacilli.

TMV 저항성 형질전환 연초식물체 제 5 세대에서 유전자 안정성 및 고온조건에서의 유전자 발현 (Gene Expression in The Fifth Generation of TMV Resistant Transgenic Tobacco Plane at Elevated Temperature)

  • 이기원;박성원;이청호;박은경;김상석;최순용
    • 식물조직배양학회지
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    • 제25권4호
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    • pp.245-250
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    • 1998
  • Tobacco mosaic virus(TMV) 외피단백질 유전자를 연초(Nicotiana tabacm cv. NC82)에 형질전환하고 형질전환 식물체 후세대에서 TMV 저항성인 연초를 선발하여, 선발된 TMV 저항성 제5세대 형질전환 식물체의 도입된 유전자발현 및 고온에서의 특성 등을 조사하였다. TMV 저항성 식물체의 염색체 DNA에 TMV 외피 단백질 유전자가 안정되게 존재하고 있음을 genomic PCR을 수행하여 확인하였다. 또한 형질전환 식물체내에서 TMV 외피 단백질 발현은 Immunoblot hybridization 방법으로 확인하였다. TMV 저항성 형질전환 연초식물체에서 발현된 단백질의 양은 매우 적었으며 특히 본엽에는 병징이 나타나지 않았으나 수확기 마지막 액아에 TMV의 반점이 나타난 병징발현 지연형의 형질전환 식물체의 경우에도 발현된 단백질의 양은 정상 NC 82에 TMV가 감염되었을 때와 비교하여 현저히 적었다. TMV 저항성 형질전환 식물체 내에서 발현되는 TMV 외피단백질의 양은 총 단백질에 대비하여 0.01% 이하이였다. TMV 병징 발현 지연형인 형질전환 식물체에 TMV를 인공접종한 후 고온처리상태에서 외피 단백질 유전자의 전사 및 발현을 RT-PCR과 Immune blot hybridization 통하여 확인하였으며, 이때 TMV의 증식도 억제되었으므로 개량멀칭시 나타나는 고온조건하에서도 저항성이 안정적으로 발현될 수 있음을 알 수 있었다.

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Cloning, Expression, and Characterization of Protease-resistant Xylanase from Streptomyces fradiae var. k11

  • Li, Ning;Yang, Peilong;Wang, Yaru;Luo, Huiying;Meng, Kun;Wu, Nigfeng;Fan, Yunliu;Yao, Bin
    • Journal of Microbiology and Biotechnology
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    • 제18권3호
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    • pp.410-416
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    • 2008
  • The gene SfXyn10, which encodes a protease-resistant xylanase, was isolated using colony PCR screening from a genomic library of a feather-degrading bacterial strain Streptomyces fradiae var. k11. The full-length gene consists of 1,437bp and encodes 479 amino acids, which includes 41 residues of a putative signal peptide at its N terminus. The amino acid sequence shares the highest similarity (80%) to the endo-1,4-${\beta}$-xylanase from Streptomyces coelicolor A3, which belongs to the glycoside hydrolase family 10. The gene fragment encoding the mature xylanase was expressed in Escherichia coli BL21 (DE3). The recombinant protein was purified to homogeneity by acetone precipitation and anion-exchange chromatography, and subsequently characterized. The optimal pH and temperature for the purified recombinant enzyme were 7.8 and $60^{\circ}C$, respectively. The enzyme showed stability over a pH range of 4.0-10.0. The kinetic values on oat spelt xylan and birchwood xylan substrates were also determined. The enzyme activity was enhanced by $Fe^{2+}$ and strongly inhibited by $Hg^{2+}$ and SDS. The enzyme also showed resistance to neutral and alkaline proteases. Therefore, these characteristics suggest that SfXyn10 could be an important candidate for protease-resistant mechanistic research and has potential applications in the food industry, cotton scouring, and improving animal nutrition.

TP53 Codon 72 Polymorphism and Risk of Acute Leukemia

  • Dunna, Nageswara Rao;Vure, Sugunakar;Sailaja, K.;Surekha, D.;Raghunadharao, D.;Rajappa, Senthil;Vishnupriya, S.
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권1호
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    • pp.347-350
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    • 2012
  • TP53 is the mostly commonly mutated gene in many cancers and the P53 tumor suppressor protein is involved in multiple cellular processes, including transcription, DNA repair, genomic stability, senescence, cell cycle control and apoptosis. A common single nucleotide polymorphism located within the proline rich region of TP53 gene at codon 72 in exon 4 encodes either proline or arginine. TP53 Arg 72 is more active than TP53 Pro 72 in inducing apoptosis. The aim of this study was to understand the association of the 72 codon polymorphism with acute leukemia development and prognosis. A total of 288 acute leukemia cases comprising 147 acute lymphocytic leukemia (ALL) and 141 acute myeloid leukemia (AML), as well as 245 controls were recruited for analysis of the TP53 72 polymorphism using PCR-RFLP method. Significant association of homozygous arginine genotype with AML was observed (${\chi}^2$- 133.53; df-2, p < 0.001. When data were analyzed with respect to clinical variables, elevation in mean WBC, blast %, LDH levels and slight reduction in DFS in ALL cases with the arginine genotype was observed. In contrast, AML patients with Pro/Pro had elevated WBC, Blast%, LDH levels with slightly reduced DFS. Our study indicates that Arg/Arg genotype might confer increased risk to development of acute myeloid leukemia.

Sirt1 Promotes DNA Damage Repair and Cellular Survival

  • Song, Seung-Hyun;Lee, Mi-Ok;Lee, Ji-Seon;Oh, Je-Sok;Cho, Sung-Uk;Cha, Hyuk-Jin
    • Biomolecules & Therapeutics
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    • 제19권3호
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    • pp.282-287
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    • 2011
  • Sirt1, a nicotinamide adenine dinucleotide ($NAD^+$)-dependent histone deacetylase, is known to deacetylate a number of proteins that are involved in various cellular pathways such as the stress response, apoptosis and cell growth. Modulation of the stress response by Sirtuin 1 (Sirt1) is achieved by the deacetylation of key proteins in a cellular pathway, and leads to a delay in the onset of cancer or aging. In particular, Sirt1 is known to play an important role in maintaining genomic stability, which may be strongly associated with a protective effect during tumorigenesis and during the onset of aging. In these studies, Sirt1 was generated in stably expressing cells and during the stimulation of DNA damage to examine whether it promotes survival. Sirt1 expressing cells facilitated the repair of DNA damage induced by either ionizing radiation (IR) or bleomycin (BLM) treatment. Fastened damaged DNA repair in Sirt1 expressing cells corresponded to prompt activation of Chk2 and ${\gamma}$-H2AX foci formation and promoted survival. Inhibition of Sirt1 enzymatic activity by a chemical inhibitor, nicotinamide (NIC), delayed DNA damage repair, indicating that promoted DNA damage repair by Sirt1 functions to induce survival when DNA damage occurs.

A Novel pH-Stable, Bifunctional Xylanase Isolated from a Deep-Sea Microorganism, Demequina sp. JK4

  • Meng, Xin;Shao, Zongze;Hong, Yuzhi;Lin, Ling;Li, Chanjuan;Liu, Ziduo
    • Journal of Microbiology and Biotechnology
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    • 제19권10호
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    • pp.1077-1084
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    • 2009
  • A genomic library was constructed to clone a xylanase gene (Mxyn10) from Demequina sp. JK4 isolated from a deep sea. Mxyn10 encoded a 471 residue protein with a calculated molecular mass of 49 kDa. This protein showed the highest sequence identity (70%) with the xylanase from Streptomyces lividans. Mxyn10 contains a catalytic domain that belongs to the glycoside hydrolase family 10 (GH10) and a carbohydrate-binding module (CBM) belonging to family 2. The optimum pH and temperature for enzymatic activity were pH 5.5 and $55^{\circ}C$, respectively. Mxyn10 exhibited good pH stability, remaining stable after treatment with buffers ranging from pH 3.5 to 10.0. The protein was not significantly affected by a variety of chemical reagents, including some compounds that usually inhibit the activity of other related enzymes. In addition, Mxyn10 showed activity on cellulose. These properties mark Mxyn10 as a potential enzyme for industrial application and saccharification processes essential for bioethanol production.

Screening and Characterization of a Novel Cellulase Gene from the Gut Microflora of Hermetia illucens Using Metagenomic Library

  • Lee, Chang-Muk;Lee, Young-Seok;Seo, So-Hyeon;Yoon, Sang-Hong;Kim, Soo-Jin;Hahn, Bum-Soo;Sim, Joon-Soo;Koo, Bon-Sung
    • Journal of Microbiology and Biotechnology
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    • 제24권9호
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    • pp.1196-1206
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    • 2014
  • A metagenomic fosmid library was constructed using genomic DNA isolated from the gut microflora of Hermetia illucens, a black soldier fly. A cellulase-positive clone, with the CS10 gene, was identified by extensive Congo-red overlay screenings for cellulase activity from the fosmid library of 92,000 clones. The CS10 gene was composed of a 996 bp DNA sequence encoding the mature protein of 331 amino acids. The deduced amino acids of CS10 showed 72% sequence identity with the glycosyl hydrolase family 5 gene of Dysgonomonas mossii, displaying no significant sequence homology to already known cellulases. The purified CS10 protein presented a single band of cellulase activity with a molecular mass of approximately 40 kDa on the SDS-PAGE gel and zymogram. The purified CS10 protein exhibited optimal activity at $50^{\circ}C$ and pH 7.0, and the thermostability and pH stability of CS10 were preserved at the ranges of $20{\sim}50^{\circ}C$ and pH 4.0~10.0. CS10 exhibited little loss of cellulase activity against various chemical reagents such as 10% polar organic solvents, 1% non-ionic detergents, and 0.5 M denaturing agents. Moreover, the substrate specificity and the product patterns by thin-layer chromatography suggested that CS10 is an endo-${\beta}$-1,4-glucanase. From these biochemical properties of CS10, it is expected that the enzyme has the potential for application in industrial processes.

XRCC3 Thr241Met Gene Polymorphism and Risk of Colorectal Cancer in Kashmir: a Case Control Study

  • Nissar, Saniya;Sameer, Aga Syed;Lone, Tufail A.;Chowdri, Nissar A.;Rasool, Roohi
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권22호
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    • pp.9621-9625
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    • 2014
  • XRCC (X-ray cross-complementing group) genes contribute to important DNA repair mechanisms that play roles in the repair of single strand breaks (SSBs) induced by a variety of external and internal factors, including ionizing radiation, alkylating agents and reactive oxygen species. These repair genes have a pivotal role in maintaining genomic stability through different pathways of base excision repair (BER). The aim of this study was to investigate the XRCC3 Thr241Met gene polymorphism in colorectal cancer (CRC) in Kashmir. We investigated the genotype distribution of XRCC3 gene in 120 CRC cases in comparison with 150 healthy subjects and found a significant association between XRCC3 genotypes and CRC ($p{\leq}0.05$). Both heterozygous genotype (Thr/Met) as well as homozygous variant genotype (Met/Met) were moderately associated with elevated risk of CRC [OR=2.53; OR=2.29 respectively]. Also, Thr/Met and Met/Met genotypes demonstrated a significant association with the risk of CRC (p = 0.003). This study displayed a significantly elevated risk for CRC in individuals with XRCC3 Thr/Met and Met/Met Genotype of about 2.5 times that with the Thr/Thr wild genotype.