Suchergebnisse - "Livneh, Zvi"

  1. 1

    Multiple two-polymerase mechanisms in mammalian translesion DNA synthesis von Livneh, Zvi, Z, Omer, Shachar, Sigal

    ISSN: 1538-4101, 1551-4005, 1551-4005
    Veröffentlicht: United States Taylor & Francis 15.02.2010
    Veröffentlicht in Cell cycle (Georgetown, Tex.) (15.02.2010)
    “… The encounter of replication forks with DNA lesions may lead to fork arrest and/or the formation of single-stranded gaps. A major strategy to cope with these …”
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  2. 2

    Recurrent deletions in clonal hematopoiesis are driven by microhomology-mediated end joining von Feldman, Tzah, Bercovich, Akhiad, Moskovitz, Yoni, Chapal-Ilani, Noa, Mitchell, Amanda, Medeiros, Jessie J. F., Biezuner, Tamir, Kaushansky, Nathali, Minden, Mark D., Gupta, Vikas, Milyavsky, Michael, Livneh, Zvi, Tanay, Amos, Shlush, Liran I.

    ISSN: 2041-1723, 2041-1723
    Veröffentlicht: London Nature Publishing Group UK 28.04.2021
    Veröffentlicht in Nature communications (28.04.2021)
    “… The mutational mechanisms underlying recurrent deletions in clonal hematopoiesis are not entirely clear. In the current study we inspect the genomic regions …”
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  3. 3

    Keeping Mammalian Mutation Load in Check: Regulation of the Activity of Error-Prone DNA Polymerases by p53 and p21 von Livneh, Zvi

    ISSN: 1538-4101, 1551-4005, 1551-4005
    Veröffentlicht: United States Taylor & Francis 01.09.2006
    Veröffentlicht in Cell cycle (Georgetown, Tex.) (01.09.2006)
    “… To overcome DNA lesions that block replication the cell employs translesion DNA synthesis (TLS) polymerases, a group of low fidelity DNA polymerases that have …”
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  4. 4

    Two-polymerase mechanisms dictate error-free and error-prone translesion DNA synthesis in mammals von Shachar, Sigal, Ziv, Omer, Avkin, Sharon, Adar, Sheera, Wittschieben, John, Reißner, Thomas, Chaney, Stephen, Friedberg, Errol C, Wang, Zhigang, Carell, Thomas, Geacintov, Nicholas, Livneh, Zvi

    ISSN: 0261-4189, 1460-2075, 1460-2075
    Veröffentlicht: Chichester, UK John Wiley & Sons, Ltd 18.02.2009
    Veröffentlicht in The EMBO journal (18.02.2009)
    “… DNA replication across blocking lesions occurs by translesion DNA synthesis (TLS), involving a multitude of mutagenic DNA polymerases that operate to protect …”
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    Mutational signatures reveal the role of RAD52 in p53-independent p21-driven genomic instability von Galanos, Panagiotis, Pappas, George, Polyzos, Alexander, Kotsinas, Athanassios, Svolaki, Ioanna, Giakoumakis, Nickolaos N., Glytsou, Christina, Pateras, Ioannis S., Swain, Umakanta, Souliotis, Vassilis L., Georgakilas, Alexandros G., Geacintov, Nicholas, Scorrano, Luca, Lukas, Claudia, Lukas, Jiri, Livneh, Zvi, Lygerou, Zoi, Chowdhury, Dipanjan, Sørensen, Claus Storgaard, Bartek, Jiri, Gorgoulis, Vassilis G.

    ISSN: 1474-760X, 1474-7596, 1474-760X
    Veröffentlicht: London BioMed Central 16.03.2018
    Veröffentlicht in Genome Biology (16.03.2018)
    “… Background Genomic instability promotes evolution and heterogeneity of tumors. Unraveling its mechanistic basis is essential for the design of appropriate …”
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  7. 7

    Improved sensitivity, safety, and rapidity of COVID-19 tests by replacing viral storage solution with lysis buffer von Erster, Oran, Shkedi, Omer, Benedek, Gil, Zilber, Eyal, Varkovitzky, Itay, Shirazi, Rachel, Oriya Shorka, Dorit, Cohen, Yuval, Bar, Tzahi, Yechieli, Rafi, Tepperberg Oikawa, Michal, Venkert, Dana, Linial, Michal, Oiknine-Djian, Esther, Mandelboim, Michal, Livneh, Zvi, Shenhav-Saltzman, Gilat, Mendelson, Ella, Wolf, Dana, Szwarcwort-Cohen, Moran, Mor, Orna, Lewis, Yair, Zeevi, Danny

    ISSN: 1932-6203, 1932-6203
    Veröffentlicht: United States Public Library of Science 30.03.2021
    Veröffentlicht in PloS one (30.03.2021)
    “… Conducting numerous, rapid, and reliable PCR tests for SARS-CoV-2 is essential for our ability to monitor and control the current COVID-19 pandemic. Here, we …”
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  8. 8

    DNA polymerase zeta cooperates with polymerases kappa and iota in translesion DNA synthesis across pyrimidine photodimers in cells from XPV patients von Ziv, Omer, Geacintov, Nicholas, Nakajima, Satoshi, Yasui, Akira, Livneh, Zvi

    ISSN: 1091-6490
    Veröffentlicht: United States 14.07.2009
    “… Human cells tolerate UV-induced cyclobutane pyrimidine dimers (CPD) by translesion DNA synthesis (TLS), carried out by DNA polymerase eta, the POLH gene …”
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  9. 9

    DNA repair of oxidative DNA damage in human carcinogenesis: Potential application for cancer risk assessment and prevention von Paz-Elizur, Tamar, Sevilya, Ziv, Leitner-Dagan, Yael, Elinger, Dalia, Roisman, Laila C., Livneh, Zvi

    ISSN: 0304-3835, 1872-7980
    Veröffentlicht: Ireland Elsevier Ireland Ltd 18.07.2008
    Veröffentlicht in Cancer letters (18.07.2008)
    “… Efficient DNA repair mechanisms comprise a critical component in the protection against human cancer, as indicated by the high predisposition to cancer of …”
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    PCNA Ubiquitination Is Important, But Not Essential for Translesion DNA Synthesis in Mammalian Cells von Hendel, Ayal, Krijger, Peter H. L., Diamant, Noam, Goren, Zohar, Langerak, Petra, Kim, Jungmin, Reißner, Thomas, Lee, Kyoo-young, Geacintov, Nicholas E., Carell, Thomas, Myung, Kyungjae, Tateishi, Satoshi, D'Andrea, Alan, Jacobs, Heinz, Livneh, Zvi

    ISSN: 1553-7404, 1553-7390, 1553-7404
    Veröffentlicht: United States Public Library of Science 01.09.2011
    Veröffentlicht in PLoS genetics (01.09.2011)
    “… Translesion DNA synthesis (TLS) is a DNA damage tolerance mechanism in which specialized low-fidelity DNA polymerases bypass replication-blocking lesions, and …”
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    Identification of novel DNA-damage tolerance genes reveals regulation of translesion DNA synthesis by nucleophosmin von Ziv, Omer, Zeisel, Amit, Mirlas-Neisberg, Nataly, Swain, Umakanta, Nevo, Reinat, Ben-Chetrit, Nir, Martelli, Maria Paola, Rossi, Roberta, Schiesser, Stefan, Canman, Christine E., Carell, Thomas, Geacintov, Nicholas E., Falini, Brunangelo, Domany, Eytan, Livneh, Zvi

    ISSN: 2041-1723, 2041-1723
    Veröffentlicht: London Nature Publishing Group UK 25.11.2014
    Veröffentlicht in Nature communications (25.11.2014)
    “… Cells cope with replication-blocking lesions via translesion DNA synthesis (TLS). TLS is carried out by low-fidelity DNA polymerases that replicate across …”
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  13. 13

    Genomic assay reveals tolerance of DNA damage by both translesion DNA synthesis and homology-dependent repair in mammalian cells von Izhar, Lior, Ziv, Omer, Cohen, Isadora S, Geacintov, Nicholas E, Livneh, Zvi

    ISSN: 1091-6490, 1091-6490
    Veröffentlicht: United States 16.04.2013
    “… DNA lesions can block replication forks and lead to the formation of single-stranded gaps. These replication complications are mitigated by DNA damage …”
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  14. 14

    DNA lesion identity drives choice of damage tolerance pathway in murine cell chromosomes von Cohen, Isadora S., Bar, Carmit, Paz-Elizur, Tamar, Ainbinder, Elena, Leopold, Karoline, de Wind, Niels, Geacintov, Nicholas, Livneh, Zvi

    ISSN: 0305-1048, 1362-4962, 1362-4962
    Veröffentlicht: England Oxford University Press 18.02.2015
    Veröffentlicht in Nucleic acids research (18.02.2015)
    “… DNA-damage tolerance (DDT) via translesion DNA synthesis (TLS) or homology-dependent repair (HDR) functions to bypass DNA lesions encountered during …”
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  15. 15

    p53 and p21 regulate error-prone DNA repair to yield a lower mutation load von Avkin, Sharon, Sevilya, Ziv, Toube, Leanne, Geacintov, Nicholas, Chaney, Stephen G, Oren, Moshe, Livneh, Zvi

    ISSN: 1097-2765
    Veröffentlicht: United States 05.05.2006
    Veröffentlicht in Molecular cell (05.05.2006)
    “… Regulation of mutation rates is critical for maintaining genome stability and controlling cancer risk. A special challenge to this regulation is the presence …”
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  16. 16

    DNA molecule provides a computing machine with both data and fuel von Benenson, Yaakov, Adar, Rivka, Paz-Elizur, Tamar, Livneh, Zvi, Shapiro, Ehud

    ISSN: 0027-8424
    Veröffentlicht: United States 04.03.2003
    “… The unique properties of DNA make it a fundamental building block in the fields of supramolecular chemistry, nanotechnology, nano-circuits, molecular switches, …”
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  17. 17

    Separate Domains of Rev1 Mediate Two Modes of DNA Damage Bypass in Mammalian Cells von Jansen, Jacob G., Tsaalbi-Shtylik, Anastasia, Hendriks, Giel, Gali, Himabindu, Hendel, Ayal, Johansson, Fredrik, Erixon, Klaus, Livneh, Zvi, Mullenders, Leon H. F., Haracska, Lajos, de Wind, Niels

    ISSN: 0270-7306, 1098-5549, 1098-5549
    Veröffentlicht: United States American Society for Microbiology 01.06.2009
    Veröffentlicht in Molecular and Cellular Biology (01.06.2009)
    “… Article Usage Stats Services MCB Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley …”
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  18. 18

    Reduced repair of the oxidative 8-oxoguanine DNA damage and risk of head and neck cancer von Paz-Elizur, Tamar, Ben-Yosef, Rami, Elinger, Dalia, Vexler, Akiva, Krupsky, Meir, Berrebi, Alain, Shani, Adi, Schechtman, Edna, Freedman, Laurence, Livneh, Zvi

    ISSN: 0008-5472
    Veröffentlicht: United States 15.12.2006
    Veröffentlicht in Cancer research (Chicago, Ill.) (15.12.2006)
    “… An increasing number of studies indicate that reduced DNA-repair capacity is associated with increased cancer risk. Using a functional assay for the removal of …”
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    The mutagenesis protein UmuC is a DNA polymerase activated by UmuD', RecA, and SSB and is specialized for translesion replication von Reuven, N B, Arad, G, Maor-Shoshani, A, Livneh, Z

    ISSN: 0021-9258
    Veröffentlicht: United States 05.11.1999
    Veröffentlicht in The Journal of biological chemistry (05.11.1999)
    “… Replication of DNA lesions leads to the formation of mutations. In Escherichia coli this process is regulated by the SOS stress response, and requires the …”
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    Single-stranded DNA-binding protein recruits DNA polymerase V to primer termini on RecA-coated DNA von Arad, Gali, Hendel, Ayal, Urbanke, Claus, Curth, Ute, Livneh, Zvi

    ISSN: 0021-9258
    Veröffentlicht: United States 28.03.2008
    Veröffentlicht in The Journal of biological chemistry (28.03.2008)
    “… Translesion DNA synthesis (TLS) by DNA polymerase V (polV) in Escherichia coli involves accessory proteins, including RecA and single-stranded DNA-binding …”
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