학술논문

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(예 : 2010-2015)
'학술논문' 에서 검색결과 41건 | 목록 1~10
Electronic Resource
Kanagaraj, R; Huehn, D; MacKellar, A; Menigatti, M; Zheng, L; Urban, V; Shevelev, I; Greenleaf, A L; Janscak, Pavel (2010). RECQ5 helicase associates with the C-terminal repeat domain of RNA polymerase II during productive elongation phase of transcription. Nucleic Acids Research, 38(22):8131-8140.
Electronic Resource
Schwendener, S; Raynard, S; Paliwal, S; Cheng, A; Kanagaraj, R; Shevelev, I; Stark, J M; Sung, P; Janscak, Pavel (2010). Physical interaction of RECQ5 helicase with RAD51 facilitates its anti-recombinase activity. Journal of Biological Chemistry, 285(21):15739-15745.
Electronic Resource
Dietschy, T; Shevelev, I; Pena-Diaz, J; Hühn, D; Kuenzle, S; Mak, R; Miah, M F; Hess, D; Fey, M; Hottiger, M O; Janscak, Pavel; Stagljar, I (2009). p300-mediated acetylation of the Rothmund-Thomson-syndrome gene product RECQL4 regulates its subcellular localization. Journal of Cell Science, 122(Pt. 8):1258-1267.
Electronic Resource
Zheng, L; Kanagaraj, R; Mihaljevic, B; Schwendener, S; Sartori, Alessandro A; Gerrits, B; Shevelev, I; Janscak, Pavel (2009). MRE11 complex links RECQ5 helicase to sites of DNA damage. Nucleic Acids Research, 37(8):2645-2657.
Electronic Resource
Selak, N; Bachrati, C Z; Shevelev, I; Dietschy, T; van Loon, B; Jacob, A; Hübscher, U; Hoheisel, J D; Hickson, I D; Stagljar, I (2008). The Bloom's syndrome helicase (BLM) interacts physically and functionally with p12, the smallest subunit of human DNA polymerase delta. Nucleic Acids Research, 36(16):5166-5179.
Electronic Resource
Saydam, N; Kanagaraj, R; Dietschy, T; Garcia, P L; Peña-Diaz, J; Shevelev, I; Stagljar, I; Janscak, Pavel (2007). Physical and functional interactions between Werner syndrome helicase and mismatch-repair initiation factors. Nucleic Acids Research, 35(17):5706-5716.
Electronic Resource
Maga, G; Shevelev, I; Villani, G; Spadari, S; Hübscher, U (2006). Human replication protein A can suppress the intrinsic in vitro mutator phenotype of human DNA polymerase lambda. Nucleic Acids Research, 34(5):1405-1415.
Electronic Resource
Maga, G; Ramadan, K; Locatelli, G A; Shevelev, I; Spadari, S; Hübscher, U (2005). DNA elongation by the human DNA polymerase lambda polymerase and terminal transferase activities are differentially coordinated by proliferating cell nuclear antigen and replication protein A. Journal of Biological Chemistry, 280(3):1971-1981.
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[AR] SHEVELEV, I
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