Probing Conformational Changes in Ape1 during the Progression of Base Excision Repair

被引:23
|
作者
Yu, Eizadora [1 ]
Gaucher, Sara P. [1 ]
Hadi, Masood Z. [1 ]
机构
[1] Sandia Natl Labs, Biosyst Res Dept, Livermore, CA 94551 USA
基金
美国国家卫生研究院;
关键词
HUMAN APURINIC/APYRIMIDINIC ENDONUCLEASE; HUMAN APURINIC ENDONUCLEASE; HUMAN ABASIC ENDONUCLEASE; DNA-POLYMERASE-BETA; MASS-SPECTROMETRY; MAJOR HUMAN; REDOX REGULATION; HUMAN-POPULATION; SITE ANALOGS; PROTEIN;
D O I
10.1021/bi901828t
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A basic (AP) sites are the most common lesions arising in genomic DNA. Repair of this potentially mutagenic DNA damage is initiated by the major apurinic/apyrimidinic endonuclease Ape 1, which specifically recognizes and cleaves the DNA backbone 5' to the AP site. Ape I is one of the major proteins in the base excision repair pathway (BER), and deletions in any of the BER proteins result in embryonic lethality. In this study, we employed fluorescence spectroscopy and in vitro mass spectrometric protein footprinting to investigate Ape1 conformational changes during various nucleoprotein interactions along its reaction pathway. Differences in intrinsic fluorescence emission spectra were observed during Ape1 protein's processing of the substrate, indicating possible conformational changes of the nucleoprotein complexes. To determine the protein domains that are involved in the putative conformational change, full-length Ape1 protein was probed with a lysine-reactive reagent (NHS-biotin) in the context of free protein and DNA-bound complexes. Protection patterns between pre- and postincision complexes revealed an increased susceptibility of lysine residues localized on the Ape1 surface that contacts the 3' end of the incised duplex (downstream of the incision site). We propose that the decreased protection results from Ape1 having a more relaxed grip on this section of the incised duplex to facilitate the handoff to the downstream BER enzyme. Protection of lysines (residues 24-35) in the N-terminal region was also observed in the intact AP-DNA-bound complex. These residues are part of the Ref1 domain which functions to regulate the activity of several transcription factors but to date has not been ascribed a DNA binding function. The reactivity of these Ref1 lysines was restored in the postincision complex. The differential protection patterns of lysines in the flexible N-terminal domain suggest a novel Ref1 conformational change concomitant with DNA binding and catalysis. It is likely that Ape1 employs this structural switch to mediate redox and nuclease activities. The ability of the Ape1-AP-DNA complex to recruit other BER proteins was also investigated by probing ternary complexes comprised of Ape1, DNA polymerase beta (Pol beta), and different BER DNA intermediates (abasic or gapped DNA). Our results suggest that Pol beta approaches the Ape I DNA complex downstream of the incision site, displaces Ape1 DNA binding contacts (K227, K228, and K276), and in the process makes minimal interactions with lysine residues in the Ref1 domain.
引用
收藏
页码:3786 / 3796
页数:11
相关论文
共 50 条
  • [31] Preeclampsia (PE) Is Associated with an Upregulation of the Major Base Excision Repair (BER) Proteins, OGG1 and APE1, at the Maternal-Fetal Interface
    Tadesse, Serkalem
    Norwitz, Nicholas
    Kidane, Dawit
    Guller, Seth
    Norwitz, Errol R.
    Toti, Paolo
    Arcuri, Felice
    REPRODUCTIVE SCIENCES, 2014, 21 (03) : 398A - 399A
  • [32] Variant base excision repair genes (hOGG1, APE1, XRCC1) and prostate cancer risk in African-American men
    Srivastava, Daya Shankar
    Komolafe, Oyeyemi
    Templeton, Tiva
    States, J. Christopher
    Brock, Guy
    Kidd, La Creis
    FASEB JOURNAL, 2007, 21 (05): : A421 - A421
  • [33] A novel role for Gadd45α in base excision repair: Modulation of APE1 activity by the direct interaction of Gadd45α with PCNA
    Kim, Hye Lim
    Kim, Sang Uk
    Seo, Young Rok
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2013, 434 (02) : 185 - 190
  • [34] Enhanced activity of adenine-DNA glycosylase (Myh) by apurinic/apyrimidinic endonuclease (Ape1) in mammalian base excision repair of an A/GO mismatch
    Yang, HJ
    Clendenin, WM
    Wong, D
    Demple, B
    Slupska, MM
    Chiang, JH
    Miller, JH
    NUCLEIC ACIDS RESEARCH, 2001, 29 (03) : 743 - 752
  • [35] Genetic polymorphisms in DNA base-excision repair genes ADPRT, XRCC1, and APE1 and the risk of squamous cell carcinoma of the head and neck
    Li, Chunying
    Hu, Zhibin
    Lu, Jiachun
    Liu, Zhensheng
    Wang, Li-E
    El-Naggar, Adel K.
    Sturgis, Erich M.
    Spitz, Margaret R.
    Wei, Qingyi
    CANCER, 2007, 110 (04) : 867 - 875
  • [36] APE1-dependent base excision repair of DNA photodimers in human cells
    Gautam, Amit
    Fawcett, Heather
    Burdova, Kamila
    Brazina, Jan
    Caldecott, Keith W.
    MOLECULAR CELL, 2023, 83 (20) : 3669 - 3678.e7
  • [37] Association of DNA Base-excision Repair XRCC1, OGG1 and APE1 Gene Polymorphisms with Nasopharyngeal Carcinoma Susceptibility in a Chinese Population
    Li, Qing
    Wang, Jian-Min
    Peng, Yu
    Zhang, Shi-Heng
    Ren, Tao
    Luo, Hao
    Cheng, Yi
    Wang, Dong
    ASIAN PACIFIC JOURNAL OF CANCER PREVENTION, 2013, 14 (09) : 5145 - 5151
  • [38] Novel mechanism of base excision repair inhibition by low-dose nickel(II): interference of p53-mediated APE1 function
    Hye Lim Kim
    Yeo Jin Kim
    Nam Gook Kee
    Preeyaporn Koedrith
    Young Rok Seo
    Molecular & Cellular Toxicology, 2021, 17 : 169 - 177
  • [39] Novel mechanism of base excision repair inhibition by low-dose nickel(II): interference of p53-mediated APE1 function
    Kim, Hye Lim
    Kim, Yeo Jin
    Kee, Nam Gook
    Koedrith, Preeyaporn
    Seo, Young Rok
    MOLECULAR & CELLULAR TOXICOLOGY, 2021, 17 (02) : 169 - 177
  • [40] Nucleophosmin interaction with APE1: Insights into DNA repair regulation
    Lopez, David J.
    de Blas, Ander
    Hurtado, Mikel
    Garcia-Alija, Mikel
    Mentxaka, Jon
    de la Arada, Igor
    Urbaneja, Maria A.
    Alonso-Marino, Marian
    Banuelos, Sonia
    DNA REPAIR, 2020, 88