A source of the single-stranded DNA substrate for activation-induced deaminase during somatic hypermutation

被引:0
|
作者
Xiaohua Wang
Manxia Fan
Susan Kalis
Lirong Wei
Matthew D. Scharff
机构
[1] Albert Einstein College of Medicine,Department of Cell Biology
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
During somatic hypermutation (SHM), activation-induced deaminase (AID) mutates deoxycytidine on single-stranded DNA (ssDNA) generated by the transcription machinery, but the detailed mechanism remains unclear. Here we report a higher abundance of RNA polymerase II (Pol II) at the immunoglobulin heavy-chain variable (Igh-V) region compared with the constant region and partially transcribed Igh RNAs, suggesting a slower Pol II progression at Igh-V that could result in some early/premature transcription termination after prolonged pausing/stalling of Pol II. Knocking down RNA–exosome complexes, which could decrease premature transcription termination, leads to decreased SHM. Knocking down Spt5, which can augment premature transcription termination, leads to increase in both, SHM and the abundance of ssDNA substrates. Collectively, our data support the model that, following the reduction of Pol II progression (pausing or stalling) at the Igh-V, additional steps such as premature transcription termination are involved in providing ssDNA substrates for AID during SHM.
引用
收藏
相关论文
共 50 条
  • [31] Activation-induced deaminase (AID)-directed hypermutation in the immunoglobulin Sμ region:: Implication of AID involvement in a common step of class switch recombination and somatic hypermutation
    Nagaoka, H
    Muramatsu, M
    Yamamura, N
    Kinoshita, K
    Honjo, T
    JOURNAL OF EXPERIMENTAL MEDICINE, 2002, 195 (04): : 529 - 534
  • [32] Activation-induced cytidine deaminase initiates immunoglobulin gene conversion and hypermutation by a common intermediate
    Arakawa, H
    Saribasak, H
    Buerstedde, JM
    PLOS BIOLOGY, 2004, 2 (07) : 967 - 974
  • [33] Glycidamide-induced Hypermutation in Single Stranded DNA.
    Hudson, K.
    Saini, N.
    Sterling, J. F.
    Klimczak, L. J.
    Gordenin, D. A.
    ENVIRONMENTAL AND MOLECULAR MUTAGENESIS, 2020, 61 : 72 - 72
  • [34] Activation-induced cytidine deaminase-mediated hypermutation in the DT40 cell line
    Arakawa, Hiroshi
    Buerstedde, Jean-Marie
    PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2009, 364 (1517) : 639 - 644
  • [35] A Bayesian model based computational analysis of the relationship between bisulfite accessible single-stranded DNA in chromatin and somatic hypermutation of immunoglobulin genes
    Yu, Guojun
    Wu, Yingru
    Duan, Zhi
    Tang, Catherine
    Xing, Haipeng
    Scharff, Matthew D.
    MacCarthy, Thomas
    PLOS COMPUTATIONAL BIOLOGY, 2021, 17 (09)
  • [36] Apurinic/apyrimidinic endonuclease 1 (APE1) is dispensable for activation-induced cytidine deaminase (AID)-dependent somatic hypermutation in the immunoglobulin gene
    Islam, Helena
    Kobayashi, Maki
    Honjo, Tasuku
    INTERNATIONAL IMMUNOLOGY, 2019, 31 (08) : 543 - 554
  • [37] Richter's and prolymphocytic transformation of chronic lymphocytic leukemia are associated with high mRNA expression of activation-induced cytidine deaminase and aberrant somatic hypermutation
    Reiniger, L.
    Bodor, C.
    Bognar, A.
    Balogh, Z.
    Csomor, J.
    Szepesi, A.
    Kopper, L.
    Matolcsy, A.
    LEUKEMIA, 2006, 20 (06) : 1089 - 1095
  • [38] Richter's and prolymphocytic transformation of chronic lymphocytic leukemia are associated with high mRNA expression of activation-induced cytidine deaminase and aberrant somatic hypermutation
    L Reiniger
    C Bödör
    Á Bognár
    Z Balogh
    J Csomor
    Á Szepesi
    L Kopper
    A Matolcsy
    Leukemia, 2006, 20 : 1089 - 1095
  • [39] Single-Stranded DNA Uptake during Gonococcal Transformation
    Hepp, Christof
    Gangel, Heike
    Henseler, Katja
    Guenther, Niklas
    Maier, Berenike
    JOURNAL OF BACTERIOLOGY, 2016, 198 (18) : 2515 - 2523
  • [40] Mechanism of Single-Stranded DNA Activation of Recombinase Intein Splicing
    Lennon, Christopher W.
    Stanger, Matthew J.
    Belfort, Marlene
    BIOCHEMISTRY, 2019, 58 (31) : 3335 - 3339