Human RecQ Helicases in DNA Double-Strand Break Repair

被引:41
作者
Lu, Huiming [1 ]
Davis, Anthony J. [1 ]
机构
[1] UT Southwestern Med Ctr, Dept Radiat Oncol, Div Mol Radiat Biol, Dallas, TX 75390 USA
基金
美国国家卫生研究院;
关键词
RecQ helicase; RECQL1; BLM; WRN; RECQL4; RECQL5; DNA double-strand break repair; genome stability; WERNER-SYNDROME PROTEIN; ROTHMUND-THOMSON-SYNDROME; BLOOMS-SYNDROME HELICASE; SYNDROME GENE-PRODUCT; BLM HELICASE; HOMOLOGOUS RECOMBINATION; END RESECTION; FUNCTIONAL INTERACTION; HUMAN RECQ5-BETA; HRDC DOMAIN;
D O I
10.3389/fcell.2021.640755
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
RecQ DNA helicases are a conserved protein family found in bacteria, fungus, plants, and animals. These helicases play important roles in multiple cellular functions, including DNA replication, transcription, DNA repair, and telomere maintenance. Humans have five RecQ helicases: RECQL1, Bloom syndrome protein (BLM), Werner syndrome helicase (WRN), RECQL4, and RECQL5. Defects in BLM and WRN cause autosomal disorders: Bloom syndrome (BS) and Werner syndrome (WS), respectively. Mutations in RECQL4 are associated with three genetic disorders, Rothmund-Thomson syndrome (RTS), Baller-Gerold syndrome (BGS), and RAPADILINO syndrome. Although no genetic disorders have been reported due to loss of RECQL1 or RECQL5, dysfunction of either gene is associated with tumorigenesis. Multiple genetically independent pathways have evolved that mediate the repair of DNA double-strand break (DSB), and RecQ helicases play pivotal roles in each of them. The importance of DSB repair is supported by the observations that defective DSB repair can cause chromosomal aberrations, genomic instability, senescence, or cell death, which ultimately can lead to premature aging, neurodegeneration, or tumorigenesis. In this review, we will introduce the human RecQ helicase family, describe in detail their roles in DSB repair, and provide relevance between the dysfunction of RecQ helicases and human diseases.
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页数:18
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共 259 条
[1]   The N-terminal region of RECQL4 lacking the helicase domain is both essential and sufficient for the viability of vertebrate cells Role of the N-terminal region of RECQL4 in cells [J].
Abe, Takuya ;
Yoshimura, Akari ;
Hosono, Yoshifumi ;
Tada, Shusuke ;
Seki, Masayuki ;
Enomoto, Takemi .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2011, 1813 (03) :473-479
[2]   ATR and ATM differently regulate WRN to prevent DSBs at stalled replication forks and promote replication fork recovery [J].
Ammazzalorso, Francesca ;
Pirzio, Livia Maria ;
Bignami, Margherita ;
Franchitto, Annapaola ;
Pichierri, Pietro .
EMBO JOURNAL, 2010, 29 (18) :3156-3169
[3]   RECQ5: A Mysterious Helicase at the Interface of DNA Replication and Transcription [J].
Andrs, Martin ;
Hasanova, Zdenka ;
Oravetzova, Anna ;
Dobrovolna, Jana ;
Janscak, Pavel .
GENES, 2020, 11 (02)
[4]   Pathogenic germline variants are associated with poor survival in stage III/IV melanoma patients [J].
Aoude, Lauren G. ;
Bonazzi, Vanessa F. ;
Brosda, Sandra ;
Patel, Kalpana ;
Koufariotis, Lambros T. ;
Oey, Harald ;
Nones, Katia ;
Wood, Scott ;
Pearson, John, V ;
Lonie, James M. ;
Arneil, Melissa ;
Atkinson, Victoria ;
Smithers, B. Mark ;
Waddell, Nicola ;
Barbour, Andrew P. .
SCIENTIFIC REPORTS, 2020, 10 (01)
[5]   Mobile D-loops are a preferred substrate for the Bloom's syndrome helicase [J].
Bachrati, Csanad Z. ;
Borts, Rhona H. ;
Hickson, Ian D. .
NUCLEIC ACIDS RESEARCH, 2006, 34 (08) :2269-2279
[6]   Catalytic Strand Separation by RECQ1 Is Required for RPA-Mediated Response to Replication Stress [J].
Banerjee, Taraswi ;
Sommers, Joshua A. ;
Huang, Jing ;
Seidman, Michael M. ;
Brosh, Robert M., Jr. .
CURRENT BIOLOGY, 2015, 25 (21) :2830-2838
[7]   The BLM helicase contributes to telomere maintenance through processing of late-replicating intermediate structures [J].
Barefield, Colleen ;
Karlseder, Jan .
NUCLEIC ACIDS RESEARCH, 2012, 40 (15) :7358-7367
[8]  
Baris HN, 2007, ISR MED ASSOC J, V9, P847
[9]   WRN interacts physically and functionally with the recombination mediator protein RAD52 [J].
Baynton, K ;
Otterlei, M ;
Bjorås, M ;
von Kobbe, C ;
Bohr, VA ;
Seeberg, E .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (38) :36476-36486
[10]   Alternative-NHEJ Is a Mechanistically Distinct Pathway of Mammalian Chromosome Break Repair [J].
Bennardo, Nicole ;
Cheng, Anita ;
Huang, Nick ;
Stark, Jeremy M. .
PLOS GENETICS, 2008, 4 (06)