Abstract
BLM encodes a member of the highly conserved RecQ DNA helicase family, which is essential for the maintenance of genome stability. Homozygous inactivation of BLM gives rise to the cancer predisposition disorder Bloom's syndrome. A common feature of many RecQ helicase mutants is a hyperrecombination phenotype. In Bloom's syndrome, this phenotype manifests as an elevated frequency of sister chromatid exchanges and interhomologue recombination. We have shown previously that BLM, together with its evolutionarily conserved binding partner topoisomerase IIIalpha (hTOPO IIIalpha), can process recombination intermediates that contain double Holliday junctions into noncrossover products by a mechanism termed dissolution. Here we show that a recently identified third component of the human BLM/hTOPO IIIalpha complex, BLAP75/RMI1, promotes dissolution catalyzed by hTOPO IIIalpha. This activity of BLAP75/RMI1 is specific for dissolution catalyzed by hTOPO IIIalpha because it has no effect in reactions containing either Escherichia coli Top1 or Top3, both of which can also catalyze dissolution in a BLM-dependent manner. We present evidence that BLAP75/RMI1 acts by recruiting hTOPO IIIalpha to double Holliday junctions. Implications of the conserved ability of type IA topoisomerases to catalyze dissolution and how the evolution of factors such as BLAP75/RMI1 might confer specificity on the execution of this process are discussed.
MeSH Terms
Adenosine Triphosphatases/chemistry,genetics,metabolism
Bloom Syndrome/genetics,metabolism
Carrier Proteins/chemistry,genetics,metabolism
DNA Helicases/chemistry,genetics,metabolism
DNA Topoisomerases, Type I/chemistry,genetics,metabolism
DNA, Cruciform/chemistry,genetics,metabolism
DNA-Binding Proteins
Escherichia coli/genetics
Humans
In Vitro Techniques
Multiprotein Complexes
Nuclear Proteins
Phenotype
Protein Binding
RecQ Helicases
Recombinant Proteins/chemistry,genetics,metabolism
Recombination, Genetic
Sister Chromatid Exchange
Chemicals
Carrier Proteins
DNA, Cruciform
DNA-Binding Proteins
Multiprotein Complexes
Nuclear Proteins
RMI1 protein, human
Recombinant Proteins
Adenosine Triphosphatases
Bloom syndrome protein
DNA Helicases
RecQ Helicases
DNA Topoisomerases, Type I
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Wu Leonard
Cancer Research UK, Weatherall Institute of Molecular Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9DS, United Kingdom.
Bachrati Csanad Z
Ou Jiongwen
Xu Chang
Yin Jinhu
Chang Michael
Wang Weidong
Li Lei
Brown Grant W
Hickson Ian D
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