hSSB1 (human single strand DNA-binding protein 1) has been shown to participate in homologous recombination (HR)-dependent repair of DNA double strand breaks (DSBs) and ataxia telangiectasia-mutated (ATM)-mediated checkpoint pathways. Here we present evidence that hSSB2, a homolog of hSSB1, plays a role similar to hSSB1 in DNA damage-response pathways. This was evidenced by findings that hSSB2-depleted cells resemble hSSB1-depleted cells in hypersensitivity to DNA-damaging reagents, reduced efficiency in HR-dependent repair of DSBs, and defective ATM-dependent phosphorylation. Notably, hSSB1 and hSSB2 form separate complexes with two identical proteins, INTS3 and hSSBIP1 (C9ORF80). Cells depleted of INTS3 and hSSBIP1 also exhibited hypersen...
Single-stranded DNA binding (SSB) proteins are essential to protect singe-stranded DNA (ssDNA) that ...
Homologous recombination (HR) is a major mechanism to repair DNA double-strand breaks (DSBs). Althou...
Aberrant DNA replication is a primary cause of mutations that are associated with pathological disor...
hSSB1 (human single strand DNA-binding protein 1) has been shown to participate in homologous recomb...
hSSB1 is a newly discovered single-stranded DNA (ssDNA)-binding protein that is essential for effici...
Single-strand DNA (ssDNA)-binding proteins (SSBs) are ubiquitous and essential for a wide variety of...
Human SSB1 (single-stranded binding protein 1 [hSSB1]) was recently identified as a part of the atax...
hSSB1 is a recently discovered single-stranded DNA binding protein that is essential for efficient r...
<b>Background</b>\ud \ud Maintenance of genome stability is critical in human cells. Mutations in or...
DNA is under constant attack from the external and internal environment. It is imperative to repair ...
Our genomic DNA is found predominantly in a double-stranded helical conformation. However, there are...
Our genomic DNA is found predominantly in a double-stranded helical conformation. However, there are...
Background Single-stranded DNA-binding proteins are essential cellular components required for the p...
DNA is susceptible to degradation and damage from both the external and internal environments. It is...
Single-stranded DNA binding (SSB) proteins are essential to protect singe-stranded DNA (ssDNA) that ...
Homologous recombination (HR) is a major mechanism to repair DNA double-strand breaks (DSBs). Althou...
Aberrant DNA replication is a primary cause of mutations that are associated with pathological disor...
hSSB1 (human single strand DNA-binding protein 1) has been shown to participate in homologous recomb...
hSSB1 is a newly discovered single-stranded DNA (ssDNA)-binding protein that is essential for effici...
Single-strand DNA (ssDNA)-binding proteins (SSBs) are ubiquitous and essential for a wide variety of...
Human SSB1 (single-stranded binding protein 1 [hSSB1]) was recently identified as a part of the atax...
hSSB1 is a recently discovered single-stranded DNA binding protein that is essential for efficient r...
<b>Background</b>\ud \ud Maintenance of genome stability is critical in human cells. Mutations in or...
DNA is under constant attack from the external and internal environment. It is imperative to repair ...
Our genomic DNA is found predominantly in a double-stranded helical conformation. However, there are...
Our genomic DNA is found predominantly in a double-stranded helical conformation. However, there are...
Background Single-stranded DNA-binding proteins are essential cellular components required for the p...
DNA is susceptible to degradation and damage from both the external and internal environments. It is...
Single-stranded DNA binding (SSB) proteins are essential to protect singe-stranded DNA (ssDNA) that ...
Homologous recombination (HR) is a major mechanism to repair DNA double-strand breaks (DSBs). Althou...
Aberrant DNA replication is a primary cause of mutations that are associated with pathological disor...