The Rothmund–Thomson syndrome (growth retardation, skin and bone defects, predisposition to cancer) and the RAPADILINO syndrome are caused by mutations in the RECQL4 gene. The 133 kDa RECQL4 is a putative DNA helicase, a member of the family that includes the BLM and WRN helicases. The latter are mutated, respectively, in the Bloom and Werner syndromes, whose manifestations include predisposition to cancer. Using antibodies to human RECQL4, we found that the bulk of RECQL4 was present in a cytoplasmic extract of HeLa cells, in contrast to the largely nuclear BLM and WRN helicases. However, in untransformed WI-38 fibroblasts, RECQL4 was found to be largely nuclear, and was present at significantly lower total levels than in transformed HeLa ...
The RecQ family of DNA helicases is highly conserved in evolution from bacteria to humans. Of the fi...
Rothmund-Thomson syndrome (RTS) is a rare autosomal recessive disorder characterized by skin rash (p...
Mutations within the gene encoding the DNA helicase RECQL4 underlie the autosomal recessive cancer-p...
RECQL4 is a human RecQ helicase which is mutated in approximately two-thirds of individuals with Rot...
SummaryThe RecQ helicase RECQL4, mutated in Rothmund-Thomson syndrome, regulates genome stability, a...
AbstractRothmund–Thomson syndrome (RTS) is a rare genetic disorder characterized by premature aging,...
AbstractThe RecQ family of helicases has been shown to play an important role in maintaining genomic...
The RecQ helicase RECQL4, mutated in Rothmund-Thomson syndrome, regulates genome stability, aging, a...
The RecQ helicases are a highly conserved family of DNA-unwinding enzymes that play key roles in pro...
Bacteria and yeast possess one RecQ helicase homolog whereas humans contain five RecQ helicases, all...
AbstractThe RecQ helicases are a highly conserved family of DNA-unwinding enzymes that play key role...
Rothmund-Thomson syndrome (RTS) is a rare autosomal recessive disorder characterized by skin rash (p...
The RecQ family of DNA helicases is highly conserved in evolution from bacteria to mammals. There ar...
The human RECQ4 gene encodes an ATP-dependent DNA helicase that contains a conserved superfamily II ...
Rothmund-Thomson Syndrome (RTS) is a rare autosomal recessive genodermatosis with a heterogeneous cl...
The RecQ family of DNA helicases is highly conserved in evolution from bacteria to humans. Of the fi...
Rothmund-Thomson syndrome (RTS) is a rare autosomal recessive disorder characterized by skin rash (p...
Mutations within the gene encoding the DNA helicase RECQL4 underlie the autosomal recessive cancer-p...
RECQL4 is a human RecQ helicase which is mutated in approximately two-thirds of individuals with Rot...
SummaryThe RecQ helicase RECQL4, mutated in Rothmund-Thomson syndrome, regulates genome stability, a...
AbstractRothmund–Thomson syndrome (RTS) is a rare genetic disorder characterized by premature aging,...
AbstractThe RecQ family of helicases has been shown to play an important role in maintaining genomic...
The RecQ helicase RECQL4, mutated in Rothmund-Thomson syndrome, regulates genome stability, aging, a...
The RecQ helicases are a highly conserved family of DNA-unwinding enzymes that play key roles in pro...
Bacteria and yeast possess one RecQ helicase homolog whereas humans contain five RecQ helicases, all...
AbstractThe RecQ helicases are a highly conserved family of DNA-unwinding enzymes that play key role...
Rothmund-Thomson syndrome (RTS) is a rare autosomal recessive disorder characterized by skin rash (p...
The RecQ family of DNA helicases is highly conserved in evolution from bacteria to mammals. There ar...
The human RECQ4 gene encodes an ATP-dependent DNA helicase that contains a conserved superfamily II ...
Rothmund-Thomson Syndrome (RTS) is a rare autosomal recessive genodermatosis with a heterogeneous cl...
The RecQ family of DNA helicases is highly conserved in evolution from bacteria to humans. Of the fi...
Rothmund-Thomson syndrome (RTS) is a rare autosomal recessive disorder characterized by skin rash (p...
Mutations within the gene encoding the DNA helicase RECQL4 underlie the autosomal recessive cancer-p...