TY - JOUR
T1 - Mutations in TFIIH causing trichothiodystrophy are responsible for defects in ribosomal RNA production and processing
AU - Nonnekens, Julie
AU - Perez-Fernandez, Jorge
AU - Theil, Arjan F.
AU - Gadal, Olivier
AU - Bonnart, Chrystelle
AU - Giglia-Mari, Giuseppina
PY - 2013/7/15
Y1 - 2013/7/15
N2 - The basal transcription/repair factor II H (TFIIH), found mutated in cancer-prone or premature aging diseases, plays a still unclear role in RNA polymerase I transcription. Furthermore, the impact of this function on TFIIHrelated diseases, such as trichothiodystrophy (TTD), remains to be explored. Here, we studied the involvement of TFIIH during the whole process of ribosome biogenesis, from RNAP1 transcription to maturation steps of the ribosomal RNAs. Our results show that TFIIH is recruited to the ribosomal DNA in an active transcription- dependent manner and functions in RNAP1 transcription elongation through ATP hydrolysis of the XPB subunit. Remarkably, we found a TFIIH allele-specific effect, affecting RNAP1 transcription and/or the pre-rRNA maturation process. Interestingly, this effect was observed in mutant TFIIH-TTD cells and also in the brains of TFIIH-TTD mice. Our findings provide evidence that defective ribosome synthesis represents a new faulty mechanism involved in the pathophysiology of TFIIH-related diseases.
AB - The basal transcription/repair factor II H (TFIIH), found mutated in cancer-prone or premature aging diseases, plays a still unclear role in RNA polymerase I transcription. Furthermore, the impact of this function on TFIIHrelated diseases, such as trichothiodystrophy (TTD), remains to be explored. Here, we studied the involvement of TFIIH during the whole process of ribosome biogenesis, from RNAP1 transcription to maturation steps of the ribosomal RNAs. Our results show that TFIIH is recruited to the ribosomal DNA in an active transcription- dependent manner and functions in RNAP1 transcription elongation through ATP hydrolysis of the XPB subunit. Remarkably, we found a TFIIH allele-specific effect, affecting RNAP1 transcription and/or the pre-rRNA maturation process. Interestingly, this effect was observed in mutant TFIIH-TTD cells and also in the brains of TFIIH-TTD mice. Our findings provide evidence that defective ribosome synthesis represents a new faulty mechanism involved in the pathophysiology of TFIIH-related diseases.
UR - http://www.scopus.com/inward/record.url?scp=84880304868&partnerID=8YFLogxK
U2 - 10.1093/hmg/ddt143
DO - 10.1093/hmg/ddt143
M3 - Article
C2 - 23562818
AN - SCOPUS:84880304868
SN - 0964-6906
VL - 22
SP - 2881
EP - 2893
JO - Human Molecular Genetics
JF - Human Molecular Genetics
IS - 14
M1 - ddt143
ER -