TY - JOUR
T1 - Genomic sequencing highlights the diverse molecular causes of Perrault syndrome
T2 - A peroxisomal disorder (PEX6), metabolic disorders (CLPP, GGPS1), and mtDNA maintenance/translation disorders (LARS2, TFAM)
AU - Tucker, Elena J.
AU - Rius, Rocio
AU - Jaillard, Sylvie
AU - Bell, Katrina
AU - Lamont, Phillipa J.
AU - Travessa, André
AU - Dupont, Juliette
AU - Sampaio, Lurdes
AU - Dulon, Jérôme
AU - Vuillaumier-Barrot, Sandrine
AU - Whalen, Sandra
AU - Isapof, Arnaud
AU - Stojkovic, Tanya
AU - Quijano-Roy, Susana
AU - Robevska, Gorjana
AU - van den Bergen, Jocelyn
AU - Hanna, Chloe
AU - Simpson, Andrea
AU - Ayers, Katie
AU - Thorburn, David R.
AU - Christodoulou, John
AU - Touraine, Philippe
AU - Sinclair, Andrew H.
N1 - Funding Information:
WGS was performed as part of the Australian Genomics Health Alliance (Australian Genomics) project, funded by a National Health and Medical Research Council (NHMRC) Targeted Call for Research Grant (1113531). This work was supported by an NHMRC program Grant (1074258, to A.H.S.), and NHMRC fellowships (1054432 to E.J.T., 1062854 to A.H.S., 1155244 to D.R.T), and a CONACYT Postgraduate Research Scholarship (R.R). The research conducted at the Murdoch Children’s Research Institute was supported by the Victorian Government's Operational Infrastructure Support Program.
PY - 2020/10/1
Y1 - 2020/10/1
N2 - Perrault syndrome is a rare heterogeneous condition characterised by sensorineural hearing loss and premature ovarian insufficiency. Additional neuromuscular pathology is observed in some patients. There are six genes in which variants are known to cause Perrault syndrome; however, these explain only a minority of cases. We investigated the genetic cause of Perrault syndrome in seven affected individuals from five different families, successfully identifying the cause in four patients. This included previously reported and novel causative variants in known Perrault syndrome genes, CLPP and LARS2, involved in mitochondrial proteolysis and mitochondrial translation, respectively. For the first time, we show that pathogenic variants in PEX6 can present clinically as Perrault syndrome. PEX6 encodes a peroxisomal biogenesis factor, and we demonstrate evidence of peroxisomal dysfunction in patient serum. This study consolidates the clinical overlap between Perrault syndrome and peroxisomal disorders, and highlights the need to consider ovarian function in individuals with atypical/mild peroxisomal disorders. The remaining patients had variants in candidate genes such as TFAM, involved in mtDNA transcription, replication, and packaging, and GGPS1 involved in mevalonate/coenzyme Q10 biosynthesis and whose enzymatic product is required for mouse folliculogenesis. This genomic study highlights the diverse molecular landscape of this poorly understood syndrome.
AB - Perrault syndrome is a rare heterogeneous condition characterised by sensorineural hearing loss and premature ovarian insufficiency. Additional neuromuscular pathology is observed in some patients. There are six genes in which variants are known to cause Perrault syndrome; however, these explain only a minority of cases. We investigated the genetic cause of Perrault syndrome in seven affected individuals from five different families, successfully identifying the cause in four patients. This included previously reported and novel causative variants in known Perrault syndrome genes, CLPP and LARS2, involved in mitochondrial proteolysis and mitochondrial translation, respectively. For the first time, we show that pathogenic variants in PEX6 can present clinically as Perrault syndrome. PEX6 encodes a peroxisomal biogenesis factor, and we demonstrate evidence of peroxisomal dysfunction in patient serum. This study consolidates the clinical overlap between Perrault syndrome and peroxisomal disorders, and highlights the need to consider ovarian function in individuals with atypical/mild peroxisomal disorders. The remaining patients had variants in candidate genes such as TFAM, involved in mtDNA transcription, replication, and packaging, and GGPS1 involved in mevalonate/coenzyme Q10 biosynthesis and whose enzymatic product is required for mouse folliculogenesis. This genomic study highlights the diverse molecular landscape of this poorly understood syndrome.
UR - http://www.scopus.com/inward/record.url?scp=85084646902&partnerID=8YFLogxK
U2 - 10.1007/s00439-020-02176-w
DO - 10.1007/s00439-020-02176-w
M3 - Article
AN - SCOPUS:85084646902
VL - 139
SP - 1325
EP - 1343
JO - Human Genetics
JF - Human Genetics
SN - 0340-6717
IS - 10
ER -