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Bi-allelic variants in the mitochondrial RNase P subunit PRORP cause mitochondrial tRNA processing defects and pleiotropic multisystem presentations.


ABSTRACT: Human mitochondrial RNase P (mt-RNase P) is responsible for 5' end processing of mitochondrial precursor tRNAs, a vital step in mitochondrial RNA maturation, and is comprised of three protein subunits: TRMT10C, SDR5C1 (HSD10), and PRORP. Pathogenic variants in TRMT10C and SDR5C1 are associated with distinct recessive or x-linked infantile onset disorders, resulting from defects in mitochondrial RNA processing. We report four unrelated families with multisystem disease associated with bi-allelic variants in PRORP, the metallonuclease subunit of mt-RNase P. Affected individuals presented with variable phenotypes comprising sensorineural hearing loss, primary ovarian insufficiency, developmental delay, and brain white matter changes. Fibroblasts from affected individuals in two families demonstrated decreased steady state levels of PRORP, an accumulation of unprocessed mitochondrial transcripts, and decreased steady state levels of mitochondrial-encoded proteins, which were rescued by introduction of the wild-type PRORP cDNA. In mt-tRNA processing assays performed with recombinant mt-RNase P proteins, the disease-associated variants resulted in diminished mitochondrial tRNA processing. Identification of disease-causing variants in PRORP indicates that pathogenic variants in all three subunits of mt-RNase P can cause mitochondrial dysfunction, each with distinct pleiotropic clinical presentations.

SUBMITTER: Hochberg I 

PROVIDER: S-EPMC8595931 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Bi-allelic variants in the mitochondrial RNase P subunit PRORP cause mitochondrial tRNA processing defects and pleiotropic multisystem presentations.

Hochberg Irit I   Demain Leigh A M LAM   Richer Julie J   Thompson Kyle K   Urquhart Jill E JE   Rea Alessandro A   Pagarkar Waheeda W   Rodríguez-Palmero Agustí A   Schlüter Agatha A   Verdura Edgard E   Pujol Aurora A   Quijada-Fraile Pilar P   Amberger Albert A   Deutschmann Andrea J AJ   Demetz Sandra S   Gillespie Meredith M   Belyantseva Inna A IA   McMillan Hugh J HJ   Barzik Melanie M   Beaman Glenda M GM   Motha Reeya R   Ng Kah Ying KY   O'Sullivan James J   Williams Simon G SG   Bhaskar Sanjeev S SS   Lawrence Isabella R IR   Jenkinson Emma M EM   Zambonin Jessica L JL   Blumenfeld Zeev Z   Yalonetsky Sergey S   Oerum Stephanie S   Rossmanith Walter W   Yue Wyatt W WW   Zschocke Johannes J   Munro Kevin J KJ   Battersby Brendan J BJ   Friedman Thomas B TB   Taylor Robert W RW   O'Keefe Raymond T RT   Newman William G WG  

American journal of human genetics 20211028 11


Human mitochondrial RNase P (mt-RNase P) is responsible for 5' end processing of mitochondrial precursor tRNAs, a vital step in mitochondrial RNA maturation, and is comprised of three protein subunits: TRMT10C, SDR5C1 (HSD10), and PRORP. Pathogenic variants in TRMT10C and SDR5C1 are associated with distinct recessive or x-linked infantile onset disorders, resulting from defects in mitochondrial RNA processing. We report four unrelated families with multisystem disease associated with bi-allelic  ...[more]

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