hrp0095p1-206 | Adrenals and HPA Axis | ESPE2022

Primary adrenal insufficiency in a patient with biallelic QRSL1 mutations

Dursun Fatma , Maras Genc Hulya , Mine Yılmaz Ayşe , Tas Ibrahim , Eser Metin , Pehlivanoglu Cemile , Karademir Yilmaz Betul , Guran Tulay

Background: Biallelic QRSL1 mutations cause mitochondrial “combined oxidative phosphorylation deficiency-40” (COXPD40). COXPD40 has been reported invariably lethal in infancy. Adrenal insufficiency was weakly reported and investigated among seven previously reported patients with COXPD40.Objective: We report clinical, biochemical, molecular, and functional characteristics of a patient with adrenal in...

hrp0097rfc1.4 | Adrenals and HPA Axis | ESPE2023

Lack of NAD(P)+ transhydrogenase activity in patients with primary adrenal insufficiency due to NNT mutations

Francisco Annelise , Mine Yilmaz Goler Ayse , Daniele Carvalho Navarro Claudia , Onder Asan , Yildiz Melek , Kendir Demirkol Yasemin , Karademir Yilmaz Betul , Seven Menevse Tuba , Guran Tulay , Frigério Castilho Roger

Background: Mutations in the nicotinamide nucleotide transhydrogenase (NNT) gene are a rare cause of primary adrenal insufficiency (PAI), as well as cardiomyopathies and functional impairment of the gonads.Objective: Despite the description of different NNT mutations in homozygosis and compound heterozygosis in PAI patients, it remains to be clarified to which extent the function and expression of the m...

hrp0097p1-34 | Diabetes and Insulin | ESPE2023

Evaluation of Mitochondrial Bioenergetic Function in Mitochondrial and Type 1 Diabetes

Gurpinar Tosun Busra , Francisco Annelise , D. C. Navarro Claudia , Seven Menevse Tuba , Polat Hamza , Ozturk Hismi Burcu , Kahveci Ahmet , Turan Serap , Haliloglu Belma , Mine Yilmaz Ayse , Karademir Yilmaz Betul , Bereket Abdullah , F. Castilho Roger , Guran Tulay

Background and hypothesis: Mitochondrial disorders are multisystemic conditions associated with sensorineural hearing loss, encephalomyopathy, lactic acidosis, and non-autoimmune diabetes. The majority of molecular etiologies involve mutations in the genes encoding the oxidative phosphorylation system's components. Superoxide generation is significantly increased and causes oxidative damage in the affected tissues in these disorders. The establishment of ...