Browsing by Author "Jordanova, Albena (57216308394)"
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Publication Sphingosine 1-phosphate lyase deficiency causes Charcot-Marie-Tooth neuropathy(2017) ;Atkinson, Derek (56375528600) ;Nikodinovic Glumac, Jelena (57193205920) ;Asselbergh, Bob (18633647600) ;Ermanoska, Biljana (37004422800) ;Blocquel, David (54415310100) ;Steiner, Regula (57190066581) ;Estrada-Cuzcano, Alejandro (23767080900) ;Peeters, Kristien (57225420190) ;Ooms, Tinne (35725857700) ;De Vriendt, Els (6602139889) ;Yang, Xiang-Lei (7406505423) ;Hornemann, Thorsten (6507546322) ;Milic Rasic, Vedrana (6507653181)Jordanova, Albena (57216308394)Objective: To identify the unknown genetic cause in a nuclear family with an axonal form of peripheral neuropathy and atypical disease course. Methods: Detailed neurologic, electrophysiologic, and neuropathologic examinations of the patients were performed. Whole exome sequencing of both affected individuals was done. The effect of the identified sequence variations was investigated at cDNA and protein level in patient-derived lymphoblasts. The plasma sphingoid base profile was analyzed. Functional consequences of neuron-specific downregulation of the gene were studied in Drosophila. Results: Both patients present an atypical form of axonal peripheral neuropathy, characterized by acute or subacute onset and episodes of recurrent mononeuropathy. We identified compound heterozygous mutations cosegregating with disease and absent in controls in the SGPL1 gene, encoding sphingosine 1-phosphate lyase (SPL). The p.Ser361∗mutation triggers nonsense-mediated mRNA decay. The missense p.Ile184Thr mutation causes partial protein degradation. The plasma levels of sphingosine 1-phosphate and sphingosine/sphinganine ratio were increased in the patients. Neuron-specific downregulation of the Drosophila orthologue impaired the morphology of the neuromuscular junction and caused progressive degeneration of the chemosensory neurons innervating the wing margin bristles. Conclusions: We suggest SPL deficiency as a cause of a distinct form of Charcot-Marie-Tooth disease in humans, thus extending the currently recognized clinical and genetic spectrum of inherited peripheral neuropathies. Our data emphasize the importance of sphingolipid metabolism for neuronal function. © 2017 American Academy of Neurology. - Some of the metrics are blocked by yourconsent settings
Publication Truncating and missense mutations in IGHMBP2 cause Charcot-Marie Tooth disease type 2(2014) ;Cottenie, Ellen (55390023500) ;Kochanski, Andrzej (7003582193) ;Jordanova, Albena (57216308394) ;Bansagi, Boglarka (54986323700) ;Zimon, Magdalena (35739446500) ;Horga, Alejandro (20733916300) ;Jaunmuktane, Zane (54083212800) ;Saveri, Paola (37561876300) ;Rasic, Vedrana Milic (9042480200) ;Baets, Jonathan (23994966100) ;Bartsakoulia, Marina (55364416700) ;Ploski, Rafal (7003937391) ;Teterycz, Pawel (57204812837) ;Nikolic, Milos (56910382000) ;Quinlivan, Ros (57208851936) ;Laura, Matilde (22951097700) ;Sweeney, Mary G. (7201380026) ;Taroni, Franco (7006795912) ;Lunn, Michael P. (7004224851) ;Moroni, Isabella (6602137148) ;Gonzalez, Michael (55486012500) ;Hanna, Michael G. (15075798500) ;Bettencourt, Conceicao (8581587200) ;Chabrol, Elodie (18436179700) ;Franke, Andre (57201765376) ;Von Au, Katja (12041089900) ;Schilhabel, Markus (6507578077) ;Kabzińska, Dagmara (6602637177) ;Hausmanowa-Petrusewicz, Irena (7103239137) ;Brandner, Sebastian (7006643850) ;Lim, Siew Choo (37031494600) ;Song, Haiwei (7404036917) ;Choi, Byung-Ok (7402755390) ;Horvath, Rita (55937735100) ;Chung, Ki-Wha (8152647000) ;Zuchner, Stephan (6602168993) ;Pareyson, Davide (7004613502) ;Harms, Matthew (36614168600) ;Reilly, Mary M. (57203175311)Houlden, Henry (7003363686)Using a combination of exome sequencing and linkage analysis, we investigated an English family with two affected siblings in their 40s with recessive Charcot-Marie Tooth disease type 2 (CMT2). Compound heterozygous mutations in the immunoglobulin-helicase-mbinding protein 2 (IGHMBP2) gene were identified. Further sequencing revealed a total of 11 CMT2 families with recessively inherited IGHMBP2 gene mutations. IGHMBP2 mutations usually lead to spinal muscular atrophy with respiratory distress type 1 (SMARD1), where most infants die before 1 year of age. The individuals with CMT2 described here, have slowly progressive weakness, wasting and sensory loss, with an axonal neuropathy typical of CMT2, but no significant respiratory compromise. Segregating IGHMBP2 mutations in CMT2 were mainly loss-of-function nonsense in the 50 region of the gene in combination with a truncating frameshift, missense, or homozygous frameshift mutations in the last exon. Mutations in CMT2 were predicted to be less aggressive as compared to those in SMARD1, and fibroblast and lymphoblast studies indicate that the IGHMBP2 protein levels are significantly higher in CMT2 than SMARD1, but lower than controls, suggesting that the clinical phenotype differences are related to the IGHMBP2 protein levels. © 2014 The Authors. - Some of the metrics are blocked by yourconsent settings
Publication Truncating and missense mutations in IGHMBP2 cause Charcot-Marie Tooth disease type 2(2014) ;Cottenie, Ellen (55390023500) ;Kochanski, Andrzej (7003582193) ;Jordanova, Albena (57216308394) ;Bansagi, Boglarka (54986323700) ;Zimon, Magdalena (35739446500) ;Horga, Alejandro (20733916300) ;Jaunmuktane, Zane (54083212800) ;Saveri, Paola (37561876300) ;Rasic, Vedrana Milic (9042480200) ;Baets, Jonathan (23994966100) ;Bartsakoulia, Marina (55364416700) ;Ploski, Rafal (7003937391) ;Teterycz, Pawel (57204812837) ;Nikolic, Milos (56910382000) ;Quinlivan, Ros (57208851936) ;Laura, Matilde (22951097700) ;Sweeney, Mary G. (7201380026) ;Taroni, Franco (7006795912) ;Lunn, Michael P. (7004224851) ;Moroni, Isabella (6602137148) ;Gonzalez, Michael (55486012500) ;Hanna, Michael G. (15075798500) ;Bettencourt, Conceicao (8581587200) ;Chabrol, Elodie (18436179700) ;Franke, Andre (57201765376) ;Von Au, Katja (12041089900) ;Schilhabel, Markus (6507578077) ;Kabzińska, Dagmara (6602637177) ;Hausmanowa-Petrusewicz, Irena (7103239137) ;Brandner, Sebastian (7006643850) ;Lim, Siew Choo (37031494600) ;Song, Haiwei (7404036917) ;Choi, Byung-Ok (7402755390) ;Horvath, Rita (55937735100) ;Chung, Ki-Wha (8152647000) ;Zuchner, Stephan (6602168993) ;Pareyson, Davide (7004613502) ;Harms, Matthew (36614168600) ;Reilly, Mary M. (57203175311)Houlden, Henry (7003363686)Using a combination of exome sequencing and linkage analysis, we investigated an English family with two affected siblings in their 40s with recessive Charcot-Marie Tooth disease type 2 (CMT2). Compound heterozygous mutations in the immunoglobulin-helicase-mbinding protein 2 (IGHMBP2) gene were identified. Further sequencing revealed a total of 11 CMT2 families with recessively inherited IGHMBP2 gene mutations. IGHMBP2 mutations usually lead to spinal muscular atrophy with respiratory distress type 1 (SMARD1), where most infants die before 1 year of age. The individuals with CMT2 described here, have slowly progressive weakness, wasting and sensory loss, with an axonal neuropathy typical of CMT2, but no significant respiratory compromise. Segregating IGHMBP2 mutations in CMT2 were mainly loss-of-function nonsense in the 50 region of the gene in combination with a truncating frameshift, missense, or homozygous frameshift mutations in the last exon. Mutations in CMT2 were predicted to be less aggressive as compared to those in SMARD1, and fibroblast and lymphoblast studies indicate that the IGHMBP2 protein levels are significantly higher in CMT2 than SMARD1, but lower than controls, suggesting that the clinical phenotype differences are related to the IGHMBP2 protein levels. © 2014 The Authors.
