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Browsing by Author "Pavlovic, S. (7006514877)"

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    Genetic characterization of GSD I in Serbian population revealed unexpectedly high incidence of GSD Ib and 3 novel SLC37A4 variants
    (2018)
    Skakic, A. (57095918200)
    ;
    Djordjevic, M. (7102319301)
    ;
    Sarajlija, A. (26027638400)
    ;
    Klaassen, K. (54959837700)
    ;
    Tosic, N. (15729686900)
    ;
    Kecman, B. (23034935300)
    ;
    Ugrin, M. (56554098500)
    ;
    Spasovski, V. (26655022200)
    ;
    Pavlovic, S. (7006514877)
    ;
    Stojiljkovic, M. (35095552600)
    Glycogen storage disease (GSD) type I is inborn metabolic disease characterized by accumulation of glycogen in multiple organs. We analyzed 38 patients with clinical suspicion of GSD I using Sanger and next-generation sequencing (NGS). We identified 28 GSD Ib and 5 GSD Ia patients. In 5 patients, GSD III, VI, IX, cholesteryl-ester storage disease and Shwachman-Diamond syndrome diagnoses were set using NGS. Incidences for GSD Ia and GSD Ib were estimated at 1:172 746 and 1:60 461 live-births, respectively. Two variants were identified in G6PC gene: c.247C>T (p.Arg83Cys) and c.518T>C (p.Leu173Pro). In SLC37A4 gene, 6 variants were detected. Three previously reported variants c.81T>A (p.Asn27Lys), c.162C>A (p.Ser54Arg) and c.1042_1043delCT (p.Leu348Valfs*53) accounted for 87% of all analyzed alleles. Computational, transcription studies and/or clinical presentation in patients confirmed pathogenic effect of 3 novel variants: c.248G>A (p.Gly83Glu), c.404G>A (p.Gly135Asp) and c.785G>A (p.Ser263Glyfs*33 or p.Gly262Asp). In the cohort, hepatomegaly, hypoglycemia and failure to thrive were the most frequent presenting signs of GSD Ia, while hepatomegaly and recurrent bacterial infections were clinical hallmarks of GSD Ib. All GSD Ib patients developed neutropenia while 20.6% developed inflammatory bowel disease. Our study revealed the highest worldwide incidence of GSD Ib. Furthermore, description of 3 novel variants will facilitate medical genetic practice. © 2017 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd
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    Publication
    Genetic characterization of GSD I in Serbian population revealed unexpectedly high incidence of GSD Ib and 3 novel SLC37A4 variants
    (2018)
    Skakic, A. (57095918200)
    ;
    Djordjevic, M. (7102319301)
    ;
    Sarajlija, A. (26027638400)
    ;
    Klaassen, K. (54959837700)
    ;
    Tosic, N. (15729686900)
    ;
    Kecman, B. (23034935300)
    ;
    Ugrin, M. (56554098500)
    ;
    Spasovski, V. (26655022200)
    ;
    Pavlovic, S. (7006514877)
    ;
    Stojiljkovic, M. (35095552600)
    Glycogen storage disease (GSD) type I is inborn metabolic disease characterized by accumulation of glycogen in multiple organs. We analyzed 38 patients with clinical suspicion of GSD I using Sanger and next-generation sequencing (NGS). We identified 28 GSD Ib and 5 GSD Ia patients. In 5 patients, GSD III, VI, IX, cholesteryl-ester storage disease and Shwachman-Diamond syndrome diagnoses were set using NGS. Incidences for GSD Ia and GSD Ib were estimated at 1:172 746 and 1:60 461 live-births, respectively. Two variants were identified in G6PC gene: c.247C>T (p.Arg83Cys) and c.518T>C (p.Leu173Pro). In SLC37A4 gene, 6 variants were detected. Three previously reported variants c.81T>A (p.Asn27Lys), c.162C>A (p.Ser54Arg) and c.1042_1043delCT (p.Leu348Valfs*53) accounted for 87% of all analyzed alleles. Computational, transcription studies and/or clinical presentation in patients confirmed pathogenic effect of 3 novel variants: c.248G>A (p.Gly83Glu), c.404G>A (p.Gly135Asp) and c.785G>A (p.Ser263Glyfs*33 or p.Gly262Asp). In the cohort, hepatomegaly, hypoglycemia and failure to thrive were the most frequent presenting signs of GSD Ia, while hepatomegaly and recurrent bacterial infections were clinical hallmarks of GSD Ib. All GSD Ib patients developed neutropenia while 20.6% developed inflammatory bowel disease. Our study revealed the highest worldwide incidence of GSD Ib. Furthermore, description of 3 novel variants will facilitate medical genetic practice. © 2017 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd
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    Molecular and phenotypic characteristics of seven novel mutations causing branched-chain organic acidurias
    (2016)
    Stojiljkovic, M. (35095552600)
    ;
    Klaassen, K. (54959837700)
    ;
    Djordjevic, M. (7102319301)
    ;
    Sarajlija, A. (26027638400)
    ;
    Brasil, S. (49660918100)
    ;
    Kecman, B. (23034935300)
    ;
    Grkovic, S. (8710432500)
    ;
    Kostic, J. (57159483500)
    ;
    Rodriguez-Pombo, P. (6602708464)
    ;
    Desviat, L.R. (7003747320)
    ;
    Pavlovic, S. (7006514877)
    ;
    Perez, B. (7101818958)
    Specific mitochondrial enzymatic deficiencies in the catabolism of branched-chain amino acids cause methylmalonic aciduria (MMA), propionic acidemia (PA) and maple syrup urine disease (MSUD). Disease-causing mutations were identified in nine unrelated branched-chain organic acidurias (BCOA) patients. We detected eight previously described mutations: p.Asn219Tyr, p.Arg369His p.Val553Glyfs*17 in MUT, p.Thr198Serfs*6 in MMAA, p.Ile144_Leu181del in PCCB, p.Gly288Valfs*11, p.Tyr438Asn in BCKDHA and p.Ala137Val in BCKDHB gene. Interestingly, we identified seven novel genetic variants: p.Leu549Pro, p.Glu564*, p.Leu641Pro in MUT, p.Tyr206Cys in PCCB, p.His194Arg, p.Val298Met in BCKDHA and p.Glu286_Met290del in BCKDHB gene. In silico and/or eukaryotic expression studies confirmed pathogenic effect of all novel genetic variants. Aberrant enzymes p.Leu549Pro MUT, p.Leu641Pro MUT and p.Tyr206Cys PCCB did not show residual activity in activity assays. In addition, activity of MUT enzymes was not rescued in the presence of vitamin B12 precursor in vitro which was in accordance with non-responsiveness or partial responsiveness of patients to vitamin B12 therapy. Our study brings the first molecular genetic data and detailed phenotypic characteristics for MMA, PA and MSUD patients for Serbia and the whole South-Eastern European region. Therefore, our study contributes to the better understanding of molecular landscape of BCOA in Europe and to general knowledge on genotype–phenotype correlation for these rare diseases. © 2016 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd
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    Publication
    Molecular and phenotypic characteristics of seven novel mutations causing branched-chain organic acidurias
    (2016)
    Stojiljkovic, M. (35095552600)
    ;
    Klaassen, K. (54959837700)
    ;
    Djordjevic, M. (7102319301)
    ;
    Sarajlija, A. (26027638400)
    ;
    Brasil, S. (49660918100)
    ;
    Kecman, B. (23034935300)
    ;
    Grkovic, S. (8710432500)
    ;
    Kostic, J. (57159483500)
    ;
    Rodriguez-Pombo, P. (6602708464)
    ;
    Desviat, L.R. (7003747320)
    ;
    Pavlovic, S. (7006514877)
    ;
    Perez, B. (7101818958)
    Specific mitochondrial enzymatic deficiencies in the catabolism of branched-chain amino acids cause methylmalonic aciduria (MMA), propionic acidemia (PA) and maple syrup urine disease (MSUD). Disease-causing mutations were identified in nine unrelated branched-chain organic acidurias (BCOA) patients. We detected eight previously described mutations: p.Asn219Tyr, p.Arg369His p.Val553Glyfs*17 in MUT, p.Thr198Serfs*6 in MMAA, p.Ile144_Leu181del in PCCB, p.Gly288Valfs*11, p.Tyr438Asn in BCKDHA and p.Ala137Val in BCKDHB gene. Interestingly, we identified seven novel genetic variants: p.Leu549Pro, p.Glu564*, p.Leu641Pro in MUT, p.Tyr206Cys in PCCB, p.His194Arg, p.Val298Met in BCKDHA and p.Glu286_Met290del in BCKDHB gene. In silico and/or eukaryotic expression studies confirmed pathogenic effect of all novel genetic variants. Aberrant enzymes p.Leu549Pro MUT, p.Leu641Pro MUT and p.Tyr206Cys PCCB did not show residual activity in activity assays. In addition, activity of MUT enzymes was not rescued in the presence of vitamin B12 precursor in vitro which was in accordance with non-responsiveness or partial responsiveness of patients to vitamin B12 therapy. Our study brings the first molecular genetic data and detailed phenotypic characteristics for MMA, PA and MSUD patients for Serbia and the whole South-Eastern European region. Therefore, our study contributes to the better understanding of molecular landscape of BCOA in Europe and to general knowledge on genotype–phenotype correlation for these rare diseases. © 2016 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd
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    Publication
    Molecular genetic study of congenital adrenal hyperplasia in Serbia: Novel p.Leu129Pro and p.Ser165Pro CYP21A2 gene mutations
    (2015)
    Milacic, I. (35778635400)
    ;
    Barac, M. (55532782700)
    ;
    Milenkovic, T. (55889872600)
    ;
    Ugrin, M. (56554098500)
    ;
    Klaassen, K. (54959837700)
    ;
    Skakic, A. (57095918200)
    ;
    Jesic, M. (24073164000)
    ;
    Joksic, I. (14054233100)
    ;
    Mitrovic, K. (23498072800)
    ;
    Todorovic, S. (55311644500)
    ;
    Vujovic, S. (57225380338)
    ;
    Pavlovic, S. (7006514877)
    ;
    Stojiljkovic, M. (35095552600)
    Purpose: Congenital adrenal hyperplasia (CAH) is an autosomal recessive disease characterized by impaired adrenal steroidogenesis and most often caused by CYP21A2 gene mutations. For the first time, we reported complete spectrum and frequency of CYP21A2 gene mutations in 61 unrelated patients with classical and non-classical CAH from Serbia. Methods: Direct DNA sequencing of whole CYP21A2 gene and polymerase chain reaction with sequence-specific primers for detection of CYP21A1P/CYP21A2 chimeras were combined. Results: We identified 18 different pathogenic alleles - two of them novel. Mutation detection rate was highest in patients with salt-wasting form of CAH (94.7 %). The most prevalent mutation was intron 2 splice site mutation, c.290-13A/C>G (18.5 %). Other mutation frequencies were: CYP21A1P/CYP21A2 chimeras (13 %), p.P30L (13 %), p.R356W (11.1 %), p.G110fs (7.4 %), p.Q318X (4.6 %), p.V281L (4.6 %), p.I172N (2.8 %), p.L307fs (2.8 %), p.P453S (1.9 %), etc. Mainly, frequencies were similar to those in Slavic populations and bordering countries. However, we found 6.5 % of alleles with multiple mutations, frequently including p.P453S. Effects of novel mutations, c.386T>C (p.Leu129Pro) and c.493T>C (p.Ser165Pro), were characterized in silico as deleterious. The effect of well-known mutations on Serbian patients' phenotype was as expected. Conclusions: The first comprehensive molecular genetic study of Serbian CAH patients revealed two novel CYP21A2 mutations. This study will enable genetic counseling in our population and contribute to better understanding of molecular landscape of CAH in Europe. © 2015 Italian Society of Endocrinology (SIE).
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    Publication
    Molecular genetic study of congenital adrenal hyperplasia in Serbia: Novel p.Leu129Pro and p.Ser165Pro CYP21A2 gene mutations
    (2015)
    Milacic, I. (35778635400)
    ;
    Barac, M. (55532782700)
    ;
    Milenkovic, T. (55889872600)
    ;
    Ugrin, M. (56554098500)
    ;
    Klaassen, K. (54959837700)
    ;
    Skakic, A. (57095918200)
    ;
    Jesic, M. (24073164000)
    ;
    Joksic, I. (14054233100)
    ;
    Mitrovic, K. (23498072800)
    ;
    Todorovic, S. (55311644500)
    ;
    Vujovic, S. (57225380338)
    ;
    Pavlovic, S. (7006514877)
    ;
    Stojiljkovic, M. (35095552600)
    Purpose: Congenital adrenal hyperplasia (CAH) is an autosomal recessive disease characterized by impaired adrenal steroidogenesis and most often caused by CYP21A2 gene mutations. For the first time, we reported complete spectrum and frequency of CYP21A2 gene mutations in 61 unrelated patients with classical and non-classical CAH from Serbia. Methods: Direct DNA sequencing of whole CYP21A2 gene and polymerase chain reaction with sequence-specific primers for detection of CYP21A1P/CYP21A2 chimeras were combined. Results: We identified 18 different pathogenic alleles - two of them novel. Mutation detection rate was highest in patients with salt-wasting form of CAH (94.7 %). The most prevalent mutation was intron 2 splice site mutation, c.290-13A/C>G (18.5 %). Other mutation frequencies were: CYP21A1P/CYP21A2 chimeras (13 %), p.P30L (13 %), p.R356W (11.1 %), p.G110fs (7.4 %), p.Q318X (4.6 %), p.V281L (4.6 %), p.I172N (2.8 %), p.L307fs (2.8 %), p.P453S (1.9 %), etc. Mainly, frequencies were similar to those in Slavic populations and bordering countries. However, we found 6.5 % of alleles with multiple mutations, frequently including p.P453S. Effects of novel mutations, c.386T>C (p.Leu129Pro) and c.493T>C (p.Ser165Pro), were characterized in silico as deleterious. The effect of well-known mutations on Serbian patients' phenotype was as expected. Conclusions: The first comprehensive molecular genetic study of Serbian CAH patients revealed two novel CYP21A2 mutations. This study will enable genetic counseling in our population and contribute to better understanding of molecular landscape of CAH in Europe. © 2015 Italian Society of Endocrinology (SIE).
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    Novel telomerase reverse transcriptase gene mutation in a family with aplastic anaemia
    (2024)
    Virijevic, M. (36969618100)
    ;
    Marjanovic, I. (57189225697)
    ;
    Andjelkovic, M. (57197728167)
    ;
    Jakovic, Lj (21742748500)
    ;
    Micic, D. (37861889200)
    ;
    Bogdanovic, A. (6603686934)
    ;
    Pavlovic, S. (7006514877)
    Telomerase Reverse Transcriptase (TERT) encodes the telomerase reverse transcriptase enzyme and is the most frequently mutated gene in patients with telomeropathies. Heterozygous variants impair telomerase activity by haploinsufficiency and pathogenic variants are associated with bone marrow failure syndrome and predisposition to acute myeloid leukaemia. Owing to their rarity, telomeropathies are often unrecognised and misdiagnosed. Herein, we report a novel TERT gene variant, c.2605G > A p.(Asp869Asn) in a family with hereditary aplastic anaemia. This report emphasises the importance of routine deep genetic screening for rare TERT variants in patients with a family history of cytopenia or aplastic anaemia, which could identify clinically inapparent telomere disorders. © The Author(s), under exclusive licence to Springer Nature B.V. 2024.
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    Novel telomerase reverse transcriptase gene mutation in a family with aplastic anaemia
    (2024)
    Virijevic, M. (36969618100)
    ;
    Marjanovic, I. (57189225697)
    ;
    Andjelkovic, M. (57197728167)
    ;
    Jakovic, Lj (21742748500)
    ;
    Micic, D. (37861889200)
    ;
    Bogdanovic, A. (6603686934)
    ;
    Pavlovic, S. (7006514877)
    Telomerase Reverse Transcriptase (TERT) encodes the telomerase reverse transcriptase enzyme and is the most frequently mutated gene in patients with telomeropathies. Heterozygous variants impair telomerase activity by haploinsufficiency and pathogenic variants are associated with bone marrow failure syndrome and predisposition to acute myeloid leukaemia. Owing to their rarity, telomeropathies are often unrecognised and misdiagnosed. Herein, we report a novel TERT gene variant, c.2605G > A p.(Asp869Asn) in a family with hereditary aplastic anaemia. This report emphasises the importance of routine deep genetic screening for rare TERT variants in patients with a family history of cytopenia or aplastic anaemia, which could identify clinically inapparent telomere disorders. © The Author(s), under exclusive licence to Springer Nature B.V. 2024.
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    UGT1A1 (TA)n promoter genotype: Diagnostic and population pharmacogenetic marker in Serbia
    (2018)
    Vukovic, M. (57201985678)
    ;
    Radlovic, N. (24169188700)
    ;
    Lekovic, Z. (8319022100)
    ;
    Vucicevic, K. (55696361600)
    ;
    Maric, N. (57204159290)
    ;
    Kotur, N. (54961068500)
    ;
    Gasic, V. (57095898600)
    ;
    Ugrin, M. (56554098500)
    ;
    Stojiljkovic, M. (35095552600)
    ;
    Dokmanovic, L. (15729287100)
    ;
    Zukic, B. (26030757000)
    ;
    Pavlovic, S. (7006514877)
    The UGT1A1 enzyme is involved in the metabolism of bilirubin and numerous medications. Unconjugated hyperbilirubinemia, commonly presented as Gilbert syndrome (GS), is a result of decreased activity of the UGT1A1 enzyme, variable number of TA repeats in the promoter of the UGT1A1 gene affects enzyme activity. Seven and eight TA repeats cause a decrease of UGT1A1 activity and risk GS alleles, while six TA repeats contribute to normal UGT1A1 activity and non-risk GS allele. Also, the UGT1A1 (TA)n promoter genotype is recognized as a clinically relevant pharmacogenetic marker. The aim of this study was to assess diagnostic value of UGT1A1 (TA)n promoter genotyping in pediatric GS patients. Correlation of the UGT1A1 (TA)n genotypes and level of unconjugated bilirubin at diagnosis and after hypocaloric and phenobarbitone tests in these patients was analyzed. Another aim of the study was to assess pharmacogenetic potential of UGT1A1 (TA)n variants in Serbia. Fifty-one pediatric GS patients and 100 healthy individuals were genotyped using different methodologies, polymerase chain reaction (PCR) followed by acrylamide electrophoresis, fragment length analysis and/or DNA sequencing. Concordance of the UGT1A1 (TA)n promoter risk GS genotypes with GS was found in 80.0% of patients. Therefore, UGT1A1 (TA)n promoter genotyping is not a reliable genetic test for GS, but it is useful for differential diagnosis of diseases associated with hyperbilirubinemia. Level of bilirubin in pediatric GS patients at diagnosis was UGT1A1 (TA)n promoter genotype-dependent. We found that the frequency of pharmacogenetic relevant UGT1A1 (TA)n promoter genotypes was 63.0%, pointing out that UGT1A1 (TA)n promoter genotyping could be recommended for preemptive pharmacogenetic testing in Serbia. © 2018 Vukovic M, Radlovic N, Lekovic Z, Vucicevic K, Maric N, Kotur N, Gasic V, Ugrin M, Stojiljkovic M, Dokmanovic L, Zukic B, Pavlovic S, published by Sciendo.
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    UGT1A1 (TA)n promoter genotype: Diagnostic and population pharmacogenetic marker in Serbia
    (2018)
    Vukovic, M. (57201985678)
    ;
    Radlovic, N. (24169188700)
    ;
    Lekovic, Z. (8319022100)
    ;
    Vucicevic, K. (55696361600)
    ;
    Maric, N. (57204159290)
    ;
    Kotur, N. (54961068500)
    ;
    Gasic, V. (57095898600)
    ;
    Ugrin, M. (56554098500)
    ;
    Stojiljkovic, M. (35095552600)
    ;
    Dokmanovic, L. (15729287100)
    ;
    Zukic, B. (26030757000)
    ;
    Pavlovic, S. (7006514877)
    The UGT1A1 enzyme is involved in the metabolism of bilirubin and numerous medications. Unconjugated hyperbilirubinemia, commonly presented as Gilbert syndrome (GS), is a result of decreased activity of the UGT1A1 enzyme, variable number of TA repeats in the promoter of the UGT1A1 gene affects enzyme activity. Seven and eight TA repeats cause a decrease of UGT1A1 activity and risk GS alleles, while six TA repeats contribute to normal UGT1A1 activity and non-risk GS allele. Also, the UGT1A1 (TA)n promoter genotype is recognized as a clinically relevant pharmacogenetic marker. The aim of this study was to assess diagnostic value of UGT1A1 (TA)n promoter genotyping in pediatric GS patients. Correlation of the UGT1A1 (TA)n genotypes and level of unconjugated bilirubin at diagnosis and after hypocaloric and phenobarbitone tests in these patients was analyzed. Another aim of the study was to assess pharmacogenetic potential of UGT1A1 (TA)n variants in Serbia. Fifty-one pediatric GS patients and 100 healthy individuals were genotyped using different methodologies, polymerase chain reaction (PCR) followed by acrylamide electrophoresis, fragment length analysis and/or DNA sequencing. Concordance of the UGT1A1 (TA)n promoter risk GS genotypes with GS was found in 80.0% of patients. Therefore, UGT1A1 (TA)n promoter genotyping is not a reliable genetic test for GS, but it is useful for differential diagnosis of diseases associated with hyperbilirubinemia. Level of bilirubin in pediatric GS patients at diagnosis was UGT1A1 (TA)n promoter genotype-dependent. We found that the frequency of pharmacogenetic relevant UGT1A1 (TA)n promoter genotypes was 63.0%, pointing out that UGT1A1 (TA)n promoter genotyping could be recommended for preemptive pharmacogenetic testing in Serbia. © 2018 Vukovic M, Radlovic N, Lekovic Z, Vucicevic K, Maric N, Kotur N, Gasic V, Ugrin M, Stojiljkovic M, Dokmanovic L, Zukic B, Pavlovic S, published by Sciendo.

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