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Published in: Metabolic Brain Disease 2/2019

01-04-2019 | Biomarkers | Original Article

A possible biomarker of neurocytolysis in infantile gangliosidoses: aspartate transaminase

Authors: Mustafa Kılıç, Çiğdem Seher Kasapkara, Sebile Kılavuz, Neslihan Önenli Mungan, Gürsel Biberoğlu

Published in: Metabolic Brain Disease | Issue 2/2019

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Abstract

Gangliosidoses (GM1 and GM2 gangliosidosis) are rare, autosomal recessive progressive neurodegenerative lysosomal storage disorders caused by defects in the degradation of glycosphingolipids. We aimed to investigate clinical, biochemical and molecular genetic spectrum of Turkish patients with infantile gangliosidoses and examined the potential role of serum aspartate transaminase levels as a biomarker. We confirmed the diagnosis of GM1 and GM2 gangliosidosis based on clinical findings with specific enzyme and/or molecular analyses. We retrospectively reviewed serum aspartate transaminase levels of patients with other biochemical parameters. Serum aspartate transaminase level was elevated in all GM1 and GM2 gangliosidosis patients in whom the test was performed, along with normal alanine transaminase. Aspartate transaminase can be a biochemical diagnostic clue for infantile gangliosidoses. It might be a simple but important biomarker for diagnosis, follow up, prognosis and monitoring of the response for the future therapies in these patients.
Literature
go back to reference Aronson SM, Saifer A, Kanof A, Volk BW (1958) Progression of amaurotic family idiocy as reflected by serum and cerebrospinal fluid changes. Am J Med 24:390–401CrossRefPubMed Aronson SM, Saifer A, Kanof A, Volk BW (1958) Progression of amaurotic family idiocy as reflected by serum and cerebrospinal fluid changes. Am J Med 24:390–401CrossRefPubMed
go back to reference Aronson SM, Saifer A, Perle G, Volk BW (1961) Studies on enzyme alterations in the infantile sphingolipidoses. Correlation with pathological changes. Am J Clin Nutr 9:103CrossRefPubMed Aronson SM, Saifer A, Perle G, Volk BW (1961) Studies on enzyme alterations in the infantile sphingolipidoses. Correlation with pathological changes. Am J Clin Nutr 9:103CrossRefPubMed
go back to reference Bradbury AM, Gray-Edwards HL, Shirley JL, McCurdy VJ, Colaco AN, Randle AN, Christopherson PW, Bird AC, Johnson AK, Wilson DU, Hudson JA, de Pompa NL, Sorjonen DC, Brunson BL, Jeyakumar M, Platt FM, Baker HJ, Cox NR, Sena-Esteves M, Martin DR (2015) Biomarkers for disease progression and AAV therapeutic efficacy in feline Sandhoff disease. Exp Neurol 263:102–112. https://doi.org/10.1016/j.expneurol.2014.09.020 CrossRefPubMed Bradbury AM, Gray-Edwards HL, Shirley JL, McCurdy VJ, Colaco AN, Randle AN, Christopherson PW, Bird AC, Johnson AK, Wilson DU, Hudson JA, de Pompa NL, Sorjonen DC, Brunson BL, Jeyakumar M, Platt FM, Baker HJ, Cox NR, Sena-Esteves M, Martin DR (2015) Biomarkers for disease progression and AAV therapeutic efficacy in feline Sandhoff disease. Exp Neurol 263:102–112. https://​doi.​org/​10.​1016/​j.​expneurol.​2014.​09.​020 CrossRefPubMed
go back to reference Gray-Edwards HL, Regier DS, Shirley JL, Randle AN, Salibi N, Thomas SE, Latour YL, Johnston J, Golas G, Maguire AS, Taylor AR, Sorjonen DC, McCurdy VJ, Christopherson PW, Bradbury AM, Beyers RJ, Johnson AK, Brunson BL, Cox NR, Baker HJ, Denney TS, Sena-Esteves M, Tifft CJ, Martin DR (2017a) Novel biomarkers of human GM1 Gangliosidosis reflect the clinical efficacy of gene therapy in a feline model. Mol Ther 25:892–903. https://doi.org/10.1016/j.ymthe.2017.01.009 CrossRefPubMedPubMedCentral Gray-Edwards HL, Regier DS, Shirley JL, Randle AN, Salibi N, Thomas SE, Latour YL, Johnston J, Golas G, Maguire AS, Taylor AR, Sorjonen DC, McCurdy VJ, Christopherson PW, Bradbury AM, Beyers RJ, Johnson AK, Brunson BL, Cox NR, Baker HJ, Denney TS, Sena-Esteves M, Tifft CJ, Martin DR (2017a) Novel biomarkers of human GM1 Gangliosidosis reflect the clinical efficacy of gene therapy in a feline model. Mol Ther 25:892–903. https://​doi.​org/​10.​1016/​j.​ymthe.​2017.​01.​009 CrossRefPubMedPubMedCentral
go back to reference Gray-Edwards HL, Randle AN, Maitland SA, Benatti HR, Hubbard SM, Canning PF, Vogel MB, Brunson BL, Hwang M, Ellis LE, Bradbury AM, Gentry AS, Taylor AR, Wooldridge AA, Wilhite DR, Winter RL, Whitlock BK, Johnson JA, Holland M, Salibi N, Beyers RJ, Sartin JL, Denney TS, Cox NR, Sena-Esteves M, Martin DR (2018) Adeno-associated virus gene therapy in a sheep model of Tay-Sachs disease. Hum Gene Ther 29:312–326. https://doi.org/10.1089/hum.2017.163 CrossRefPubMed Gray-Edwards HL, Randle AN, Maitland SA, Benatti HR, Hubbard SM, Canning PF, Vogel MB, Brunson BL, Hwang M, Ellis LE, Bradbury AM, Gentry AS, Taylor AR, Wooldridge AA, Wilhite DR, Winter RL, Whitlock BK, Johnson JA, Holland M, Salibi N, Beyers RJ, Sartin JL, Denney TS, Cox NR, Sena-Esteves M, Martin DR (2018) Adeno-associated virus gene therapy in a sheep model of Tay-Sachs disease. Hum Gene Ther 29:312–326. https://​doi.​org/​10.​1089/​hum.​2017.​163 CrossRefPubMed
go back to reference Kresse H, Fuchs W, Glössl J, Holtfrerich D, Gilberg W (1981) Liberation of N-acetylglucosamine-6-sulfate by human beta-N-acetylhexosaminidase a. J Biol Chem 256:12926–12932PubMed Kresse H, Fuchs W, Glössl J, Holtfrerich D, Gilberg W (1981) Liberation of N-acetylglucosamine-6-sulfate by human beta-N-acetylhexosaminidase a. J Biol Chem 256:12926–12932PubMed
go back to reference Lee JS, Choi JM, Lee M, Kim SY, Lee S, Lim BC, Cheon JE, Kim IO, Kim KJ, Choi M, Seong MW, Chae JH (2018) Diagnostic challenge for the rare lysosomal storage disease: late infantile GM1 gangliosidosis. Brain Dev 40:383–390CrossRefPubMed Lee JS, Choi JM, Lee M, Kim SY, Lee S, Lim BC, Cheon JE, Kim IO, Kim KJ, Choi M, Seong MW, Chae JH (2018) Diagnostic challenge for the rare lysosomal storage disease: late infantile GM1 gangliosidosis. Brain Dev 40:383–390CrossRefPubMed
go back to reference Lending M, Slobody LB, Stone MD, Hosback RE, Mestem J (1959) Activity of glutamic oxalacetic transaminase and lactic dehydrogenase in cerebrospinal fluid and plasma of normal and abnormal newborn infants. Pediatrics 24:378PubMed Lending M, Slobody LB, Stone MD, Hosback RE, Mestem J (1959) Activity of glutamic oxalacetic transaminase and lactic dehydrogenase in cerebrospinal fluid and plasma of normal and abnormal newborn infants. Pediatrics 24:378PubMed
go back to reference Satoh H, Yamato O, Asano T, Yonemura M, Yamauchi T, Hasegawa D, Orima H, Arai T, Yamasaki M, Maede Y (2007) Cerebrospinal fluid biomarkers showing neurodegeneration in dogs with GM1 gangliosidosis: possible use for assessment of a therapeutic regimen. Brain Res 1133:200–208CrossRefPubMed Satoh H, Yamato O, Asano T, Yonemura M, Yamauchi T, Hasegawa D, Orima H, Arai T, Yamasaki M, Maede Y (2007) Cerebrospinal fluid biomarkers showing neurodegeneration in dogs with GM1 gangliosidosis: possible use for assessment of a therapeutic regimen. Brain Res 1133:200–208CrossRefPubMed
go back to reference Schneck L, Maisel J, Volk BW (1964) The startle response and serum enzyme profile in early detectıon of Tay-Sachs' disease. J Pediatr 65:749–756CrossRefPubMed Schneck L, Maisel J, Volk BW (1964) The startle response and serum enzyme profile in early detectıon of Tay-Sachs' disease. J Pediatr 65:749–756CrossRefPubMed
go back to reference Vanier MT, Caillaud C, Levade T (2016) Sphingolipidosis. In: Saudubray JM, Baumgartner MR, Walter J (eds) Inborn metabolic diseases, diagnosis and treatment, 6 th edn. Springer, Berlin, Heidelberg, pp 556–566 Vanier MT, Caillaud C, Levade T (2016) Sphingolipidosis. In: Saudubray JM, Baumgartner MR, Walter J (eds) Inborn metabolic diseases, diagnosis and treatment, 6 th edn. Springer, Berlin, Heidelberg, pp 556–566
go back to reference Volk BW, Aronson SM, Saifer A (1964) Fructose-1 phosphate aldolase deficiency in Tay-Sachs disease. Am J Med 36:481–484CrossRefPubMed Volk BW, Aronson SM, Saifer A (1964) Fructose-1 phosphate aldolase deficiency in Tay-Sachs disease. Am J Med 36:481–484CrossRefPubMed
go back to reference Wenger DA, Williams C (1991) Screening for lysosomal disorders. In: Hommes FA, editor. Techniques in diagnostic human biochemical genetics: a laboratory manual. New York, NY: Wiley-Liss, pp587–617. Wenger DA, Williams C (1991) Screening for lysosomal disorders. In: Hommes FA, editor. Techniques in diagnostic human biochemical genetics: a laboratory manual. New York, NY: Wiley-Liss, pp587–617.
go back to reference Yamato O, Satoh H, Matsuki N, Ono K, Yamasaki M, Maade Y (2004) Laboratory diagnosis of canine GM2-gangliosidosis using blood and cerebrospinal fluid. J Vet Diagn Investig 16:39–44CrossRef Yamato O, Satoh H, Matsuki N, Ono K, Yamasaki M, Maade Y (2004) Laboratory diagnosis of canine GM2-gangliosidosis using blood and cerebrospinal fluid. J Vet Diagn Investig 16:39–44CrossRef
Metadata
Title
A possible biomarker of neurocytolysis in infantile gangliosidoses: aspartate transaminase
Authors
Mustafa Kılıç
Çiğdem Seher Kasapkara
Sebile Kılavuz
Neslihan Önenli Mungan
Gürsel Biberoğlu
Publication date
01-04-2019
Publisher
Springer US
Keyword
Biomarkers
Published in
Metabolic Brain Disease / Issue 2/2019
Print ISSN: 0885-7490
Electronic ISSN: 1573-7365
DOI
https://doi.org/10.1007/s11011-019-0391-y

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