Literature DB >> 29995202

The Second Case of Saposin A Deficiency and Altered Autophagy.

Melis Kose1, Secil Akyildiz Demir2, Gulcin Akinci3, Cenk Eraslan4, Unsal Yilmaz3, Serdar Ceylaner5, Eser Sozmen Yildirim6, Volkan Seyrantepe2.   

Abstract

Krabbe disease is a lysosomal storage disease caused by galactosylceramidase deficiency, resulting in neurodegeneration with a rapid clinical downhill course within the first months of life in the classic infantile form. This process may be triggered by the accumulation of galactosylceramide (GalCer) in nervous tissues. Both the enzyme galactosylceramidase and its in vivo activator molecule, saposin A, are essential during GalCer degradation. A clinical manifestation almost identical to Krabbe disease is observed when, instead of the galactosylceramidase protein, the saposin A molecule is defective. Saposin A results from posttranslational processing of the precursor molecule, prosaposin, encoded by the PSAP gene. Clinical and neuroimaging findings in a 7-month-old child strongly suggested Krabbe disease, but this condition was excluded by enzymatic and genetic testing. However, at whole exome sequencing, the previously undescribed homozygous, obviously pathogenic PSAP gene NM_002778.3:c.209T>G(p.Val70Gly) variant was determined in the saposin A domain of the PSAP gene. Fibroblast studies showed GalCer accumulation and the activation of autophagy for the first time in a case of human saposin A deficiency. Our patient represents the second known case in the literature and provides new information concerning the pathophysiology of saposin A deficiency and its intralysosomal effects.

Entities:  

Year:  2018        PMID: 29995202      PMCID: PMC6323030          DOI: 10.1007/8904_2018_114

Source DB:  PubMed          Journal:  JIMD Rep        ISSN: 2192-8304


  25 in total

1.  Characterization of the CLEAR network reveals an integrated control of cellular clearance pathways.

Authors:  Michela Palmieri; Soren Impey; Hyojin Kang; Alberto di Ronza; Carl Pelz; Marco Sardiello; Andrea Ballabio
Journal:  Hum Mol Genet       Date:  2011-07-13       Impact factor: 6.150

Review 2.  Principles of lysosomal membrane digestion: stimulation of sphingolipid degradation by sphingolipid activator proteins and anionic lysosomal lipids.

Authors:  Thomas Kolter; Konrad Sandhoff
Journal:  Annu Rev Cell Dev Biol       Date:  2005       Impact factor: 13.827

Review 3.  Neuronal sphingolipidoses: Membrane lipids and sphingolipid activator proteins regulate lysosomal sphingolipid catabolism.

Authors:  Konrad Sandhoff
Journal:  Biochimie       Date:  2016-05-05       Impact factor: 4.079

4.  Residual galactosylsphingosine (psychosine) beta-galactosidase activities and associated GALC mutations in late and very late onset Krabbe disease.

Authors:  Klaus Harzer; Rupert Knoblich; Arndt Rolfs; Peter Bauer; Jürgen Eggers
Journal:  Clin Chim Acta       Date:  2002-03       Impact factor: 3.786

5.  Lysosomal storage disorder 4+1 multiplex assay for newborn screening using tandem mass spectrometry: application to a small-scale population study for five lysosomal storage disorders.

Authors:  Joseph J Orsini; Monica M Martin; Amanda L Showers; Olaf A Bodamer; X Kate Zhang; Michael H Gelb; Michele Caggana
Journal:  Clin Chim Acta       Date:  2012-04-21       Impact factor: 3.786

Review 6.  Autophagy, lipophagy and lysosomal lipid storage disorders.

Authors:  Carl Ward; Nuria Martinez-Lopez; Elsje G Otten; Bernadette Carroll; Dorothea Maetzel; Rajat Singh; Sovan Sarkar; Viktor I Korolchuk
Journal:  Biochim Biophys Acta       Date:  2016-01-14

7.  Saposin C is required for normal resistance of acid beta-glucosidase to proteolytic degradation.

Authors:  Ying Sun; Xiaoyang Qi; Gregory A Grabowski
Journal:  J Biol Chem       Date:  2003-06-17       Impact factor: 5.157

8.  Prosaposin deficiency: further characterization of the sphingolipid activator protein-deficient sibs. Multiple glycolipid elevations (including lactosylceramidosis), partial enzyme deficiencies and ultrastructure of the skin in this generalized sphingolipid storage disease.

Authors:  V Bradová; F Smíd; B Ulrich-Bott; W Roggendorf; B C Paton; K Harzer
Journal:  Hum Genet       Date:  1993-09       Impact factor: 4.132

9.  Altered autophagy in the mice with a deficiency of saposin A and saposin B.

Authors:  Ying Sun; Gregory A Grabowski
Journal:  Autophagy       Date:  2013-05-06       Impact factor: 16.016

Review 10.  Dysregulation of autophagy as a common mechanism in lysosomal storage diseases.

Authors:  Elena Seranova; Kyle J Connolly; Malgorzata Zatyka; Tatiana R Rosenstock; Timothy Barrett; Richard I Tuxworth; Sovan Sarkar
Journal:  Essays Biochem       Date:  2017-12-12       Impact factor: 8.000

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  2 in total

1.  Rare Diseases in Glycosphingolipid Metabolism.

Authors:  Hongwen Zhou; Zhoulu Wu; Yiwen Wang; Qinyi Wu; Moran Hu; Shuai Ma; Min Zhou; Yan Sun; Baowen Yu; Jingya Ye; Wanzi Jiang; Zhenzhen Fu; Yingyun Gong
Journal:  Adv Exp Med Biol       Date:  2022       Impact factor: 2.622

2.  Chronic lithium administration in a mouse model for Krabbe disease.

Authors:  Ambra Del Grosso; Gabriele Parlanti; Lucia Angella; Nadia Giordano; Ilaria Tonazzini; Elisa Ottalagana; Sara Carpi; Roberto Maria Pellegrino; Husam B R Alabed; Carla Emiliani; Matteo Caleo; Marco Cecchini
Journal:  JIMD Rep       Date:  2021-11-12
  2 in total

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