Literature DB >> 10781797

Further studies on the reconstitution of glucosylceramidase activity by Sap C and anionic phospholipids.

R Salvioli1, M Tatti, F Ciaffoni, A M Vaccaro.   

Abstract

The reconstitution of the activity of the lysosomal enzyme glucosylceramidase requires anionic phospholipids and, at least, a protein factor, saposin C (Sap C). We have previously proposed a mechanism for the glucosylceramidase activation [Vaccaro et al. (1993) FEBS Lett. 336, 159-162] which implies that Sap C promotes the association of the enzyme with anionic phospholipid-containing membranes, thus favoring the contact between the enzyme and its lipid substrate, glucosylceramide. We have further investigated the properties of Sap C using a fluorescent hydrophobic probe such as 4, 4'-dianilino-1,1'-binaphthyl-5,5'-disulfonic acid (bis-ANS). The binding between bis-ANS and Sap C was pH-dependent, indicating that protonation leads to increased exposure of hydrophobic surfaces of Sap C. The interaction of Sap C with membranes, triggered by the development of hydrophobic properties at low pH values, was affected by the content of anionic phospholipids, such as phosphatidylserine or phosphatidylinositol, suggesting that anionic phospholipids have the potential to modulate the insertion of Sap C in the hydrophobic environment of lysosomal membranes. We previously showed that Sap C and anionic phospholipids are both required for the binding of glucosylceramidase to large vesicles. We have presently observed that Sap C is able to promote the association of glucosylceramidase with the lipid surface only when anionic phospholipids exceed a concentration of 5-10%. This level can be reached by summing lower amounts of individual anionic phospholipids, since they have additive effects. The present data extend and refine our model of the mechanism of glucosylceramidase activation and stress the key role of pH, Sap C and anionic phospholipids in promoting the interaction of the enzyme with membranes.

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Year:  2000        PMID: 10781797     DOI: 10.1016/s0014-5793(00)01417-4

Source DB:  PubMed          Journal:  FEBS Lett        ISSN: 0014-5793            Impact factor:   4.124


  7 in total

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2.  Crystal structures of saposins A and C.

Authors:  Victoria E Ahn; Paul Leyko; Jean-René Alattia; Lu Chen; Gilbert G Privé
Journal:  Protein Sci       Date:  2006-07-05       Impact factor: 6.725

3.  The N370S (Asn370-->Ser) mutation affects the capacity of glucosylceramidase to interact with anionic phospholipid-containing membranes and saposin C.

Authors:  Rosa Salvioli; Massimo Tatti; Susanna Scarpa; Sabrina Maria Moavero; Fiorella Ciaffoni; Federica Felicetti; Christine R Kaneski; Roscoe O Brady; Anna Maria Vaccaro
Journal:  Biochem J       Date:  2005-08-15       Impact factor: 3.857

4.  Glucocerebrosidase activity in Parkinson's disease with and without GBA mutations.

Authors:  Roy N Alcalay; Oren A Levy; Cheryl C Waters; Stanley Fahn; Blair Ford; Sheng-Han Kuo; Pietro Mazzoni; Michael W Pauciulo; William C Nichols; Ziv Gan-Or; Guy A Rouleau; Wendy K Chung; Pavlina Wolf; Petra Oliva; Joan Keutzer; Karen Marder; Xiaokui Zhang
Journal:  Brain       Date:  2015-06-27       Impact factor: 13.501

5.  Interaction of saposin D with membranes: effect of anionic phospholipids and sphingolipids.

Authors:  Fiorella Ciaffoni; Massimo Tatti; Rosa Salvioli; Anna Maria Vaccaro
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Review 6.  Biosynthesis and degradation of mammalian glycosphingolipids.

Authors:  Konrad Sandhoff; Thomas Kolter
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2003-05-29       Impact factor: 6.237

7.  Saposins utilize two strategies for lipid transfer and CD1 antigen presentation.

Authors:  Luis León; Raju V V Tatituri; Rosa Grenha; Ying Sun; Duarte C Barral; Adriaan J Minnaard; Veemal Bhowruth; Natacha Veerapen; Gurdyal S Besra; Anne Kasmar; Wei Peng; D Branch Moody; Gregory A Grabowski; Michael B Brenner
Journal:  Proc Natl Acad Sci U S A       Date:  2012-02-13       Impact factor: 11.205

  7 in total

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