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Svasti, J.

Publications and source records attributed to Svasti, J..

2 recordsLinked to original sources

AN INTEGRATIVE APPROACH DISCOVERS A NOVEL ANTI-LEUKEMIC PEPTIDE FROM HUMAN MILK

Chemotherapy in childhood leukemia is associated with late morbidity in leukemic survivors, while certain patient subsets are relatively resistant to standard chemotherapy. It is therefore important to identify new agents with sensitivity and selectivity towards leukemic cells, while having less systemic toxicity. Peptide-based therapeutics has gained much attention during the last few years. Here, we used an integrative workflow combining mass spectrometric peptide library construction, in silico anticancer peptide screening, and in vitro leukemic cell studies to discover a novel anti-leukemic peptide having 3+charges and alpha-helical structure, namely HMP-S7, from human breast milk. HMP-S7 showed cytotoxic activity against four distinct leukemic cell lines in a dose-dependent manner but had no effect on solid malignancies or representative normal cells. HMP-S7 induced leukemic cell death by penetrating the plasma membrane to enter the cytoplasm and cause leakage of lactate dehydrogenase, thus acting in a membranolytic manner. Importantly, HMP-S7 exhibited anti-leukemic effect against patient-derived leukemic cells ex vivo. In conclusion, HMP-S7 is a selective anti-leukemic peptide with promise which requires further validation in preclinical and clinical studies. TeaserIn silico screening of naturally occurring human milk peptides discovers a new anticancer peptide that kills leukemic cells in vitro and ex vivo.

pharmacology and toxicology

Effect of expression of human glucosylceramidase 2 isoforms on lipid profiles in COS-7 cells

Glucosylceramide (GlcCer) is a major membrane lipid and the precursor of gangliosides. It is continuously formed and degraded in glycosphingolipid metabolism. GlcCer is mainly degraded by two enzymes, lysosomal acid β-glucosidase (GBA) and nonlysosomal β-glucosidase (GBA2). Deficiencies of GBA and GBA2 affect glycosphingolipid metabolism, resulting in neurological diseases, such as Gaucher Disease and Hereditary Spastic Paraplegia. To understand which GBA2 isoforms are active and how they affect glycosphingolipid levels in cells, we expressed nine human GBA2 isoforms in COS-7 cells, confirmed their expression by qRT-PCR and western blotting, and assayed their activity to hydrolyze 4-methylumbelliferyl-β-D-glucopyranoside (4MUG) in cell extracts. Human GBA2 isoform 1 showed high activity, while the other isoforms had activity similar to the background. Comparison of sphingolipid levels by ultra-high resolution/ accurate mass spectrometry (UHRAMS) analysis showed that isoform 1 overexpression increased ceramide and decreased hexosylceramide levels compared to control and other isoforms. Comparison of ratios of glucosylceramides to the corresponding ceramides in the extracts indicated that GBA2 isoform 1 has broad specificity for the lipid component of glucosylceramide. These studies suggest that only one GBA2 isoform 1 is active and affects sphingolipid levels in the cell, acting on glucosylceramides with a wide range of lipid components. Our study provides new insights into how increased breakdown of GlcCer affects cellular lipid metabolic networks.AbbreviationsCDaseceramidaseCerSceramide synthaseCerceramideCBEConduritol-β-epoxideDAG or DGdiacylglycerolERendoplasmic reticulumGSLglycosphingolipidGBA2glucosylceramidase 2GBAglucosylceramidaseGlcCerglucosylceramideGalCergalactosylceramideHexCerhexosylceramideHexCer(d18: 1/16: 0)hexosylceramide with a C18 sphingosine (d18: 1) and N-acyl group (16: 0)MGmonoacylglycerolLPCLysophosphatidylcholineLPELysophosphatidylethanolaminePAPhosphatidic acidPCphosphatidylcholinePEphosphatidylethanolaminePGPhosphatidylglycerolPIphosphatidylinositolPSphosphatidylserineSLsphingolipidSMsphingomyelinSMasesphingomyelinaseSMSsphingomyelin synthaseSphsphingosineSPTserine palmitoyltransferaseS1Psphingosine-1-phosphate4MUG4-Methylumbelliferyl-β-D-glucopyranosideTGtriacylglycerolView Full Text

biochemistry