Literature DB >> 10702281

Uncoupling ceramide glycosylation by transfection of glucosylceramide synthase antisense reverses adriamycin resistance.

Y Y Liu1, T Y Han, A E Giuliano, N Hansen, M C Cabot.   

Abstract

Previous work from our laboratory demonstrated that increased competence to glycosylate ceramide conferred adriamycin resistance in MCF-7 breast cancer cells (Liu, Y. Y., Han, T. Y., Giuliano, A. E. , and M. C. Cabot. (1999) J. Biol. Chem. 274, 1140-1146). This was achieved by cellular transfection with glucosylceramide synthase (GCS), the enzyme that converts ceramide to glucosylceramide. With this, we hypothesized that a decrease in cellular ceramide glycosylation would result in heightened drug sensitivity and reverse adriamycin resistance. To down-regulate ceramide glycosylation potential, we transfected adriamycin-resistant breast cancer cells (MCF-7-AdrR) with GCS antisense (asGCS), using a pcDNA 3.1/his A vector and developed a new cell line, MCF-7-AdrR/asGCS. Reverse transcription-polymerase chain reaction assay and Western blot analysis revealed marked decreases in both GCS mRNA and protein in MCF-7-AdrR/asGCS cells compared with the MCF-7-AdrR parental cells. MCF-7-AdrR/asGCS cells exhibited 30% less GCS activity by in vitro enzyme assay (19.7 +/- 1.1 versus 27.4 +/- 2.3 pmol GC/h/microg protein, p < 0.001) and were 28-fold more sensitive to adriamycin (EC(50), 0.44 +/- 0.01 versus 12.4 +/- 0.7 microM, p < 0. 0001). GCS antisense transfected cells were also 2.4-fold more sensitive to C(6)-ceramide compared with parental cells (EC(50) = 4. 0 +/- 0.03 versus 9.6 +/- 0.5 microM, p < 0.0005). Under adriamycin stress, GCS antisense transfected cells compared with parental cells displayed time- and dose-dependent increases in endogenous ceramide and dramatically higher levels of apoptotic effector, caspase-3. Western blotting showed that adriamycin sensitivity, introduced by asGCS gene transfection, was independent of P-glycoprotein and Bcl-2 expression. In summary, this work shows that transfection of GCS antisense tempers the expression of native GCS and restores cell sensitivity to adriamycin. Therefore, limiting the potential to glycosylate ceramide, which is an apoptotic signal in chemotherapy and radiotherapy, provides a promising approach to combat drug resistance.

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Year:  2000        PMID: 10702281     DOI: 10.1074/jbc.275.10.7138

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  34 in total

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Review 4.  Ceramide glycosylation catalyzed by glucosylceramide synthase and cancer drug resistance.

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Journal:  Adv Cancer Res       Date:  2013       Impact factor: 6.242

Review 5.  Novel Sphingolipid-Based Cancer Therapeutics in the Personalized Medicine Era.

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6.  Prognostic relevance of glucosylceramide synthase (GCS) expression in breast cancer.

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Journal:  J Cancer Res Clin Oncol       Date:  2008-06-17       Impact factor: 4.553

Review 7.  Glycosphingolipids and cell death.

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8.  A hypothesis concerning a potential involvement of ceramide in apoptosis and acantholysis induced by pemphigus autoantibodies.

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Journal:  Dermatol Res Pract       Date:  2010-05-18

9.  Glucosylceramide synthase upregulates MDR1 expression in the regulation of cancer drug resistance through cSrc and beta-catenin signaling.

Authors:  Yong-Yu Liu; Vineet Gupta; Gauri A Patwardhan; Kaustubh Bhinge; Yunfeng Zhao; Jianxiong Bao; Harihara Mehendale; Myles C Cabot; Yu-Teh Li; S Michal Jazwinski
Journal:  Mol Cancer       Date:  2010-06-11       Impact factor: 27.401

10.  A new mixed-backbone oligonucleotide against glucosylceramide synthase sensitizes multidrug-resistant tumors to apoptosis.

Authors:  Gauri A Patwardhan; Qian-Jin Zhang; Dongmei Yin; Vineet Gupta; Jianxiong Bao; Can E Senkal; Besim Ogretmen; Myles C Cabot; Girish V Shah; Paul W Sylvester; S Michal Jazwinski; Yong-Yu Liu
Journal:  PLoS One       Date:  2009-09-09       Impact factor: 3.240

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