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Functional properties of the IP3 receptor at membrane contact sit | 44430

Journal of Proteomics & Bioinformatics

ISSN - 0974-276X

+44 1223 790975

Functional properties of the IP3 receptor at membrane contact sites

14th International Conference on Structural Biology

September 24-26, 2018 | Berlin, Germany

Jan B Parys, Rita M La Rovere, Mart Bittremieux, Giovanni Monaco, Hristina Ivanova, Martijn Kerkhofs, Tamara Vervloessem and Geert Bultynck

KU Leuven, Belgium

Scientific Tracks Abstracts: J Proteomics Bioinform

Abstract :

The inositol 1, 4, 5-trisphosphate (IP3) receptors (IP3Rs) are ubiquitously expressed Ca2+ release channels of the endoplasmic reticulum (ER). The resulting Ca2+ signals are instrumental in the regulation of many intracellular processes. It is now becoming increasingly clear that contact sites between ER and mitochondria or between ER and lysosomes is very important for controlling mitochondrial energetics, autophagy and apoptosis. Anti-apoptotic Bcl-2 leads to increased cell survival by both blocking pro-apoptotic family members like Bax and Bak and by inhibiting IP3R mediated Ca2+ transfer to the mitochondria. As Bcl-2 is upregulated in a variety of cancers, including diffuse large B-cell lymphoma (DLBCL) and chronic lymphocytic leukemia (CLL), we developed in collaboration with Clark W Distelhorst (Case Western Reserve University, USA) BIRD-2, a peptide tool that disrupts Bcl-2/IP3R interaction by binding to the Bcl-2 BH4 domain, increasing IP3 induced Ca2+ release and triggering apoptosis of DLBCL cells and of primary CLL cells. Interestingly, DLBCL cell lines with high expression levels of the high affinity IP3R2 isoform, were the most sensitive to BIRD-2. In addition to high levels of IP3R2 expression, constitutive IP3 signaling downstream of the tonically active B-cell receptor increases sensitivity towards BIRD-2. Under standard growth conditions, this constitutive IP3 signaling fulfilled a pro-survival role, since inhibition of phospholipase C using 2.5 μM U73122 caused cell death in various DLBCL cell lines and primary CLL cells, but at lower concentrations protected against BIRD- 2-induced Ca2+ release and apoptosis. Taken together, our data indicate that on the one hand, constitutive IP3 signaling is necessary for cancer cell survival and proliferation but that on the other hand to survive this chronic signaling the cancer cells are dependent on high Bcl-2 levels to prevent excessive Ca2+ release via IP3Rs. Disrupting Bcl-2/IP3R interaction switches constitutive IP3 signaling to a pro-death signal and may therefore lead to a novel therapeutic approach. Recent Publications 1. Roest G, et al., (2018) The regulation of autophagy by calcium signals: Do we have a consensus? Advances in Experimental Medicine and Biology 70:32-46. 2. Bootman M D, et al., (2018) The regulation of autophagy by calcium signals: Do we have a consensus? Cell Calcium 70:33-46. 3. Vervloessem T, et al., (2017) Reciprocal sensitivity of diffuse large B-cell lymphoma cells to Bcl-2 inhibitors BIRD-2 versus venetoclax. Oncotarget 8(67):111656-111671. 4. Kerkhofs M, et al., (2017) Alterations in Ca2+ signalling via ER-mitochondria contact site remodelling in cancer. Advances in Experimental Medicine and Biology 997:225-254. 5. Kania E, et al., (2017) IP3 receptor-mediated calcium signaling and its role in autophagy in cancer. Frontiers of Oncology 7:140.

Biography :

   

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