Endoplasmic Reticulum Ca2+ Handling and Apoptotic Resistance in Tumor-Derived Endothelial Colony Forming Cells

被引:24
作者
Poletto, Valentina [1 ]
Dragoni, Silvia [2 ]
Lim, Dmitry [3 ]
Biggiogera, Marco [4 ]
Aronica, Adele [1 ]
Cinelli, Mariapia [5 ]
De Luca, Antonio [6 ]
Rosti, Vittorio [1 ]
Porta, Camillo [7 ]
Guerra, Germano [8 ]
Moccia, Francesco [2 ]
机构
[1] Fdn IRCCS Policlin San Matteo, Biotechnol Res Lab, Ctr Study Myelofibrosis, I-27100 Pavia, Italy
[2] Univ Pavia, Dept Biol & Biotechnol L Spallanzani, Lab Gen Physiol, Via Forlanini 6, I-27100 Pavia, Italy
[3] Univ Piemonte Orientale Amedeo Avogadro, Dept Pharmaceut Sci, I-28100 Novara, Italy
[4] Univ Pavia, Dept Biol & Biotechnol L Spallanzani, Lab Cell Biol & Neurobiol, I-27100 Pavia, Italy
[5] Univ Naples Federico II, Dept Publ Hlth, I-80131 Naples, Italy
[6] Univ Naples 2, Sect Human Anat, Dept Mental & Phys Hlth & Prevent Med, Largo Madonna delle Grazie 1, I-80138 Naples, Italy
[7] Fdn IRCCS Policlin San Matteo, Med Oncol, I-27100 Pavia, Italy
[8] Univ Molise, Dept Med & Hlth Sci Vincenzo Tiberio, Via F De Santis, I-86100 Campobasso, Italy
关键词
CALCIUM SIGNALING; APOPTOSIS; ENDOTHELIAL PROGENITOR CELLS; CANCER; PROGENITOR CELLS; CALCIUM HOMEOSTASIS; TARGETS; CA2+-HOMEOSTASIS; PROLIFERATION; OSCILLATIONS; TRANSPORT; THERAPY; RELEASE; GROWTH;
D O I
10.1002/jcb.25524
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Truly endothelial progenitor cells (EPCs) can be mobilized from bone marrow to support the vascular network of growing tumors, thereby sustaining the metastatic switch. Endothelial colony forming cells (ECFCs) are the only EPC subtype belonging to the endothelial phenotype and capable of incorporating within neovessels. The intracellular Ca2+ machinery plays a key role in ECFC activation and is remodeled in renal cellular carcinoma-derived ECFCs (RCC-ECFCs). Particularly, RCC-ECFCs seems to undergo a drop in endoplasmic reticulum (ER) Ca2+ concentration ([Ca2+](ER)). This feature is remarkable when considering that inositol-1,4,5-trisphosphate (InsP(3))-dependent ER-to-mitochondria Ca2+ transfer regulates the intrinsic apoptosis pathway. Herein, we sought to assess whether: (1) the [Ca2+](ER) and the InsP(3)-induced ER-mitochondria Ca2+ shuttle are reduced in RCC-ECFCs; and (2) the dysregulation of ER Ca2+ handling leads to apoptosis resistance in tumor-derived cells. RCC-ECFCs displayed a reduction both in [Ca2+](ER) and in the InsP(3)-dependent mitochondrial Ca2+ uptake, while they expressed normal levels of Bcl-2 and Bak. The decrease in [Ca2+](ER) was associated to a remarkable ER expansion in RCC-ECFCs, which is a hallmark of ER stress, and did not depend on the remodeling of the Ca2+-transporting and the ER Ca2+-storing systems. As expected, RCC-ECFCs were less sensitive to rapamycin- and thapsigargin-induced apoptosis; however, buffering intracellular Ca2+ levels with BAPTA dampened apoptosis in both cell types. Finally, store-operated Ca2+ entry was seemingly uncoupled from the apoptotic machinery in RCC-ECFCs. Thus, the chronic underfilling of the ER Ca2+ pool could confer a survival advantage to RCC-ECFCs and underpin RCC resistance to pharmacological treatment. J. Cell. Biochem. 117: 2260-2271, 2016. (c) 2016 Wiley Periodicals, Inc.
引用
收藏
页码:2260 / 2271
页数:12
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