Calreticulin Ins5 and Del52 mutations impair unfolded protein and oxidative stress responses in K562 cells expressing CALR mutants

钙网蛋白 Ins5 和 Del52 突变会损害表达 CALR 突变体的 K562 细胞中的未折叠蛋白和氧化应激反应

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作者:Simona Salati, Elena Genovese, Chiara Carretta, Roberta Zini, Niccolò Bartalucci, Zelia Prudente, Valentina Pennucci, Samantha Ruberti, Chiara Rossi, Sebastiano Rontauroli, Elena Enzo, Laura Calabresi, Manjola Balliu, Carmela Mannarelli, Elisa Bianchi, Paola Guglielmelli, Enrico Tagliafico, Alessand

Abstract

Somatic mutations of calreticulin (CALR) have been described in approximately 60-80% of JAK2 and MPL unmutated Essential Thrombocythemia and Primary Myelofibrosis patients. CALR is an endoplasmic reticulum (ER) chaperone responsible for proper protein folding and calcium retention. Recent data demonstrated that the TPO receptor (MPL) is essential for the development of CALR mutant-driven Myeloproliferative Neoplasms (MPNs). However, the precise mechanism of action of CALR mutants haven't been fully unraveled. In this study, we showed that CALR mutants impair the ability to respond to the ER stress and reduce the activation of the pro-apoptotic pathway of the unfolded protein response (UPR). Moreover, our data demonstrated that CALR mutations induce increased sensitivity to oxidative stress, leading to increase oxidative DNA damage. We finally demonstrated that the downmodulation of OXR1 in CALR-mutated cells could be one of the molecular mechanisms responsible for the increased sensitivity to oxidative stress mediated by mutant CALR. Altogether, our data identify novel mechanisms collaborating with MPL activation in CALR-mediated cellular transformation. CALR mutants negatively impact on the capability of cells to respond to oxidative stress leading to genomic instability and on the ability to react to ER stress, causing resistance to UPR-induced apoptosis.

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