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Mechanism underlying the development of myeloproliferative neoplasms through mutant calreticulin

机译:通过突变钙素肌酚肌肉发育的机制

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摘要

Deregulation of cytokine signaling is frequently associated with various pathological conditions, including malignancies. In patients with myeloproliferative neoplasms (MPNs), recurrent somatic mutations in the calreticulin ( CALR ) gene, which encodes a molecular chaperone that resides in the endoplasmic reticulum, have been reported. Studies have defined mutant CALR as an oncogene promoting the development of MPN, and deciphered a novel molecular mechanism by which mutant CALR constitutively activates thrombopoietin receptor MPL and its downstream molecules to induce cellular transformation. The mechanism of interaction and activation of MPL by mutant CALR is unique, not only due to the latter forming a homomultimeric complex through a novel mutant‐specific sequence generated by frameshift mutation, but also for its ability to interact with immature asparagine‐linked glycan for eventual engagement with immature MPL in the endoplasmic reticulum. The complex formed between mutant CALR and MPL is then transported to the cell surface, where it induces constitutive activation of downstream kinase JAK2 bound to MPL. Refined structural and cell biological studies can provide an in‐depth understanding of this unusual mechanism of receptor activation by a mutant molecular chaperone. Mutant CALR is also involved in modulation of the immune response, transcription, and intracellular homeostasis, which could contribute to the development of MPN. In the present article, we comprehensively review the current understanding of the underlying molecular mechanisms for mutant molecular chaperone‐induced cellular transformation.
机译:细胞因子信号传导的放松管制通常与各种病理条件相关,包括恶性肿瘤。据报道,在患有肌酚糖苷瘤(MPNS)的患者中,已经报道了钙霉素(CALR)基因中的复发体细胞突变,其编码在内质网中的分子伴侣。研究具有定义的突变体CalR作为促进MPN的发育的癌基因,并通过该突变体Calr体组成型激活血小板素受体MPL及其下游分子以诱导细胞转化的新型分子机制。通过突变钙的相互作用和激活的机制是独特的,而不仅是由于后者通过由突发突变产生的新突变特异性序列形成均多络合物,而且还用于其与未固化天冬酰胺连接的聚糖相互作用的能力最终与未成熟的MPL在内质网中的接触。然后将突变体和MPL之间形成的复合物输送到细胞表面,其中诱导与MPL结合的下游激酶JAK2的组成型激活。精致的结构和细胞生物学研究可以通过突变分子伴侣对受体激活的这种不寻常机制进行深入理解。突变体CALR也参与了免疫应答,转录和细胞内稳态的调节,这可能有助于MPN的发育。在本文中,我们全面地审查了目前对突变分子伴随细胞转化的突变分子机制的目前的理解。

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