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APLP2调节受辐照的尤因肉瘤细胞上MHC I类分子的表达。

APLP2 regulates the expression of MHC class I molecules on irradiated Ewing's sarcoma cells.

作者信息

Peters Haley L, Yan Ying, Solheim Joyce C

机构信息

Eppley Institute; University of Nebraska Medical Center; Omaha, NE USA.

Eppley Institute; University of Nebraska Medical Center; Omaha, NE USA ; Department of Biochemistry and Molecular Biology; University of Nebraska Medical Center; Omaha, NE USA ; Department of Pathology and Microbiology; University of Nebraska Medical Center; Omaha, NE USA.

出版信息

Oncoimmunology. 2013 Oct 1;2(10):e26293. doi: 10.4161/onci.26293. Epub 2013 Oct 8.

Abstract

Ewing's sarcoma (EWS) is a pediatric cancer that is conventionally treated by surgery, chemotherapy, and radiation therapy. Innovative immunotherapies to treat EWS are currently under development. Unfortunately for EWS patients, when the disease is found to be resistant to current therapeutic approaches, the prognosis is predictably grim. Radiation therapy and immunotherapy could potentially synergize in the eradication of EWS, as some studies have previously shown that irradiation increases the presence of immune receptors, including MHC class I molecules, on the surface of tumor cells. However, EWS cells have been reported to express low levels of MHC class I molecules, a phenotype that would inhibit T-cell mediated lysis. We have previously demonstrated that the transgene-driven overexpression of amyloid β (A4) precursor-like protein 2 (APLP2) reduces the expression of MHC class I molecules on the surface of human cervical carcinoma HeLa cells. We thus examined whether endogenously expressed APLP2 downregulates MHC class I expression on EWS cells, particularly upon irradiation. We found that irradiation induces the relocalization of APLP2 and MHC class I molecules on the surface of EWS cells, redistributing cells from subpopulations with relatively low APLP2 and high MHC class I into subpopulations with relatively high APLP2 and low MHC class I surface expression. Consistent with these findings, the transfection of an APLP2-targeting siRNA into EWS cells increased MHC class I expression on the cell surface. Furthermore, APLP2 was found by co-immunoprecipitation to bind to MHC class I molecules. Taken together, these findings suggest that APLP2 inhibits MHC class I expression on the surface of irradiated EWS cells by a mechanism that involves APLP2/MHC class I interactions. Thus, therapeutic strategies that limit APLP2 expression may boost the ability of T cells to recognize and eradicate EWS in patients.

摘要

尤因肉瘤(EWS)是一种儿科癌症,传统上通过手术、化疗和放射治疗进行治疗。目前正在开发用于治疗EWS的创新免疫疗法。对EWS患者来说不幸的是,当发现该疾病对当前治疗方法耐药时,预后可想而知是严峻的。放射治疗和免疫疗法在根除EWS方面可能具有协同作用,因为先前的一些研究表明,辐射会增加肿瘤细胞表面免疫受体的存在,包括MHC I类分子。然而,据报道EWS细胞表达低水平的MHC I类分子,这种表型会抑制T细胞介导的裂解。我们之前已经证明,转基因驱动的淀粉样β(A4)前体样蛋白2(APLP2)过表达会降低人宫颈癌HeLa细胞表面MHC I类分子的表达。因此,我们研究了内源性表达的APLP2是否会下调EWS细胞表面的MHC I表达,特别是在照射后。我们发现,照射会诱导APLP2和MHC I类分子在EWS细胞表面重新定位,将细胞从APLP2相对较低且MHC I类较高的亚群重新分布到APLP2相对较高且MHC I类表面表达较低的亚群。与这些发现一致,将靶向APLP2的siRNA转染到EWS细胞中会增加细胞表面MHC I的表达。此外,通过免疫共沉淀发现APLP2与MHC I类分子结合。综上所述,这些发现表明,APLP2通过涉及APLP2/MHC I类相互作用的机制抑制照射后EWS细胞表面的MHC I表达。因此,限制APLP2表达的治疗策略可能会增强T细胞识别和根除患者体内EWS的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a0b/3862638/cc2fe2808837/onci-2-e26293-g1.jpg

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