Institute of Technology, University of Tartu, 50411 Tartu, Estonia.
Biomolecules. 2023 Nov 24;13(12):1704. doi: 10.3390/biom13121704.
Melanoma-associated antigen A (MAGEA) subfamily proteins are normally expressed in testis and/or placenta. However, aberrant expression is detected in the tumour cells of multiple types of human cancer. MAGEA expression is mainly observed in cancers that have acquired malignant phenotypes, invasiveness and metastasis, and the expression of MAGEA family proteins has been linked to poor prognosis in cancer patients. All MAGE proteins share the common MAGE homology domain (MHD) which encompasses up to 70% of the protein; however, the areas flanking the MHD region vary between family members and are poorly conserved. To investigate the molecular basis of MAGEA10 expression and anomalous mobility in gel, deletion and point-mutation, analyses of the MAGEA10 protein were performed. Our data show that the intrinsically disordered N-terminal domain and, specifically, the first seven amino acids containing a unique linear motif, PRAPKR, are responsible for its expression, aberrant migration in SDS-PAGE and nuclear localisation. The aberrant migration in gel and nuclear localisation are not related to each other. Hiding the N-terminus with an epitope tag strongly affected its mobility in gel and expression in cells. Our results suggest that the intrinsically disordered domains flanking the MHD determine the unique properties of individual MAGEA proteins.
黑色素瘤相关抗原 A(MAGEA)亚家族蛋白通常在睾丸和/或胎盘组织中表达。然而,在多种人类肿瘤的肿瘤细胞中检测到异常表达。MAGEA 的表达主要见于获得恶性表型、侵袭性和转移性的癌症,MAGEA 家族蛋白的表达与癌症患者的预后不良有关。所有 MAGE 蛋白都具有共同的 MAGE 同源结构域(MHD),该结构域包含多达 70%的蛋白质;然而,MHD 区域侧翼的区域在家族成员之间存在差异,且保守性较差。为了研究 MAGEA10 表达和凝胶中异常迁移的分子基础,对 MAGEA10 蛋白进行了缺失和点突变分析。我们的数据表明,固有无序的 N 端结构域,特别是包含独特线性基序 PRAPKR 的前七个氨基酸,负责其表达、SDS-PAGE 中的异常迁移和核定位。凝胶中的异常迁移和核定位彼此不相关。用表位标签隐藏 N 端强烈影响其在凝胶中的迁移和在细胞中的表达。我们的结果表明,MHD 侧翼的固有无序结构域决定了各个 MAGEA 蛋白的独特性质。