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Isolation and characterization of the Xenopus laevis orthologs of the human papillary renal cell carcinoma-associated genes PRCC and MAD2L2 (MAD2B)

机译:人乳头状肾细胞癌相关基因PRCC和MAD2L2(MAD2B)的非洲爪蟾直系同源基因的分离和鉴定

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Recently we found that the human papillary renal cell carcinoma-associated protein PRCC interacts with the cell cycle control protein Mad2B, and translocates this protein to the nucleus where it exerts its mitotic checkpoint function. Here we have succesfully isolated Xenopus laevis Mad2B and PRCC cDNAs. The full-length xMad2B cDNA encodes a 211 amino acid protein that is highly homologous to human Mad2B, thus pointing to an important function for this protein in higher eukaryotes. The full-length xPRCC cDNA encodes a 544 amino acid protein. Remarkably, this protein contains an amino-terminal region distinct from that in mouse and human, whereas the C-terminal region is highly conserved. Northern blot and RT-PCR analyses revealed a relatively low expression of both xMad2B and xPRCC in most tissues examined. However, an abundant expression was observed in testis and oocyte, indicating a role in meiotic division processes. Coimmunoprecipitation and immunofluorescence analyses revealed that, despite its distinct amino terminus, the xPRCC-protein is still capable of interacting with xMad2B and of shuttling this protein to the nucleus. Therefore, the well-established animal model Xenopus laevis can be used as a powerful system to study in detail the role of xPRCC and xMad2B in the intricate processes of cell cycle control.
机译:最近,我们发现人乳头状肾细胞癌相关蛋白PRCC与细胞周期控制蛋白Mad2B相互作用,并将该蛋白转运到细胞核,在核中发挥其有丝分裂检查点功能。在这里,我们成功分离了非洲爪蟾Mad2B和PRCC cDNA。全长xMad2B cDNA编码与人Mad2B高度同源的211个氨基酸蛋白,因此指出该蛋白在高级真核生物中的重要功能。全长xPRCC cDNA编码544个氨基酸的蛋白质。显着地,该蛋白质包含不同于小鼠和人的氨基末端区域,而C末端区域是高度保守的。 Northern印迹和RT-PCR分析显示在大多数检查的组织中xMad2B和xPRCC的表达相对较低。然而,在睾丸和卵母细胞中观察到大量表达,表明其在减数分裂过程中的作用。免疫共沉淀和免疫荧光分析表明,尽管xPRCC蛋白具有独特的氨基末端,但它仍能够与xMad2B相互作用并将该蛋白穿梭至细胞核。因此,成熟的动物模型非洲爪蟾可以作为一个强大的系统来详细研究xPRCC和xMad2B在复杂的细胞周期控制过程中的作用。

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