首页> 外文期刊>Cancer biotherapy and radiopharmaceuticals >Surface expression of gpA33 is dependent on culture density and cell-cycle phase and is regulated by intracellular traffic rather than gene transcription.
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Surface expression of gpA33 is dependent on culture density and cell-cycle phase and is regulated by intracellular traffic rather than gene transcription.

机译:gpA33的表面表达取决于培养物密度和细胞周期阶段,并受细胞内运输而不是基因转录的调控。

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The cell-surface marker, gpA33, a new member of the immunoglobulin superfamily, is expressed by gastrointestinal cells and by 95% of colon cancers. It has become a promising target of immunologic therapy strategies, but its biologic function and potential role in tumorigenesis are unknown. In this study, we have investigated the expression of gpA33 on the mRNA and cell-surface protein levels by quantitative reverse transcriptase polymerase chain reaction and flow cytometry, respectively, in response to cell density in the culture and to cell-cycle arrest in the G1, S, or G2/M phases. As internalization of the surface protein had previously been reported, we also investigated the binding and intracellular migration of an anti-gpA33 fluobody with green fluorescent protein (A33scFv::GFP) by laser confocal microscopy. Contrary to intuition, we found that gpA33 surface expression and mRNA levels do only partly correlate under the conditions tested. Dependent on cell density in culture, gpA33 surface expression peaked at the point of confluence. Dependent on cell-cycle phase, it peaked in the G2/M phase but was lowest in the S phase, whereas mRNA levels were highest in S, but almost absent in G1. Laser confocal microscopy clearly demonstrated the intracellular uptake of A33scFv::GFP and showed the migration of microvesicles over time. These findings are, in part, concordant with the putative role of gpA33 as an adhesion molecule. However, intracellular traffic and recycling to the cell surface appear to play a major role in its function and to have an influence on its surface density superseding translational regulation.
机译:细胞表面标志物gpA33是免疫球蛋白超家族的新成员,由胃肠道细胞和95%的结肠癌表达。它已经成为免疫治疗策略的有希望的靶标,但是其生物学功能和在肿瘤发生中的潜在作用尚不清楚。在这项研究中,我们分别通过定量逆转录酶聚合酶链反应和流式细胞术研究了gpA33在mRNA和细胞表面蛋白水平上的表达,以响应培养物中的细胞密度和对G1中细胞周期的阻滞,S或G2 / M相。由于以前已经报道过表面蛋白的内在化,我们还通过激光共聚焦显微镜研究了抗gpA33荧光体与绿色荧光蛋白(A33scFv :: GFP)的结合和细胞内迁移。与直觉相反,我们发现在测试条件下,gpA33表面表达和mRNA水平仅部分相关。取决于培养中的细胞密度,gpA33表面表达在融合点达到峰值。取决于细胞周期阶段,其在G2 / M阶段达到峰值,但在S阶段最低,而mRNA水平在S阶段最高,但在G1阶段几乎不存在。激光共聚焦显微镜清楚地证明了A33scFv :: GFP的细胞内摄取,并显示了微囊泡随时间的迁移。这些发现部分与gpA33作为粘附分子的推定作用一致。然而,细胞内的运输和细胞表面的再循环似乎在其功能中起主要作用,并对其表面密度的影响取代翻译调节。

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