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唾液酸糖蛋白(MUC1)抑制细胞毒性淋巴细胞与靶细胞的相互作用。

Episialin (MUC1) inhibits cytotoxic lymphocyte-target cell interaction.

作者信息

van de Wiel-van Kemenade E, Ligtenberg M J, de Boer A J, Buijs F, Vos H L, Melief C J, Hilkens J, Figdor C G

机构信息

Division of Immunology, The Netherlands Cancer Institute, Amsterdam.

出版信息

J Immunol. 1993 Jul 15;151(2):767-76.

PMID:7687622
Abstract

Episialin (MUC1) is a mucin-like glycoprotein abundantly expressed on most carcinoma cells. As a result of its extended and rigid structure, it reduces intercellular adhesion. We investigated whether this antiadhesion function allows tumor cells expressing high levels of episialin to escape from immune recognition. To test this hypothesis, we transfected episialin-negative (episialin-) melanoma cells (A375) with the MUC1 cDNA-encoding episialin. The results demonstrated that episialin-positive (episialin+) melanoma cells were significantly less susceptible to lysis than episialin- melanoma cells by both alloantigen or rIL-2-stimulated cytotoxic effector cells. In addition, cold target inhibition experiments with episialin+ and episialin- cells clearly demonstrated preferential lysis of episialin- cells. Furthermore, antibody blocking studies showed that lysis of episialin+, but not of episialin-, melanoma cells was predominantly dependent on the leukocyte function-associated Ag-1/intracellular adhesion molecule adhesion route, suggesting that episialin+ target cells adhere less efficiently to effector cells than episialin- target cells. This notion was supported by the observation that conjugate formation of the effector cells with episialin+ target cells was significantly impaired. From these results we conclude that over-expression of episialin as found on many tumor cells may indeed affect efficient lysis by cytotoxic lymphocytes and thus may contribute to escape from immune surveillance.

摘要

表皮唾液酸蛋白(MUC1)是一种在大多数癌细胞上大量表达的黏蛋白样糖蛋白。由于其伸展且刚性的结构,它会降低细胞间黏附。我们研究了这种抗黏附功能是否使表达高水平表皮唾液酸蛋白的肿瘤细胞能够逃避免疫识别。为了验证这一假设,我们用编码表皮唾液酸蛋白的MUC1 cDNA转染表皮唾液酸蛋白阴性(表皮唾液酸蛋白阴性)的黑色素瘤细胞(A375)。结果表明,无论是同种异体抗原还是rIL-2刺激的细胞毒性效应细胞,表皮唾液酸蛋白阳性(表皮唾液酸蛋白阳性)的黑色素瘤细胞比表皮唾液酸蛋白阴性的黑色素瘤细胞对裂解的敏感性明显更低。此外,用表皮唾液酸蛋白阳性和阴性细胞进行的冷靶抑制实验清楚地表明表皮唾液酸蛋白阴性细胞被优先裂解。此外,抗体阻断研究表明,表皮唾液酸蛋白阳性而非阴性黑色素瘤细胞的裂解主要依赖于白细胞功能相关抗原-1/细胞间黏附分子黏附途径,这表明表皮唾液酸蛋白阳性靶细胞与效应细胞的黏附效率低于表皮唾液酸蛋白阴性靶细胞。效应细胞与表皮唾液酸蛋白阳性靶细胞的结合形成明显受损这一观察结果支持了这一观点。从这些结果我们得出结论,许多肿瘤细胞上发现的表皮唾液酸蛋白过表达可能确实会影响细胞毒性淋巴细胞的有效裂解,从而可能有助于逃避免疫监视。

相似文献

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Episialin (MUC1) inhibits cytotoxic lymphocyte-target cell interaction.唾液酸糖蛋白(MUC1)抑制细胞毒性淋巴细胞与靶细胞的相互作用。
J Immunol. 1993 Jul 15;151(2):767-76.
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Clonal heterogeneity in LFA-3 and ICAM-1 requirement for lysis by alloreactive T lymphocytes.同种反应性T淋巴细胞溶解作用中LFA - 3和ICAM - 1需求的克隆异质性。
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Differential expression of cell adhesion molecules CD54/CD11a and CD58/CD2 by human melanoma cells and functional role in their interaction with cytotoxic cells.人黑色素瘤细胞中细胞黏附分子CD54/CD11a和CD58/CD2的差异表达及其在与细胞毒性细胞相互作用中的功能作用。
Cancer Res. 1993 Jul 15;53(14):3343-8.
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Suppression of cellular aggregation by high levels of episialin.高水平上皮涎蛋白对细胞聚集的抑制作用。
Cancer Res. 1992 Apr 15;52(8):2318-24.
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Modulation of MUC1 mucin as an escape mechanism of breast cancer cells from autologous cytotoxic T-lymphocytes.MUC1粘蛋白的调节作为乳腺癌细胞逃避自体细胞毒性T淋巴细胞的一种机制。
Br J Cancer. 2001 May 4;84(9):1258-64. doi: 10.1054/bjoc.2000.1744.
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Lytic susceptibility of target cells to cytotoxic T cells is determined by their constitutive major histocompatibility complex class I antigen expression and cytokine-induced activation status.靶细胞对细胞毒性T细胞的溶解敏感性取决于其组成性主要组织相容性复合体I类抗原表达和细胞因子诱导的激活状态。
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Interferon-gamma-induced intercellular adhesion molecule-1: expression on human tumor cells enhances bifunctional antibody-mediated lysis through a lymphocyte function-associated antigen-1 dependent mechanism.γ干扰素诱导的细胞间黏附分子-1:在人肿瘤细胞上的表达通过淋巴细胞功能相关抗原-1依赖性机制增强双功能抗体介导的细胞裂解作用。
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Overexpression of sialomucin complex, a rat homologue of MUC4, inhibits tumor killing by lymphokine-activated killer cells.唾液粘蛋白复合物(MUC4的大鼠同源物)的过表达会抑制淋巴因子激活的杀伤细胞对肿瘤的杀伤作用。
Cancer Res. 1999 May 1;59(9):2229-36.
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Functional aspects of three molecules associated with metastasis development in human malignant melanoma.与人类恶性黑色素瘤转移发展相关的三种分子的功能方面。
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Human melanoma-reactive CD4+ and CD8+ CTL clones resist Fas ligand-induced apoptosis and use Fas/Fas ligand-independent mechanisms for tumor killing.人黑色素瘤反应性CD4+和CD8+细胞毒性T淋巴细胞克隆对Fas配体诱导的凋亡具有抗性,并利用不依赖Fas/Fas配体的机制杀伤肿瘤。
J Immunol. 1998 Aug 1;161(3):1220-30.

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