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人乳腺癌细胞系对透明质酸的差异合成与结合

Differential synthesis and binding of hyaluronan by human breast cancer cell lines.

作者信息

Heldin P, Delatorre M, Ytterberg D, Bergh J

机构信息

DANDERYD HOSP,DEPT PATHOL,S-18288 DANDERYD,SWEDEN. UNIV UPPSALA HOSP,DEPT ONCOL,S-75185 UPPSALA,SWEDEN.

出版信息

Oncol Rep. 1996 Nov;3(6):1011-6. doi: 10.3892/or.3.6.1011.

Abstract

In the present study we investigated a panel of human breast cancer cell lines which were sensitive or resistant to the cytotoxic drug doxorubicin, for their abilities to synthesize and bind hyaluronan. We found that MDA-231 and HS-578T cells which express very low amounts of estrogen and progesterone receptors, both synthesized hyaluronan and expressed hyaluronan binding sites on the cell surface as did their doxorubicin-adapted counterparts MDA-231 Dox and HS-578T Dox. The binding was highly specific with a K-d of 0.48x10(-9) M. Most of the hyaluronan binding activity was blocked by mAbs against Hermes-l antigen indicating that the adhesion molecule CD44 is responsible for hyaluronan binding. Only 0.5% of the total amount of labeled hyaluronan added to the cultures was degraded during a period of 16 h. The hormone positive receptor cell lines, MCF-5, Zr-5-1 and Zr-5-1 Dox synthesized only minute amounts of hyaluronan and did not bind hyaluronan or express CD44 receptors. Expression of CD44-related hyaluronan receptors and synthesized hyaluronan may endow hormone receptor negative cells with a highly hydrated environment that facilitates cell motility and invasiveness. The lack of CD44 and thereby the lack of ability to bind hyaluronan in the extracellular matrix may contribute to the non-invasive behavior of hormone positive cell lines.

摘要

在本研究中,我们调查了一组对细胞毒性药物阿霉素敏感或耐药的人乳腺癌细胞系,以研究它们合成和结合透明质酸的能力。我们发现,雌激素和孕激素受体表达量极低的MDA - 231和HS - 578T细胞,既能合成透明质酸,又能在细胞表面表达透明质酸结合位点,它们对阿霉素适应后的对应细胞MDA - 231 Dox和HS - 578T Dox也是如此。这种结合具有高度特异性,解离常数K - d为0.48×10⁻⁹ M。大多数透明质酸结合活性被抗Hermes - 1抗原的单克隆抗体阻断,这表明黏附分子CD44负责透明质酸的结合。在16小时的时间段内,添加到培养物中的标记透明质酸总量中只有0.5%被降解。激素阳性受体细胞系MCF - 5、Zr - 5 - 1和Zr - 5 - 1 Dox仅合成微量透明质酸,不结合透明质酸也不表达CD44受体。CD44相关透明质酸受体的表达和合成的透明质酸可能赋予激素受体阴性细胞一个高度水合的环境,这有利于细胞的运动性和侵袭性。CD44的缺乏以及由此导致的在细胞外基质中结合透明质酸能力的缺乏,可能导致激素阳性细胞系的非侵袭性行为。

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