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透明质酸是导管分支形态发生的一个先决条件。

Hyaluronan is a prerequisite for ductal branching morphogenesis.

作者信息

Gakunga P, Frost G, Shuster S, Cunha G, Formby B, Stern R

机构信息

Graduate Program in Oral Biology, School of Dentistry, University of California, San Francisco 94143, USA.

出版信息

Development. 1997 Oct;124(20):3987-97. doi: 10.1242/dev.124.20.3987.

DOI:10.1242/dev.124.20.3987
PMID:9374396
Abstract

Hyaluronan, a macromolecular carbohydrate polymer of the extracellular matrix is prominent early in embryogenesis, coinciding with rapid tissue growth. CD44, the predominant receptor for hyaluronan on vertebrate cells, is a variably expressed transmembrane glycoprotein. Mouse anterior prostate glands obtained at various postnatal time points were examined for the expression of hyaluronan and CD44. Reverse transcriptase polymerase chain reaction analysis was used to map the temporal regulation of specific CD44 variant isoforms. In each age group, hyaluronan was localized exclusively in the stromal matrix. Hyaluronan was greatly reduced in the later ages and was entirely absent around the developmentally quiescent proximal regions of the ducts. Early in prostate development, CD44 was prominent in the mesenchyme. However, in the later phases, CD44 expression became associated with membranes of epithelial cells. The role of hyaluronan-CD44 interactions in ductal branching morphogenesis was studied by serum-free organ culture of mouse anterior prostate. In the presence of optimal levels of testosterone, the organs underwent ductal branching morphogenesis. Treatment with either neutralizing anti-CD44 antibodies, hyaluronan hexasaccharides or the enzyme hyaluronidase inhibited androgen-stimulated ductal branching morphogenesis. These results are suggestive of the significant role played by hyaluronan-CD44 interactions in mediating androgen-induced prostatic growth and morphogenesis.

摘要

透明质酸是细胞外基质的一种大分子碳水化合物聚合物,在胚胎发育早期很突出,与组织的快速生长同时出现。CD44是脊椎动物细胞上透明质酸的主要受体,是一种表达可变的跨膜糖蛋白。对在不同出生后时间点获取的小鼠前列腺前部进行透明质酸和CD44表达检测。采用逆转录聚合酶链反应分析来确定特定CD44变异体亚型的时间调控。在每个年龄组中,透明质酸仅定位于基质中。透明质酸在后期大幅减少,在导管发育静止的近端区域周围完全不存在。在前列腺发育早期,CD44在间充质中很突出。然而,在后期阶段,CD44表达与上皮细胞膜相关。通过小鼠前列腺前部的无血清器官培养研究了透明质酸-CD44相互作用在导管分支形态发生中的作用。在存在最佳水平睾酮的情况下,这些器官发生了导管分支形态发生。用中和抗CD44抗体、透明质酸六糖或透明质酸酶处理可抑制雄激素刺激的导管分支形态发生。这些结果表明透明质酸-CD44相互作用在介导雄激素诱导的前列腺生长和形态发生中发挥重要作用。

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