Kultti Anne, Zhao Chunmei, Singha Netai C, Zimmerman Susan, Osgood Ryan J, Symons Rebecca, Jiang Ping, Li Xiaoming, Thompson Curtis B, Infante Jeffrey R, Jacobetz Michael A, Tuveson David A, Frost Gregory I, Shepard H Michael, Huang Zhongdong
Halozyme Therapeutics, Inc., 11388 Sorrento Valley Road, San Diego, CA 92121, USA.
Sarah Cannon Research Institute/Tennessee Oncology, PLLC, 250 25th Avenue North, Nashville, TN 37203, USA.
Biomed Res Int. 2014;2014:817613. doi: 10.1155/2014/817613. Epub 2014 Jul 24.
Extensive accumulation of the glycosaminoglycan hyaluronan is found in pancreatic cancer. The role of hyaluronan synthases 2 and 3 (HAS2, 3) was investigated in pancreatic cancer growth and the tumor microenvironment. Overexpression of HAS3 increased hyaluronan synthesis in BxPC-3 pancreatic cancer cells. In vivo, overexpression of HAS3 led to faster growing xenograft tumors with abundant extracellular hyaluronan accumulation. Treatment with pegylated human recombinant hyaluronidase (PEGPH20) removed extracellular hyaluronan and dramatically decreased the growth rate of BxPC-3 HAS3 tumors compared to parental tumors. PEGPH20 had a weaker effect on HAS2-overexpressing tumors which grew more slowly and contained both extracellular and intracellular hyaluronan. Accumulation of hyaluronan was associated with loss of plasma membrane E-cadherin and accumulation of cytoplasmic β-catenin, suggesting disruption of adherens junctions. PEGPH20 decreased the amount of nuclear hypoxia-related proteins and induced translocation of E-cadherin and β-catenin to the plasma membrane. Translocation of E-cadherin was also seen in tumors from a transgenic mouse model of pancreatic cancer and in a human non-small cell lung cancer sample from a patient treated with PEGPH20. In conclusion, hyaluronan accumulation by HAS3 favors pancreatic cancer growth, at least in part by decreasing epithelial cell adhesion, and PEGPH20 inhibits these changes and suppresses tumor growth.
在胰腺癌中发现了糖胺聚糖透明质酸的大量积累。研究了透明质酸合酶2和3(HAS2、3)在胰腺癌生长和肿瘤微环境中的作用。HAS3的过表达增加了BxPC-3胰腺癌细胞中的透明质酸合成。在体内,HAS3的过表达导致异种移植肿瘤生长更快,细胞外有大量透明质酸积累。与亲本肿瘤相比,用聚乙二醇化人重组透明质酸酶(PEGPH20)治疗可去除细胞外透明质酸,并显著降低BxPC-3 HAS3肿瘤的生长速率。PEGPH20对过表达HAS2的肿瘤的作用较弱,这些肿瘤生长较慢,同时含有细胞外和细胞内透明质酸。透明质酸的积累与质膜E-钙黏蛋白的丢失和细胞质β-连环蛋白的积累有关,提示黏附连接被破坏。PEGPH20减少了核内缺氧相关蛋白的量,并诱导E-钙黏蛋白和β-连环蛋白向质膜转运。在胰腺癌转基因小鼠模型的肿瘤以及接受PEGPH20治疗的患者的人非小细胞肺癌样本中也观察到了E-钙黏蛋白的转运。总之,HAS3介导的透明质酸积累促进胰腺癌生长,至少部分是通过降低上皮细胞黏附实现的,而PEGPH20可抑制这些变化并抑制肿瘤生长。