Tourkova Irina L, Shurin Galina V, Wei Sheng, Shurin Michael R
Department of Pathology, University of Pittsburgh Medical Center, 200 Lothrop Street, Pittsburgh, PA 15213, USA.
J Immunol. 2007 Jun 15;178(12):7787-93. doi: 10.4049/jimmunol.178.12.7787.
The generation, maturation, and function of dendritic cells (DC) have been shown to be markedly compromised in the tumor microenvironment in animals and humans. However, the molecular mechanisms and intracellular pathways involved in the regulation of the DC system in cancer are not yet fully understood. Recently, we have reported on the role of the small Rho GTPase family members Cdc42, Rac1, and RhoA in regulating DC adherence, motility, and Ag presentation. To investigate involvement of small Rho GTPases in dysregulation of DC function by tumors, we next evaluated how Cdc42, Rac1, and RhoA regulated endocytic activity of DC in the tumor microenvironment. We revealed a decreased uptake of dextran 40 and polystyrene beads by DC generated in the presence of different tumor cell lines, including RM1 prostate, MC38 colon, 3LL lung, and B7E3 oral squamous cell carcinomas in vitro and by DC prepared from tumor-bearing mice ex vivo. Impaired endocytic activity of DC cocultured with tumor cells was associated with decreased levels of active Cdc42 and Rac1. Transduction of DC with the dominant negative Cdc42 and Rac1 genes also led to reduced phagocytosis and receptor-mediated endocytosis. Furthermore, transduction of DC with the constitutively active Cdc42 and Rac1 genes restored endocytic activity of DC that was inhibited by the tumors. Thus, our results suggest that tumor-induced dysregulation of endocytic activity of DC is mediated by reduced activity of several members of the small Rho GTPase family, which might serve as new targets for improving the efficacy of DC vaccines.
在动物和人类的肿瘤微环境中,树突状细胞(DC)的生成、成熟及功能已被证明受到显著损害。然而,癌症中调控DC系统的分子机制和细胞内信号通路尚未完全明确。最近,我们报道了小Rho GTP酶家族成员Cdc42、Rac1和RhoA在调节DC黏附、迁移及抗原呈递中的作用。为研究小Rho GTP酶在肿瘤导致的DC功能失调中的作用,接下来我们评估了Cdc42、Rac1和RhoA如何调控肿瘤微环境中DC的内吞活性。我们发现,在不同肿瘤细胞系(包括RM1前列腺癌、MC38结肠癌、3LL肺癌和B7E3口腔鳞状细胞癌)存在的情况下体外生成的DC,以及从荷瘤小鼠体内制备的DC,对葡聚糖40和聚苯乙烯微球的摄取均减少。与肿瘤细胞共培养的DC内吞活性受损与活性Cdc42和Rac1水平降低有关。用显性负性Cdc42和Rac1基因转导DC也会导致吞噬作用和受体介导的内吞作用降低。此外,用组成型激活的Cdc42和Rac1基因转导DC可恢复被肿瘤抑制的DC的内吞活性。因此,我们的结果表明,肿瘤诱导的DC内吞活性失调是由小Rho GTP酶家族多个成员的活性降低介导 的,这可能成为提高DC疫苗疗效的新靶点。