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CDC42 和 Rac1 在癌细胞上皮 HeLa 细胞的质膜突出形成中的作用。

The roles of Cdc42 and Rac1 in the formation of plasma membrane protrusions in cancer epithelial HeLa cells.

机构信息

Servicio de Inmunología, Hospital Clínico Universitario Virgen de la Arrixaca, Instituto Murciano de Investigación Biosanitaria (IMIB-Arrixaca), 30120, El Palmar, Murcia, Spain.

出版信息

Mol Biol Rep. 2021 May;48(5):4285-4294. doi: 10.1007/s11033-021-06443-5. Epub 2021 Jun 10.

Abstract

The inducible model of clones generated from the cervical cancer epithelial HeLa cell line has shown the role of DOCK10 as a guanine-nucleotide exchange factor for Rho GTPases Cdc42 and Rac1 and as an inducer of filopodia and plasma membrane (PM) ruffles. In this model, constitutively active (CA) mutants of Cdc42 and Rac1 promote filopodia and ruffles, respectively, as in other models. DOCK9 also induces filopodia and ruffles, although ruffling activity is less prominent. By exploiting this model further, the aim of this work is to provide a more complete understanding of the role of Cdc42 and Rac1, and their interactions with DOCK10 and DOCK9, in regulation of PM protrusions. New clones have been generated from HeLa, including single clones expressing one form of wild-type (WT) or dominant negative (DN) Cdc42 or Rac1, and double clones co-expressing one of them together with either DOCK10 or DOCK9. Expression of WT- and DN-Cdc42 induced filopodia. WT-Cdc42 and, especially, DN-Cdc42 also gave rise to veil protrusions, which were neutralized by DOCK10. Moreover, DN-Cdc42 stimulated the emergence of ruffles, further increased by DOCK10, and WT-Cdc42 also augmented ruffles in presence of DOCK9 and DOCK10. WT-Rac1 greatly increased PM blebbing, as did DN-Rac1 more moderately. In both cases, blebs were enhanced by DOCK10. DN-Rac1 and CA-Rac1 moderately raised filopodia, and DOCK10 and DOCK9 had opposed effects on filopodia (up and down, respectively) in presence of WT-Rac1. As conclusions, we highlight that Cdc42 promotes filopodia regardless of its conformational state, and Rac1 induces blebs in conformations other than CA, especially WT-Rac1, in the inducible HeLa clones. The model could be useful to learn more about the mechanisms underlying PM protrusions.

摘要

从宫颈癌上皮细胞系 HeLa 中产生的诱导型克隆模型表明,DOCK10 作为 Rho GTPases Cdc42 和 Rac1 的鸟嘌呤核苷酸交换因子,以及诱导丝状伪足和质膜(PM)皱襞的作用。在该模型中,组成型激活(CA)突变体 Cdc42 和 Rac1 分别促进丝状伪足和皱襞,这与其他模型中的情况相同。DOCK9 也诱导丝状伪足和皱襞,尽管皱襞活性不太明显。通过进一步利用该模型,本工作旨在提供对 Cdc42 和 Rac1 的作用以及它们与 DOCK10 和 DOCK9 的相互作用在 PM 突起调节中的更全面的理解。已经从 HeLa 中生成了新的克隆,包括表达一种形式的野生型(WT)或显性负(DN)Cdc42 或 Rac1 的单个克隆,以及共表达其中一种与 DOCK10 或 DOCK9 的双克隆。WT-Cdc42 和 DN-Cdc42 的表达诱导丝状伪足。WT-Cdc42,特别是 DN-Cdc42,也导致面纱状突起,这些突起被 DOCK10 中和。此外,DN-Cdc42 刺激皱襞的出现,DOCK10 进一步增加,WT-Cdc42 也在 DOCK9 和 DOCK10 的存在下增加皱襞。WT-Rac1 大大增加了 PM 泡状突起,DN-Rac1 也适度增加。在这两种情况下,DOCK10 增强了泡状突起。DN-Rac1 和 CA-Rac1 适度增加丝状伪足,而在 WT-Rac1 存在下,DOCK10 和 DOCK9 对丝状伪足有相反的影响(分别向上和向下)。总之,我们强调,无论其构象状态如何,Cdc42 都能促进丝状伪足,而 Rac1 在诱导型 HeLa 克隆中除 CA 之外的其他构象下诱导泡状突起,特别是 WT-Rac1。该模型可用于更深入地了解 PM 突起的潜在机制。

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