Zhang Jing, Park Serk In, Artime Marlene C, Summy Justin M, Shah Ami N, Bomser Joshua A, Dorfleutner Andrea, Flynn Daniel C, Gallick Gary E
Department of Cancer Biology, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.
J Clin Invest. 2007 Oct;117(10):2962-73. doi: 10.1172/JCI30710.
The actin filament-associated protein AFAP-110 is an actin cross-linking protein first identified as a substrate of the viral oncogene v-Src. AFAP-110 regulates actin cytoskeleton integrity but also functions as an adaptor protein that affects crosstalk between Src and PKC. Here we investigated the roles of AFAP-110 in the tumorigenic process of prostate carcinoma. Using immunohistochemistry of human tissue arrays, we found that AFAP-110 was absent or expressed at very low levels in normal prostatic epithelium and benign prostatic hyperplasia but significantly increased in prostate carcinomas. The level of AFAP-110 in carcinomas correlated with the Gleason scores. Downregulation of AFAP-110 in PC3 prostate cancer cells inhibited cell proliferation in vitro and tumorigenicity and growth in orthotopic nude mouse models. Furthermore, downmodulation of AFAP-110 resulted in decreased cell-matrix adhesion and cell migration, defective focal adhesions, and reduced integrin beta1 expression. Reintroduction of avian AFAP-110 or a mutant disabling its interaction with Src restored these properties. However, expression of an AFAP-110 lacking the PKC-interacting domain failed to restore properties of parental cells. Thus, increased expression of AFAP-110 is associated with progressive stages of prostate cancer and is critical for tumorigenic growth, in part by regulating focal contacts in a PKC-dependent mechanism.
肌动蛋白丝相关蛋白AFAP-110是一种肌动蛋白交联蛋白,最初被鉴定为病毒癌基因v-Src的底物。AFAP-110不仅调节肌动蛋白细胞骨架的完整性,还作为一种衔接蛋白发挥作用,影响Src和PKC之间的串扰。在此,我们研究了AFAP-110在前列腺癌致瘤过程中的作用。通过对人体组织芯片进行免疫组织化学分析,我们发现AFAP-110在正常前列腺上皮和良性前列腺增生中缺失或表达水平极低,但在前列腺癌中显著增加。癌组织中AFAP-110的水平与Gleason评分相关。在PC3前列腺癌细胞中下调AFAP-110可抑制体外细胞增殖以及原位裸鼠模型中的致瘤性和生长。此外,下调AFAP-110导致细胞与基质的黏附及细胞迁移减少、黏着斑缺陷以及整合素β1表达降低。重新引入禽源AFAP-110或使其与Src相互作用失活的突变体可恢复这些特性。然而,缺乏PKC相互作用结构域的AFAP-110的表达未能恢复亲代细胞的特性。因此,AFAP-110表达增加与前列腺癌的进展阶段相关,并且对致瘤性生长至关重要,部分原因是通过PKC依赖机制调节黏着斑。