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ALK5 的药理抑制导致表达致癌 HRAS 的小鼠角质形成细胞中选择性诱导终末分化。

Pharmacologic inhibition of ALK5 causes selective induction of terminal differentiation in mouse keratinocytes expressing oncogenic HRAS.

机构信息

The Pennsylvania State University, 201 Life Sciences Building, University Park, PA 16802, USA.

出版信息

Mol Cancer Res. 2011 Jun;9(6):746-56. doi: 10.1158/1541-7786.MCR-11-0112. Epub 2011 Apr 26.

Abstract

TGFβ has both tumor suppressive and oncogenic roles in cancer development. We previously showed that SB431542 (SB), a small molecule inhibitor of the TGFβ type I receptor (ALK5) kinase, suppressed benign epidermal tumor formation but enhanced malignant conversion. Here, we show that SB treatment of primary K5rTA/tetORASV12G bitransgenic keratinocytes did not alter HRASV12G-induced keratinocyte hyperproliferation. However, continuous SB treatment significantly enhanced HRASV12G-induced cornified envelope formation and cell death linked to increased expression of enzymes transglutaminase (TGM) 1 and TGM3 and constituents of the cornified envelope small proline-rich protein (SPR) 1A and SPR2H. In contrast, TGFβ1 suppressed cornified envelope formation in HRASV12G keratinocytes. Similar results were obtained in HRASV12G transgenic mice treated topically with SB or by coexpressing TGFβ1 and HRASV12G in the epidermis. Despite significant cell death, SB-resistant HRASV12G keratinocytes repopulated the primary culture that had overcome HRas-induced senescence. These cells expressed reduced levels of p16(ink4a) and were growth stimulated by SB but remained sensitive to a calcium-induced growth arrest. Together these results suggest that differential responsiveness to cornification may represent a mechanism by which pharmacologic blockade of TGFβ signaling can inhibit the outgrowth of preneoplastic lesions but may cause a more progressed phenotype in a separate keratinocyte population.

摘要

TGFβ 在癌症发展中既有肿瘤抑制作用,也有致癌作用。我们之前曾表明,SB431542(SB)是 TGFβ Ⅰ型受体(ALK5)激酶的小分子抑制剂,可抑制良性表皮肿瘤的形成,但增强恶性转化。在这里,我们表明,SB 处理原代 K5rTA/tetORASV12G 双转基因角质形成细胞不会改变 HRASV12G 诱导的角质形成细胞过度增殖。然而,持续的 SB 处理显著增强了 HRASV12G 诱导的角蛋白包膜形成和细胞死亡,这与转谷氨酰胺酶(TGM)1 和 TGM3 的表达增加以及角蛋白包膜小脯氨酸丰富蛋白(SPR)1A 和 SPR2H 的组成部分有关。相比之下,TGFβ1 抑制了 HRASV12G 角质形成细胞中的角蛋白包膜形成。在经 SB 局部处理或在表皮中共同表达 TGFβ1 和 HRASV12G 的 HRASV12G 转基因小鼠中也获得了类似的结果。尽管发生了明显的细胞死亡,但 SB 抗性 HRASV12G 角质形成细胞重新填充了克服 HRas 诱导衰老的原代培养物。这些细胞表达的 p16(ink4a) 水平降低,并且对 SB 有生长刺激作用,但仍然对钙诱导的生长阻滞敏感。这些结果表明,对角蛋白化的不同反应可能是药理阻断 TGFβ 信号传导可以抑制癌前病变生长的机制,但在另一个角质形成细胞群体中可能导致更进展的表型。

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