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在培养的乳腺上皮腺泡中,Bim对管腔形成的调控是癌基因的作用靶点。

Bim regulation of lumen formation in cultured mammary epithelial acini is targeted by oncogenes.

作者信息

Reginato Mauricio J, Mills Kenna R, Becker Esther B E, Lynch Danielle K, Bonni Azad, Muthuswamy Senthil K, Brugge Joan S

机构信息

Harvard Medical School, Department of Cell Biology, 240 Longwood Ave., Boston, MA 02115, USA.

出版信息

Mol Cell Biol. 2005 Jun;25(11):4591-601. doi: 10.1128/MCB.25.11.4591-4601.2005.

Abstract

Epithelial cells organize into cyst-like structures that contain a spherical monolayer of cells that enclose a central lumen. Using a three-dimensional basement membrane culture model in which mammary epithelial cells form hollow, acinus-like structures, we previously demonstrated that lumen formation is achieved, in part, through apoptosis of centrally localized cells. We demonstrate that the proapoptotic protein Bim may selectively trigger apoptosis of the centrally localized acinar cells, leading to temporally controlled lumen formation. Bim is not detectable during early stages of three-dimensional mammary acinar morphogenesis and is then highly upregulated in all cells of acini, coincident with detection of apoptosis in the centrally localized acinar cells. Inhibition of Bim expression by RNA interference transiently blocks luminal apoptosis and delays lumen formation. Oncogenes that induce acinar luminal filling, such as ErbB2 and v-Src, suppress expression of Bim through a pathway dependent on Erk-mitogen-activated protein kinase; however, HPV 16 E7, an oncogene that stimulates cell proliferation but not luminal filling, is unable to reduce Bim expression. Thus, Bim is a critical regulator of luminal apoptosis during mammary acinar morphogenesis in vitro and may be an important target of oncogenes that disrupt glandular epithelial architecture.

摘要

上皮细胞组织形成囊状结构,其中包含一层围绕中央管腔的球形细胞单层。利用一种三维基底膜培养模型,在该模型中乳腺上皮细胞形成中空的、腺泡样结构,我们先前证明管腔形成部分是通过中央定位细胞的凋亡实现的。我们证明促凋亡蛋白Bim可能选择性地触发中央定位的腺泡细胞凋亡,从而导致时间上可控的管腔形成。在三维乳腺腺泡形态发生的早期阶段无法检测到Bim,然后在腺泡的所有细胞中高度上调,这与在中央定位的腺泡细胞中检测到凋亡同时发生。通过RNA干扰抑制Bim表达可暂时阻断管腔凋亡并延迟管腔形成。诱导腺泡管腔填充的癌基因,如ErbB2和v-Src,通过依赖于Erk-丝裂原活化蛋白激酶的途径抑制Bim表达;然而,HPV 16 E7是一种刺激细胞增殖但不导致管腔填充的癌基因,它无法降低Bim表达。因此,Bim是体外乳腺腺泡形态发生过程中管腔凋亡的关键调节因子,可能是破坏腺上皮结构的癌基因的重要靶点。

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