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视网膜母细胞瘤蛋白作为调节小鼠成骨细胞黏附的作用:对成骨和骨肉瘤形成的影响。

A role for the retinoblastoma protein as a regulator of mouse osteoblast cell adhesion: implications for osteogenesis and osteosarcoma formation.

机构信息

Biochemistry Department, Ponce School of Medicine, Ponce, Puerto Rico.

出版信息

PLoS One. 2010 Nov 11;5(11):e13954. doi: 10.1371/journal.pone.0013954.

Abstract

The retinoblastoma protein (pRb) is a cell cycle regulator inactivated in most human cancers. Loss of pRb function results from mutations in the gene coding for pRb or for any of its upstream regulators. Although pRb is predominantly known as a cell cycle repressor, our data point to additional pRb functions in cell adhesion. Our data show that pRb regulates the expression of a wide repertoire of cell adhesion genes and regulates the assembly of the adherens junctions required for cell adhesion. We conducted our studies in osteoblasts, which depend on both pRb and on cell-to-cell contacts for their differentiation and function. We generated knockout mice in which the RB gene was excised specifically in osteoblasts using the cre-lox P system and found that osteoblasts from pRb knockout mice did not assemble adherens junction at their membranes. pRb depletion in wild type osteoblasts using RNAi also disrupted adherens junctions. Microarrays comparing pRb-expressing and pRb-deficient osteoblasts showed that pRb controls the expression of a number of cell adhesion genes, including cadherins. Furthermore, pRb knockout mice showed bone abnormalities consistent with osteoblast adhesion defects. We also found that pRb controls the function of merlin, a well-known regulator of adherens junction assembly, by repressing Rac1 and its effector Pak1. Using qRT-PCR, immunoblots, co-immunoprecipitation assays, and immunofluorescent labeling, we observed that pRb loss resulted in Rac1 and Pak1 overexpression concomitant with merlin inactivation by Pak1, merlin detachment from the membrane, and adherens junction loss. Our data support a pRb function in cell adhesion while elucidating the mechanism for this function. Our work suggests that in some tumor types pRb inactivation results in both a loss of cell cycle control that promotes initial tumor growth as well as in a loss of cell-to-cell contacts, which contributes to later stages of metastasis.

摘要

视网膜母细胞瘤蛋白(pRb)是大多数人类癌症中失活的细胞周期调节剂。pRb 功能的丧失源于编码 pRb 或其上游调节剂的基因发生突变。尽管 pRb 主要作为细胞周期抑制剂而被人们所熟知,但我们的数据表明其在细胞黏附中具有额外的功能。我们的数据表明,pRb 调节广泛的细胞黏附基因的表达,并调节细胞黏附所需的黏着连接的组装。我们在成骨细胞中进行了研究,这些细胞依赖于 pRb 和细胞间接触来进行分化和发挥功能。我们使用 cre-lox P 系统特异性地在成骨细胞中敲除 RB 基因,生成了敲除小鼠,并发现 pRb 敲除小鼠的成骨细胞不能在其细胞膜上组装黏着连接。使用 RNAi 耗尽野生型成骨细胞中的 pRb 也破坏了黏着连接。比较 pRb 表达和成骨细胞中 pRb 缺失的微阵列显示,pRb 控制着许多细胞黏附基因的表达,包括钙黏蛋白。此外,pRb 敲除小鼠表现出与成骨细胞黏附缺陷一致的骨骼异常。我们还发现 pRb 通过抑制 Rac1 和其效应物 Pak1 来控制黏着连接组装的已知调节剂 merlin 的功能。通过 qRT-PCR、免疫印迹、共免疫沉淀测定和免疫荧光标记,我们观察到 pRb 缺失导致 Rac1 和 Pak1 的过表达,同时 merlin 被 Pak1 失活,merlin 从膜上脱离,黏着连接丢失。我们的数据支持 pRb 在细胞黏附中的功能,同时阐明了这一功能的机制。我们的工作表明,在某些肿瘤类型中,pRb 的失活不仅导致细胞周期控制的丧失,从而促进了初始肿瘤的生长,而且导致细胞间接触的丧失,这有助于转移的后期阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e58/2978706/e5dd3624a17a/pone.0013954.g001.jpg

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