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v-ErbB的膜定位是不依赖配体进行转化所必需的,但并不充分。

Membrane localization of v-ErbB is required but not sufficient for ligand-independent transformation.

作者信息

Danielsen Andrew J, Christensen Trace A, Lovejoy Courtney A, Adelsman Margaret A, Connolly Denise C, Maihle Nita J

机构信息

Tumor Biology Program, Department of Biochemistry and Molecular Biology, Mayo Clinic, Rochester, MN 55905, USA.

出版信息

Exp Cell Res. 2004 Jun 10;296(2):285-93. doi: 10.1016/j.yexcr.2004.01.023.

Abstract

The v-ErbB retroviral oncogene is a transduced, mutated copy of the avian EGF receptor gene, and its expression is sufficient to induce tumor formation in vivo. The structural alterations that release the oncogenic potential of the v-ErbB oncogene are similar to EGFR gene mutations described in human tumors. Thus, the study of v-ErbB tumor biology offers a useful model through which we can gain insight into the mechanism of EGFR-induced malignancies. Despite years of study, however, questions remain regarding the domains of v-ErbB required for oncogenicity. We sought to clarify the role of the transmembrane domain of v-ErbB during transformation using S3-v-ErbB, an acutely transforming retroviral oncogene isolated from avian sarcomas. Infection of primary fibroblasts with a retroviral vector containing S3-v-ErbB results in the formation of a transformation-associated phosphoprotein signaling complex, soft agar colony formation, and the rapid induction of highly vascularized sarcomas in vivo. To address contribution of the transmembrane domain of S3-v-ErbB during these processes, we constructed a mutant version of this oncogene with a precise deletion in this domain. Specifically, the S3-v-ErbB-TM- mutant was created through an in-frame deletion of the entire transmembrane domain. Primary fibroblasts expressing this S3-v-ErbB-TM- mutant fail to form a characteristic transformation-associated phosphoprotein complex and do not grow in an anchorage-independent manner. In addition, day-old chicks injected with a helper-independent retrovirus expressing the S3-v-ErbB-TM- mutant exhibit only limited tumor formation in vivo. These results demonstrate that the transmembrane domain and, consequently membrane localization, are essential for S3-v-ErbB-mediated transformation.

摘要

v-ErbB逆转录病毒癌基因是禽表皮生长因子受体(EGF)基因的转导突变体,其表达足以在体内诱导肿瘤形成。释放v-ErbB癌基因致癌潜能的结构改变类似于人类肿瘤中描述的表皮生长因子受体(EGFR)基因突变。因此,对v-ErbB肿瘤生物学的研究提供了一个有用的模型,通过它我们可以深入了解EGFR诱导的恶性肿瘤的机制。然而,尽管经过多年研究,关于v-ErbB致癌性所需的结构域仍存在问题。我们试图利用S3-v-ErbB阐明v-ErbB跨膜结构域在转化过程中的作用,S3-v-ErbB是一种从禽肉瘤中分离出的急性转化逆转录病毒癌基因。用含有S3-v-ErbB的逆转录病毒载体感染原代成纤维细胞会导致形成与转化相关的磷蛋白信号复合物、软琼脂集落形成,并在体内快速诱导高度血管化的肉瘤。为了研究S3-v-ErbB跨膜结构域在这些过程中的作用,我们构建了该癌基因在这个结构域有精确缺失的突变体。具体来说,通过框内缺失整个跨膜结构域创建了S3-v-ErbB-TM-突变体。表达这种S3-v-ErbB-TM-突变体的原代成纤维细胞无法形成特征性的与转化相关的磷蛋白复合物,也不能以不依赖贴壁的方式生长。此外,注射表达S3-v-ErbB-TM-突变体的无辅助逆转录病毒的一日龄雏鸡在体内仅表现出有限的肿瘤形成。这些结果表明,跨膜结构域以及因此的膜定位对于S3-v-ErbB介导的转化至关重要。

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