The myb oncogene.

Gene amplification and analysis Pub Date : 1986-01-01
J S Lipsick, M A Baluda
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Abstract

The highly conserved, single copy c-myb gene has been independently transduced by two avian acute leukemia viruses, AMV and E26. This gene has also undergone insertional mutagenesis by non-acutely transforming murine leukemia viruses in a number of hematopoietic tumors. The common denominator of these retroviral activations of c-myb appears to be truncation of the normal coding region at either or both ends. The role of point mutations in myb-induced leukemogenesis is currently unknown. The products of the c-myb gene and its altered viral counterparts are nuclear proteins, a large fraction of which are associated with the nuclear matrix. In addition, the myb gene products have short half-lives and bind DNA in vitro. These features suggest that myb may act by regulating DNA replication or transcription. Consistent with this notion, the expression of c-myb is cell cycle dependent in several cell types. However, the abundant expression of c-myb in the thymus is not similarly regulated and may serve a different function. The expression of c-myb appears not to be limited to hematopoietic tissues as previously thought and the nature of the hematopoietic specificity of transformation by v-myb is not currently understood. Nevertheless, hematopoietic growth factors and their receptors appear to play an important role in such transformation. Two new experimental systems for studying myb have recently been described. First, the discovery of a myb-related gene in Drosophila should allow the application of powerful classical and molecular genetic approaches. The functional similarity of this distantly related gene to the much more closely related avian and mammalian myb genes is unknown. Second, recent studies of murine myb in normal and abnormal hematopoiesis offers several advantages relative to the avian system, such as in-bred animal strains, a wealth of specific cell-surface markers, and cloned hematopoietic growth factor and receptor genes. Isolation or construction of an acutely transforming murine myb retrovirus may thus be very useful. Several obvious goals for future research will be to define the function of myb proteins within the nucleus, to understand the regulation of myb expression during the cell cycle, to establish which molecular alterations are essential for converting c-myb into a transforming gene, and the determine the role of myb in human malignancies.

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myb致癌基因。
高度保守的单拷贝c-myb基因已被两种禽急性白血病病毒AMV和E26独立转导。在许多造血肿瘤中,该基因也经历了非急性转化小鼠白血病病毒的插入突变。这些逆转录病毒激活c-myb的共同点似乎是在一端或两端截断正常编码区。点突变在myb诱导的白血病发生中的作用目前尚不清楚。c-myb基因及其改变的病毒对应物的产物是核蛋白,其中很大一部分与核基质相关。此外,myb基因产物半衰期短,能在体外结合DNA。这些特征表明myb可能通过调节DNA复制或转录起作用。与这一概念一致,c-myb的表达在几种细胞类型中依赖于细胞周期。然而,胸腺中c-myb的丰富表达不受类似的调控,可能具有不同的功能。c-myb的表达似乎并不像以前认为的那样局限于造血组织,而且目前尚不清楚v-myb转化造血特异性的性质。然而,造血生长因子及其受体似乎在这种转化中起着重要作用。最近描述了研究myb的两个新的实验系统。首先,在果蝇中发现myb相关基因应该允许应用强大的经典和分子遗传学方法。这种远亲基因与鸟类和哺乳动物myb基因的功能相似性尚不清楚。其次,最近对小鼠myb在正常和异常造血系统中的研究提供了相对于禽类系统的一些优势,如近交动物品系、丰富的特异性细胞表面标记、克隆的造血生长因子和受体基因。因此,分离或构建急性转化小鼠myb逆转录病毒可能是非常有用的。未来研究的几个明显目标将是确定myb蛋白在细胞核内的功能,了解myb在细胞周期中的表达调控,确定哪些分子改变是将c-myb转化为转化基因所必需的,并确定myb在人类恶性肿瘤中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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