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与T淋巴细胞白血病而非其他白血病相关的SRS 19-6小鼠白血病病毒增强子序列一个亚区域的串联化。

Tandemization of a subregion of the enhancer sequences from SRS 19-6 murine leukemia virus associated with T-lymphoid but not other leukemias.

作者信息

Granger S W, Bundy L M, Fan H

机构信息

Department of Molecular Biology and Biochemistry and Cancer Research Institute, University of California, Irvine, California 92697-3900, USA.

出版信息

J Virol. 1999 Sep;73(9):7175-84. doi: 10.1128/JVI.73.9.7175-7184.1999.

Abstract

Most simple retroviruses induce tumors of a single cell type when infected into susceptible hosts. The SRS 19-6 murine leukemia virus (MuLV), which originated in mainland China, induces leukemias of multiple cellular origins. Indeed, infected mice often harbor more than one tumor type. Since the enhancers of many MuLVs are major determinants of tumor specificity, we tested the role of the SRS 19-6 MuLV enhancers in its broad disease specificity. The enhancer elements of the Moloney MuLV (M-MuLV) were replaced by the 170-bp enhancers of SRS 19-6 MuLV, yielding the recombinants DeltaMo+SRS(+) and DeltaMo+SRS(-) M-MuLV. M-MuLV normally induces T-lymphoid tumors in all infected mice. Surprisingly, when neonatal mice were inoculated with DeltaMo+SRS(+) or DeltaMo+SRS(-) M-MuLV, all tumors were of T-lymphoid origin, typical of M-MuLV rather than SRS 19-6 MuLV. Thus, the SRS 19-6 MuLV enhancers did not confer the broad disease specificity of SRS 19-6 MuLV to M-MuLV. However, all tumors contained DeltaMo+SRS M-MuLV proviruses with common enhancer alterations. These alterations consisted of tandem multimerization of a subregion of the SRS 19-6 enhancers, encompassing the conserved LVb and core sites and adjacent sequences. Moreover, when tumors induced by the parental SRS 19-6 MuLV were analyzed, most of the T-lymphoid tumors had similar enhancer alterations in the same region whereas tumors of other lineages retained the parental SRS 19-6 MuLV enhancers. These results emphasize the importance of a subregion of the SRS 19-6 MuLV enhancer in induction of T-cell lymphoma. The relevant sequences were consistent with crucial sequences for T-cell lymphomagenesis identified for other MuLVs such as M-MuLV and SL3-3 MuLV. These results also suggest that other regions of the SRS 19-6 MuLV genome contribute to its broad leukemogenic spectrum.

摘要

大多数简单逆转录病毒感染易感宿主时会诱发单一细胞类型的肿瘤。源自中国大陆的SRS 19-6鼠白血病病毒(MuLV)会诱发多种细胞起源的白血病。实际上,受感染的小鼠常常携带不止一种肿瘤类型。由于许多MuLV的增强子是肿瘤特异性的主要决定因素,我们测试了SRS 19-6 MuLV增强子在其广泛疾病特异性中的作用。莫洛尼MuLV(M-MuLV)的增强子元件被SRS 19-6 MuLV的170 bp增强子取代,产生重组体DeltaMo+SRS(+)和DeltaMo+SRS(-) M-MuLV。M-MuLV通常在所有受感染小鼠中诱发T淋巴细胞肿瘤。令人惊讶的是,当新生小鼠接种DeltaMo+SRS(+)或DeltaMo+SRS(-) M-MuLV时,所有肿瘤均起源于T淋巴细胞,这是M-MuLV而非SRS 19-6 MuLV的典型特征。因此,SRS 19-6 MuLV增强子并未将SRS 19-6 MuLV的广泛疾病特异性赋予M-MuLV。然而,所有肿瘤都含有具有共同增强子改变的DeltaMo+SRS M-MuLV前病毒。这些改变包括SRS 19-6增强子一个亚区域的串联多聚化,该亚区域包含保守的LVb和核心位点以及相邻序列。此外,当分析亲本SRS 19-6 MuLV诱发的肿瘤时,大多数T淋巴细胞肿瘤在同一区域具有相似的增强子改变,而其他谱系的肿瘤保留了亲本SRS 19-6 MuLV增强子。这些结果强调了SRS 19-6 MuLV增强子一个亚区域在诱导T细胞淋巴瘤中的重要性。相关序列与为其他MuLV(如M-MuLV和SL3-3 MuLV)鉴定的T细胞淋巴瘤发生关键序列一致。这些结果还表明,SRS 19-6 MuLV基因组的其他区域对其广泛的致白血病谱有贡献。

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