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首页> 外文期刊>Japanese Journal of Cancer Research >Heterogeneous breakpoints on the immunoglobulin genes are involved in fusion with the 5' region of BCL2 in B-cell tumors.
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Heterogeneous breakpoints on the immunoglobulin genes are involved in fusion with the 5' region of BCL2 in B-cell tumors.

机译:免疫球蛋白基因上的异质断裂点与B细胞肿瘤中BCL2的5'区融合。

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摘要

The 5' flanking region of the BCL2 gene (5'-BCL2) is a breakpoint cluster of rearrangements with immunoglobulin genes (IGs). In contrast to t(14;18)(q32;q21) affecting the 3' region of BCL2, 5'-BCL2 can fuse to not only the heavy chain gene (IGH), but also two light chain gene (IGL) loci. We report here cloning and sequencing of a total of eleven 5'-BCL2 / IGs junctional areas of B-cell tumors, which were amplified by long-distance polymerase chain reaction-based assays. The breakpoints on 5'-BCL2 were distributed from 378 to 2312 bp upstream of the translational initiation site and, reflecting the alteration of regulatory sequences of BCL2, 5'-BCL2 / IGs-positive cells showed markedly higher levels of BCL2 expression than those of t(14;18)-positive cells. In contrast, the breakpoints on the IGs were variable. Two 5'-BCL2 / IGH and two 5'-BCL2 / IGLkappa junctions occurred 5' of the joining (J) segments, suggesting operation of an erroneous variable (V) / diversity (D) / J and V / J rearrangement mechanism. However, two other 5'-BCL2 / IGH junctions affected switch regions, and the kappa-deleting element, which is located 24 kb downstream of the constant region of IGLkappa, followed the 5'-BCL2 in another case. One 5'-BCL2 / IGLkappa and two 5'-BCL2 / IGLlambda junctions involved intronic regions where the normal recombination process does not occur. In the remaining one case, the 5'-BCL2 fused 3' of a Vlambda gene that was upstream of another Vlambda / Jlambda complex carrying a non-producing configuration, indicating that the receptor editing mechanism was likely involved in this rearrangement. Our study revealed heterogeneous anatomy of the 5'-BCL2 / IGs fusion gene leading to transcriptional activation of BCL2, and suggested that the mechanisms underlying the formation of this particular oncogene / IGs recombination are not identical to those of t(14;18).
机译:BCL2基因的5'侧翼区域(5'-BCL2)是带有免疫球蛋白基因(IGs)重排的断点簇。与影响BCL2 3'区域的t(14; 18)(q32; q21)相比,5'-BCL2不仅可以融合到重链基因(IGH),而且可以融合到两个轻链基因(IGL)基因座。我们在这里报告的克隆和测序的共11个B细胞肿瘤的5'-BCL2 / IGs连接区域,通过长距离聚合酶链反应为基础的检测方法进行了扩增。 5'-BCL2的断裂点分布在翻译起始位点上游378至2312 bp之间,反映了BCL2调控序列的改变,5'-BCL2 / IGs阳性细胞的BCL2表达水平明显高于BCL2的水平。 t(14; 18)阳性细胞。相反,IG的断点是可变的。两个5'-BCL2 / IGH和两个5'-BCL2 / IGLkappa连接出现在连接片段(J)的5'端,表明操作了错误的变量(V)/多样性(D)/ J和V / J重排机制。但是,另外两个5'-BCL2 / IGH结影响了开关区域,而位于IGLkappa恒定区下游24 kb下游的kappa缺失元件在另一种情况下紧随5'-BCL2。一个5'-BCL2 /IGLκ连接和两个5'-BCL2 / IGLlambda连接涉及内含子区域,在这些内含子区域中不会发生正常的重组过程。在剩余的一种情况下,5'-BCL2融合了另一个携带非生产构型的Vlambda / Jlambda复合体上游的Vlambda基因的3',表明受体编辑机制可能参与了这种重排。我们的研究揭示了导致BCL2转录激活的5'-BCL2 / IGs融合基因的异质解剖,并暗示这种特定致癌基因/ IGs重组形成的机制与t(14; 18)的机制不同。

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