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Characterization of Chromosomal Translocation Breakpoint Sequences in Solid Tumours: “An In Silico Analysis”

机译:固体肿瘤中染色体易位断点序列的表征:“计算机模拟分析”

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Chromosomal translocations that results in formation and activation of fusion oncogenes are observed in numerous solid malignancies since years back. Expression of fusion kinases in these cancers drives the initiation & progression that ultimately leads to tumour development and thus comes out to be clinically imperative in terms of diagnosis and treatment of cancer. Nonetheless, molecular mechanisms beneath these translocations remained unexplored consequently limiting our knowledge of carcinogenesis and hence is the current field where further research is required. The issue of prime focus is the precision with which the chromosomes breaks and reunites within genome. Characterization of Genomic sequences located at Breakpoint region may direct us towards the thorough understanding of mechanism leading to chromosomal rearrangement. A unique computational multi-parametric analysis was performed for characterization of genomic sequence within and around breakpoint region. This study turns out to be novel as it reveals the occurrence of Segmental Duplications flanking the breakpoints of all translocation. Breakpoint Islands were also investigated for the presence of other intricate genomic architecture and various physico-chemical parameters. Our study particularly highlights the probable role of SDs and specific genomic features in precise chromosomal breakage. Additionally, it pinpoints the potential features that may be significant for double-strand breaks leading to chromosomal rearrangements.
机译:自几年以来,在许多实体恶性肿瘤中都观察到导致融合致癌基因形成和激活的染色体易位。在这些癌症中融合激酶的表达驱动着启动和进展,最终导致了肿瘤的发展,因此就诊断和治疗癌症而言在临床上势在必行。然而,这些易位之下的分子机制仍未得到探索,因此限制了我们对致癌作用的认识,因此是当前需要进一步研究的领域。主要焦点的问题是染色体在基因组内断裂和重组的精确度。位于断点区域的基因组序列的表征可以指导我们彻底理解导致染色体重排的机制。进行了独特的计算多参数分析,以表征断点区域内和附近的基因组序列。这项研究证明它是新颖的,因为它揭示了发生在所有易位断点两侧的节段重复。还对断点岛进行了调查,以了解是否存在其他复杂的基因组结构和各种物理化学参数。我们的研究特别强调了SD和特定基因组特征在精确染色体断裂中的可能作用。此外,它还指出了可能对导致染色体重排的双链断裂很重要的潜在特征。

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