Centre for Brain Research, School of Biological Sciences, The University of Auckland 1010, New Zealand.
Molecular Neurogenetics Unit, Center for Human Genetic Research, Massachusetts General Hospital, Boston, Massachusetts 02114, USA.
Sci Rep. 2017 Jan 25;7:41120. doi: 10.1038/srep41120.
Integration of exogenous DNA into a host genome represents an important route to generate animal and cellular models for exploration into human disease and therapeutic development. In most models, little is known concerning structural integrity of the transgene, precise site of integration, or its impact on the host genome. We previously used whole-genome and targeted sequencing approaches to reconstruct transgene structure and integration sites in models of Huntington's disease, revealing complex structural rearrangements that can result from transgenesis. Here, we demonstrate in the R6/2 mouse, a widely used Huntington's disease model, that integration of a rearranged transgene with coincident deletion of 5,444 bp of host genome within the gene Gm12695 has striking molecular consequences. Gm12695, the function of which is unknown, is normally expressed at negligible levels in mouse brain, but transgene integration has resulted in cortical expression of a partial fragment (exons 8-11) 3' to the transgene integration site in R6/2. This transcript shows significant expression among the extensive network of differentially expressed genes associated with this model, including synaptic transmission, cell signalling and transcription. These data illustrate the value of sequence-level resolution of transgene insertions and transcription analysis to inform phenotypic characterization of transgenic models utilized in therapeutic research.
将外源 DNA 整合到宿主基因组中是生成用于探索人类疾病和治疗开发的动物和细胞模型的重要途径。在大多数模型中,关于转基因的结构完整性、整合的确切位点或其对宿主基因组的影响知之甚少。我们之前使用全基因组和靶向测序方法来重建亨廷顿病模型中的转基因结构和整合位点,揭示了转基因可能导致的复杂结构重排。在这里,我们在 R6/2 小鼠中证明,这是一种广泛使用的亨廷顿病模型,与宿主基因组中 5444bp 的缺失相吻合的重排转基因的整合具有显著的分子后果。Gm12695 的功能未知,在小鼠大脑中的表达水平可以忽略不计,但转基因的整合导致了 R6/2 中转基因整合位点 3'的部分片段(外显子 8-11)的皮质表达。该转录本在与该模型相关的广泛差异表达基因网络中表现出显著的表达,包括突触传递、细胞信号转导和转录。这些数据说明了序列水平分辨率的转基因插入和转录分析对于告知治疗研究中使用的转基因模型的表型特征的价值。