Liu Geyi, Geurts Aron M, Yae Kojiro, Srinivasan A R, Fahrenkrug Scott C, Largaespada David A, Takeda Junji, Horie Kyoji, Olson Wilma K, Hackett Perry B
Department of Genetics, Cell Biology, and Development and The Arnold and Mabel Beckman Center for Transposon Research at the University of Minnesota, Minneapolis, MN 55455, USA.
J Mol Biol. 2005 Feb 11;346(1):161-73. doi: 10.1016/j.jmb.2004.09.086. Epub 2004 Dec 30.
The Sleeping Beauty (SB) transposon is a Tc1/mariner family transposon that has applications in vertebrate animals for gene transfer, gene-tagging, and human gene therapy. In this study, we analyzed the target-site preferences of the SB transposon. At the genomic level, integration of SB transposons with respect to genes (exons and introns) and intergenic regions appears fairly random but not on a micro-scale. Although there appears to be a consensus sequence around the vicinity of the target sites, the primary sequence is not the determining factor for target selection. When integrations were examined over a limited topography, the sites used most often for integration did not match the consensus sequence. Rather, a unique deformation inherent in the sequence may be a recognition signal for target selection. The deformation is characterized by an angling of the target site such that the axis around the insertion site is off-center, the rotation of the helix (twisting) is non-uniform and there is an increase in the distance between the central base-pairs. Our observations offer several hypothetical insights into the transposition process. Our observations suggest that particular deformations of the double helix predicted by the V(step) algorithm can distinguish TA sites that vary by about 16-fold in their preferences for accommodating insertions of SB transposons.
睡美人(SB)转座子是一种Tc1/水手家族转座子,在脊椎动物中可用于基因转移、基因标记和人类基因治疗。在本研究中,我们分析了SB转座子的靶位点偏好性。在基因组水平上,SB转座子相对于基因(外显子和内含子)和基因间区域的整合似乎相当随机,但在微观尺度上并非如此。尽管在靶位点附近似乎存在一个共有序列,但一级序列并非靶位点选择的决定因素。当在有限的拓扑结构上检查整合情况时,最常被用于整合的位点与共有序列并不匹配。相反,序列中固有的一种独特变形可能是靶位点选择的识别信号。这种变形的特征是靶位点呈一定角度,使得插入位点周围的轴偏离中心,螺旋的旋转(扭曲)不均匀,并且中心碱基对之间的距离增加。我们的观察结果为转座过程提供了一些假设性的见解。我们的观察结果表明,由V(step)算法预测的双螺旋的特定变形可以区分对SB转座子插入偏好相差约16倍的TA位点。