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Escaping the cut by restriction enzymes through single-strand self-annealing of host-edited 12-bp and longer synthetic palindromes.

机译:通过宿主编辑的12 bp和更长合成回文的单链自我退火,避免了限制性内切酶的作用。

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摘要

Palindromati, the massive host-edited synthetic palindromic contamination found in GenBank, is illustrated and exemplified. Millions of contaminated sequences with portions or tandems of such portions derived from the ZAP adaptor or related linkers are shown (1) by the 12-bp sequence reported elsewhere, exon Xb, 5' CCCGAATTCGGG 3', (2) by a 22-bp related sequence 5' CTCGTGCCGAATTCGGCACGAG 3', and (3) by a longer 44-bp related sequence: 5' CTCGTGCCGAATTCGGCACGAGCTCGTGCCGAATTCGGCACGAG 3'. Possible reasons for why those long contaminating sequences continue in the databases are presented here: (1) the recognition site for the plus strand (+) is single-strand self-annealed; (2) the recognition site for the minus strand (-) is not only single-strand self-annealed but also located far away from the single-strand self-annealed plus strand, rendering impossible the formation of the active EcoRI enzyme dimer to cut on 5' G/AATTC 3', its target sequence. As a possible solution, it is suggested to rely on at least two or three independent results, such as sequences obtained by independent laboratories with the use, preferably, of independent sequencing methodologies. This information may help to develop tools for bioinformatics capable to detect/remove these contaminants and to infer why some damaged sequences which cause genetic diseases escape detection by the molecular quality control mechanism of cells and organisms, being undesirably transferred unchecked through the generations.
机译:举例说明并举例说明了Palindromati,它是GenBank中发现的由宿主编辑的大规模合成回文污染。数以百万计的污染序列及其衍生自ZAP衔接子或相关接头的部分序列(1)通过其他地方报道的12-bp序列表示(1)外显子Xb,5'CCCGAATTCGGG 3',(2)22-bp相关序列5'CTCGTGCCGAATTCGGCACGAG 3'和(3)较长的44 bp相关序列:5'CTCGTGCCGAATTCGGCACGAGCTCGTGCCGAATTCGGCACGAG 3'。这些长污染序列在数据库中继续存在的可能原因如下:(1)正链(+)的识别位点是单链自退火的; (2)负链(-)的识别位点不仅是单链自退火的,而且还远离单链自退火的正链,因此不可能形成活性的EcoRI酶二聚体以进行切割在5'G / AATTC 3',其靶序列上。作为一种可能的解决方案,建议依赖至少两个或三个独立的结果,例如由独立实验室优选使用独立测序方法获得的序列。该信息可能有助于开发用于生物信息学的工具,该工具能够检测/去除这些污染物,并推断出为什么导致遗传疾病的某些受损序列无法通过细胞和生物体的分子质量控制机制进行检测,因此不经世代地不受控制地进行了转移。

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