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首页> 外文期刊>BMC Biochemistry >Enzymatic synthesis of long double-stranded DNA labeled with haloderivatives of nucleobases in a precisely pre-determined sequence
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Enzymatic synthesis of long double-stranded DNA labeled with haloderivatives of nucleobases in a precisely pre-determined sequence

机译:以精确的预定序列酶促合成长双链DNA,用核碱基的卤代衍生物标记

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Restriction endonucleases are widely applied in recombinant DNA technology. Among them, enzymes of class IIS, which cleave DNA beyond recognition sites, are especially useful. We use BsaI enzyme for the pinpoint introduction of halogen nucleobases into DNA. This has been done for the purpose of anticancer radio- and phototherapy that is our long-term objective. An enzymatic method for synthesizing long double-stranded DNA labeled with the halogen derivatives of nucleobases (Hal-NBs) with 1-bp accuracy has been put forward and successfully tested on three different DNA fragments containing the 5-bromouracil (5-BrU) residue. The protocol assumes enzymatic cleavage of two Polymerase-Chain-Reaction (PCR) fragments containing two recognition sequences for the same or different class IIS restriction endonucleases, where each PCR fragment has a partially complementary cleavage site. These sites are introduced using synthetic DNA primers or are naturally present in the sequence used. The cleavage sites are not compatible, and therefore not susceptible to ligation until they are partially filled with a Hal-NB or original nucleobase, resulting in complementary cohesive end formation. Ligation of these fragments ultimately leads to the required Hal-NB-labeled DNA duplex. With this approach, a synthetic, extremely long DNA fragment can be obtained by means of a multiple assembly reaction (n × maximum PCR product length: n × app. 50 kb). The long, precisely labeled DNA duplexes obtained behave in very much the same manner as natural DNA and are beyond the range of chemical synthesis. Moreover, the conditions of synthesis closely resemble the natural ones, and all the artifacts accompanying the chemical synthesis of DNA are thus eliminated. The approach proposed seems to be completely general and could be used to label DNA at multiple pre-determined sites and with halogen derivatives of any nucleobase. Access to DNAs labeled with Hal-NBs at specific position is an indispensable condition for the understanding and optimization of DNA photo- and radio-degradation, which are prerequisites for clinical trials of Hal-NBs in anticancer therapy.
机译:限制性核酸内切酶广泛应用于重组DNA技术。其中,IIS类的酶可将DNA切割到识别位点以外,因此特别有用。我们使用BsaI酶将卤素核碱基精确引入DNA中。这样做是为了抗癌放射和光疗,这是我们的长期目标。提出了一种以1 bp的精度合成用碱基碱基的卤素衍生物(Hal-NBs)标记的长双链DNA的酶促方法,并成功地对包含5-溴尿嘧啶(5-BrU)残基的三个不同DNA片段进行了测试。 。该协议假定两个包含相同或不同类IIS限制性核酸内切酶的两个识别序列的聚合酶链反应(PCR)片段的酶切,其中每个PCR片段具有部分互补的切割位点。这些位点是使用合成DNA引物引入的,或天然存在于所用序列中。切割位点是不相容的,因此直到它们被Hal-NB或原始核碱基部分填充时才易于连接,导致互补的粘性末端形成。这些片段的连接最终导致所需的Hal-NB标记的DNA双链体。通过这种方法,可以通过多次装配反应获得合成的超长DNA片段(n×最大PCR产物长度:n×约50 kb)。获得的长且精确标记的DNA双链体的行为与天然DNA几乎相同,并且超出了化学合成的范围。此外,合成条件与天然条件非常相似,因此消除了伴随化学合成DNA的所有假象。提出的方法似乎是完全通用的,可用于在多个预定位点和任何核碱基的卤素衍生物标记DNA。获得在特定位置带有Hal-NBs标记的DNA是理解和优化DNA光降解和放射降解的必不可少的条件,这是Hal-NBs在抗癌治疗中进行临床试验的前提。

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