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首页> 外文期刊>Journal of bacteriology >Use of targeted insertional mutagenesis to determine whether chondroitin lyase II is essential for chondroitin sulfate utilization by Bacteroides thetaiotaomicron.
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Use of targeted insertional mutagenesis to determine whether chondroitin lyase II is essential for chondroitin sulfate utilization by Bacteroides thetaiotaomicron.

机译:使用定向插入诱变来确定软骨素裂解酶II是否对拟杆菌(Theactotaides thetaiotaomicron)的硫酸软骨素利用至关重要。

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Bacteroides thetaiotaomicron produces two inducible chondroitin lyases (I and II) when it is grown on chondroitin sulfate. Both enzymes have very similar biochemical properties. To determine whether both enzymes are required for growth on chondroitin sulfate, we constructed a Bacteroides suicide vector, pE3-1, and used it to create an insertional mutation that interrupts the chondroitin lyase II gene of Bacteroides thetaiotaomicron. pE3-1 contains a 4.4-kilobase cryptic B. eggerthii plasmid (pB8-51), the Escherichia coli cloning vector pBR328, and the EcoRI D fragment from the conjugative B. fragilis plasmid pBF4. A 0.8-kilobase fragment from the center of the B. thetaiotaomicron chondroitin lyase II gene was inserted in pE3-1 to create pEG817. Although, pEG817 is stably maintained in E. coli and can be mobilized into B. thetaiotaomicron by the IncP plasmid R751, pEG817 is not maintained as a plasmid in Bacteroides spp. When pEG817 was mobilized into B. thetaiotaomicron, with selection for a drug marker on pEG817, transconjugants were obtained which had pEG817 inserted into the chondroitin lyase II gene. Western blot analysis was used to confirm that intact chondroitin lyase II is not produced in the mutant. The mutant was able to utilize chondroitin sulfate as a sole source of carbon, although no active chondroitin lyase II was produced. Thus chondroitin lyase I alone appears to be sufficient for growth on chondroitin sulfate. The mutant also had some minor changes in its outer membrane protein profile. However, there was no evidence that any of the major chondroitin sulfate-associated polypeptides in the outer membrane were affected by the insertion in the chondroitin lyase II gene.
机译:当在硫酸软骨素上生长时,拟杆菌产生两种诱导型软骨素裂解酶(I和II)。两种酶具有非常相似的生化特性。为了确定是否需要两种酶才能在硫酸软骨素上生长,我们构建了拟杆菌拟杆菌自杀载体pE3-1,并使用它来创建插入突变来中断拟杆菌拟杆菌的软骨素裂解酶II基因。 pE3-1包含一个4.4千碱基的隐密的B. eggerthii质粒(pB8-51),大肠杆菌克隆载体pBR328和来自脆弱的B. fragilis质粒pBF4的EcoRI D片段。将来自B.thetaiotaomicron软骨素裂解酶II基因中心的一个0.8碱基对的片段插入pE3-1中以创建pEG817。尽管pEG817被稳定地保持在大肠杆菌中,并且可以通过IncP质粒R751被动员到Thetaotaomicron中,但是pEG817并不被作为拟杆菌属中的质粒保持。当将pEG817动员到牛角芽孢杆菌中,并选择pEG817上的药物标记时,获得了将pEG817插入到软骨素裂解酶II基因中的转缀合物。使用蛋白质印迹分析确认突变体中未产生完整的软骨素裂合酶II。该突变体能够利用硫酸软骨素作为唯一的碳源,尽管没有产生活性软骨素裂解酶II。因此,单独的软骨素裂解酶I似乎足以在硫酸软骨素上生长。该突变体的外膜蛋白谱也有一些细微变化。但是,没有证据表明外膜中的任何主要的硫酸软骨素相关多肽都受到软骨素裂解酶II基因插入的影响。

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