Sandal Indra, Seleem Mohamed N, Elswaifi Shaadi F, Sriranganathan Nammalwar, Inzana Thomas J
Center for Molecular Medicine and Infectious Diseases, Virginia-Maryland Regional College of Veterinary Medicine, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, United States.
J Microbiol Methods. 2008 Aug;74(2-3):106-9. doi: 10.1016/j.mimet.2008.04.002. Epub 2008 Apr 12.
The genetic manipulation of Histophilus somni is limited due to its high-fidelity restriction-modification system. The broad host-range shuttle plasmid pLS88 is capable of transforming some strains of H. somni, but is an inefficient vector. We have constructed an improved version of pLS88, pNS3K, that transforms H. somni strain 2336 100-fold more efficiently than its predecessor. The transformation efficiency was further increased when pNS3K was isolated from H. somni and retransformed into the same strain. As proof of principle, the lipooligosaccharide biosynthesis gene lob-2A was cloned into pNS3K and expressed in H. somni strain 129Pt, which lacks this gene. Thus, pNS3K is a useful shuttle vector for H. somni and a potential vector for genetic manipulation of this bacterium.
由于嗜眠放线杆菌具有高保真限制修饰系统,其基因操作受到限制。广宿主范围穿梭质粒pLS88能够转化一些嗜眠放线杆菌菌株,但它是一种低效载体。我们构建了pLS88的改进版本pNS3K,它转化嗜眠放线杆菌2336菌株的效率比其前身高100倍。当从嗜眠放线杆菌中分离出pNS3K并将其重新转化到同一菌株中时,转化效率进一步提高。作为原理验证,脂寡糖生物合成基因lob-2A被克隆到pNS3K中,并在缺乏该基因的嗜眠放线杆菌129Pt菌株中表达。因此,pNS3K是一种用于嗜眠放线杆菌的有用穿梭载体,也是对该细菌进行基因操作的潜在载体。