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Squalene-hopene cyclase from Bradyrhizobium japonicum: cloning, expression, sequence analysis and comparison to other triterpenoid cyclases

机译:来自Bradyrhizobium的Squalene-Hopene Cyclase japonicum:克隆,表达,序列分析和与其他三萜类固醇酶的比较

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With the help of a PCR-based screening method, the gene encoding squalene-hopene cyclase (SHC) of Bradyrhizobium japonicum USDA 110 was isolated from a cosmid library. The SHC catalyses the cyclization of squalene to hopanoids, a class of triterpenoid lipids recently discovered in nitrogen-fixing, root-nodule-forming Bradyrhizobium bacteria. Hybridization experiments showed that the gene is present in bacteria of all Bradyrhizobium strains tested and in photosynthetic bacteria forming stem nodules on tropical legumes of the genus Aeschynomene. The Bradyrhizobium shc gene is 1983 bp in length and encodes a protein of 660 amino acid residues with a calculated molecular mass of 73671 Da. Comparison of the deduced amino acid sequence with the sequences of other SHCs revealed highest similarity (70%) to the SHC from the Gram-negative Zymomonas mobilis and lower similarity (48%) to the SHCs from the Gram-positive Alicyclobacillus acidocaldarius and Alicyclobacillus acidoterrestris. Bradyrhizobium SHC also showed similarity (38-43%) to eukaryotic oxidosqualene cyclases. The B. japonicum shc gene was expressed in Escherichia coli. The recombinant SHC catalysed the cyclization of squalene to the hopanoids hopene and diplopterol in vitro. However, the formation of the gammacerane derivative tetrahymanol, which is produced in addition to hopanoids in B. japonicum strains in vivo, could not be detected in vitro. Therefore, the presence of a second squalene cyclase in B. japonicum can be assumed. Sequence analysis of 0.5 kb upstream from the shc gene identified a partial ORF with significant similarity to the C-terminus of an ORF located immediately upstream from the shc gene in Z. mobilis. Both ORFs also showed similarity to phytoene desaturases from cyanobacteria and plants. The 3'-end of this ORF from B. japonicum overlaps with 13 bp at the 5'-end of shc. The close proximity of this ORF to shc suggests that shc and this ORF may be part of an operon.
机译:借助于基于PCR的筛选方法,从粘性文库中分离了编码Bradyrhizobium USDA 110的中央烯-Hopene环酶(SHC)的基因。 SHC催化Squalene的环化到霍鲸,一类三萜类脂质最近在氮气固定中发现,根结节形成的Bradyrhizobium细菌。杂交实验表明,基因存在于在AESchynomene属的热带豆类上形成的所有Bradyrohizobium菌株的细菌和光合细菌中的光合细菌。 Bradyrhizobium Shc基因的长度为1983bp,并编码660个氨基酸残基的蛋白质,其分子量为73671Da。将推导的氨基酸序列与其他SHC的序列的比较显示出从革兰氏阴性Zymomonas Mobilis和较低的相似性(48 %)与革兰氏阳性alicclobillus acidocaldarius和较低的相似性(48 %)揭示了Shc的最高相似性(70±%) alicyclobacillus acidoterrestris。 BradyRhizobium SHC还显示出相似性(38-43%)到真核氧化喹啉环酶。 B. japonicum shc基因在大肠杆菌中表达。重组SHC在体外催化了角鲨烯的环化到霍鲸霍养诺和副韦洛醇。然而,在体内B. japonicum菌株中的血红蛋子外,制备的γ甲烷衍生物四镁的形成不能在体外检测。因此,可以假设B. japonicum中的第二个角鲨烯环酶的存在。从SHC基因上游的0.5kb序列分析鉴定了与位于Mobilis中SHC基因的立即位于SHC基因的上游的ORF的C-末端具有显着相似性的部分ORF。两个ORF也显示出与植物和植物的植物去饱和酶相似。来自B. japonicum的3'-末端,在SHC的5'末,japonicum与13bp重叠。此ORF到SHC的附近建议SHC和该ORF可能是操纵子的一部分。

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