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在幽门螺杆菌中,糖苷转移酶 Jhp0562 和 GalT 的新型功能与 Lewis 抗原合成和变异有关。

Novel functions for glycosyltransferases Jhp0562 and GalT in Lewis antigen synthesis and variation in Helicobacter pylori.

出版信息

Infect Immun. 2012 Apr;80(4):1593-605. doi: 10.1128/IAI.00032-12. Epub 2012 Jan 30.

Abstract

Lewis (Le) antigens are fucosylated oligosaccharides present in the Helicobacter pylori lipopolysaccharide. Expression of these antigens is believed to be important for H. pylori colonization, since Le antigens also are expressed on the gastric epithelia in humans. A galactosyltransferase encoded by β-(1,3)galT is essential for production of type 1 (Le(a) and Le(b)) antigens. The upstream gene jhp0562, which is present in many but not all H. pylori strains, is homologous to β-(1,3)galT but is of unknown function. Because H. pylori demonstrates extensive intragenomic recombination, we hypothesized that these two genes could undergo DNA rearrangement. A PCR screen and subsequent sequence analyses revealed that the two genes can recombine at both the 5' and 3' ends. Chimeric β-(1,3)galT-like alleles can restore function in a β-(1,3)galT null mutant, but neither native nor recombinant jhp0562 can. Mutagenesis of jhp0562 revealed that it is essential for synthesis of both type 1 and type 2 Le antigens. Transcriptional analyses of both loci showed β-(1,3)galT expression in all wild-type (WT) and mutant strains tested, whereas jhp0562 was not expressed in jhp0562 null mutants, as expected. Since jhp0562 unexpectedly displayed functions in both type 1 and type 2 Le synthesis, we asked whether galT, part of the type 2 synthesis pathway, had analogous functions in type 1 synthesis. Mutagenesis and complementation analysis confirmed that galT is essential for Le(b) production. In total, these results demonstrate that galT and jhp0562 have functions that cross the expected Le synthesis pathways and that jhp0562 provides a substrate for intragenomic recombination to generate diverse Le synthesis enzymes.

摘要

Lewis (Le) 抗原是存在于幽门螺杆菌脂多糖中的糖基化寡糖。这些抗原的表达被认为对幽门螺杆菌的定植很重要,因为 Le 抗原也在人类胃上皮细胞中表达。编码β-(1,3)galT 的半乳糖基转移酶对于产生 1 型(Le(a) 和 Le(b))抗原是必不可少的。jhp0562 基因存在于许多但不是所有的幽门螺杆菌菌株中,与β-(1,3)galT 同源,但功能未知。由于幽门螺杆菌表现出广泛的基因组内重组,我们假设这两个基因可能发生 DNA 重排。PCR 筛选和随后的序列分析表明,这两个基因可以在 5'和 3'端发生重组。嵌合β-(1,3)galT 样等位基因可以恢复β-(1,3)galT 缺失突变体的功能,但无论是天然的还是重组的 jhp0562 都不能。jhp0562 的诱变表明,它对于 1 型和 2 型 Le 抗原的合成都是必不可少的。对两个基因座的转录分析显示,所有测试的野生型(WT)和突变株中都表达了β-(1,3)galT,而 jhp0562 在 jhp0562 缺失突变体中没有表达,正如预期的那样。由于 jhp0562 出人意料地在 1 型和 2 型 Le 合成中具有功能,我们询问了 2 型合成途径的一部分 galT 是否在 1 型合成中具有类似的功能。诱变和互补分析证实 galT 对于 Le(b) 的产生是必不可少的。总的来说,这些结果表明 galT 和 jhp0562 具有跨越预期的 Le 合成途径的功能,并且 jhp0562 为基因组内重组提供了产生不同的 Le 合成酶的底物。

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