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Functional and molecular characterization of novel Hansenula polymorpha genes, HpPMT5 and HpPMT6, encoding protein O-mannosyltransferases

机译:编码蛋白O-甘露糖基转移酶的新型汉逊酵母多形汉逊基因HpPMT5和HpPMT6的功能和分子表征

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The genome of the thermotolerant methylotrophic yeast Hansenula polymorpha reveals the presence of five PMT homologues (HpPMT1, HpPMT2, HpPMT4, HpPMT5, and HpPMT6) encoding protein O-mannosyltransferases. Here, we report on the systematic characterization of HpPMT5 and HpPMT6, encoding novel PMT1 and PMT2 subfamily members, respectively. Although no apparent growth defects were detected in the Hppmt5 Delta and Hppmt6 Delta single mutants, the single mutants showed dramatic sensitivity to the Pmt1p inhibitor, and the Hppmt1pmt5 Delta and Hppmt1pmt6 Delta double mutants displayed increased susceptibility to cell wall-disturbing reagents. Activation of the cell wall integrity signaling pathway in the double mutant strains was further indicated by the markedly induced phosphorylation of MAP kinases, such as HpMpk1p and HpHog1p. Noticeably, O-mannosylation of the surface glycoproteins HpWsc1p and HpMid2p became severely defective only in the double mutants, supporting the involvement of HpPmt5p and HpPmt6p in O-mannosylation of these sensor proteins. On the other hand, co-immunoprecipitation experiments revealed only marginal interaction between HpPmt5p and HpPmt2p, even in the absence of HpPmt1p. Taken together, our results suggest that the functions of HpPmt5p and HpPmt6p are minor but become crucial upon the loss of HpPmt1p for protein O-mannosylation, which is essential for cell growth, cell wall integrity, and stress resistance in H. polymorpha
机译:耐高温甲基营养型多形汉逊酵母的基因组揭示了五个编码蛋白O-甘露糖基转移酶的PMT同源物(HpPMT1,HpPMT2,HpPMT4,HpPMT5和HpPMT6)的存在。在这里,我们报告HpPMT5和HpPMT6的系统表征,分别编码新颖的PMT1和PMT2亚家族成员。尽管在Hppmt5 Delta和Hppmt6 Delta单一突变体中未检测到明显的生长缺陷,但单个突变体对Pmt1p抑制剂表现出了极大的敏感性,而Hppmt1pmt5 Delta和Hppmt1pmt6 Delta双重突变体显示出对细胞壁干扰试剂的敏感性更高。 MAP激酶(如HpMpk1p和HpHog1p)的明显诱导的磷酸化进一步表明了双突变株中细胞壁完整性信号通路的激活。值得注意的是,表面糖蛋白HpWsc1p和HpMid2p的O-甘露糖基化仅在双突变体中变得严重缺陷,支持HpPmt5p和HpPmt6p参与这些传感器蛋白的O-甘露糖基化。另一方面,共同免疫沉淀实验表明,即使在没有HpPmt1p的情况下,HpPmt5p和HpPmt2p之间也只有边际相互作用。两者合计,我们的结果表明,HpPmt5p和HpPmt6p的功能虽然很小,但在蛋白质O-甘露糖基化丧失HpPmt1p时变得至关重要,这对于细胞生长,细胞壁完整性和多形汉字抗逆性至关重要

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