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Redirection of peroxisomal alcohol oxidase of Hansenula polymorpha to the secretory pathway

机译:多形汉逊酵母过氧化物酶体醇氧化酶重定向至分泌途径

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We report on the rerouting of peroxisomal alcohol oxidase (AO) to the secretory pathway of Hansenula polymorpha. Using the leader sequence of the Saccharomyces cerevisiae mating factor l (MFl) as sorting signal, AO was correctly sorted to the endoplasmic reticulum (ER), which strongly proliferated in these cells. The MFl presequence, but not the prosequence, was cleaved from the protein. AO protein was present in the ER as monomers that lacked FAD, and hence was enzymatically inactive. Furthermore, the recombinant AO protein was subject to gradual degradation, possibly because the protein did not fold properly. However, when the S. cerevisiae invertase signal sequence (ISS) was used, secretion of AO protein was observed in conjunction with bulk of the protein being localized to the ER. The amount of secreted AO protein increased with increasing copy numbers of the AO expression cassette integrated into the genome. The secreted AO protein was correctly processed and displayed enzyme activity.
机译:我们报告过氧化物酶体醇氧化酶(AO)改向多形汉逊酵母的分泌途径。使用酿酒酵母交配因子l(MF1)的前导序列作为分选信号,可以将AO正确分选到内质网(ER),内质网在这些细胞中强烈增殖。从蛋白质切割出MF1的前序列,而不是前序列。 AO蛋白以缺乏FAD的单体形式存在于ER中,因此无酶活性。此外,重组AO蛋白可能会逐渐降解,可能是因为该蛋白无法正确折叠。但是,当使用啤酒酵母转化酶信号序列(ISS)时,观察到AO蛋白的分泌,同时该蛋白的大部分位于ER中。随着整合到基因组中的AO表达盒的拷贝数增加,分泌的AO蛋白的数量也增加。分泌的AO蛋白经过正确处理并显示出酶活性。

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