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Assay and heterologous expression in Pichia pastoris of plant cell wall type-II membrane anchored glycosyltransferases

机译:植物细胞壁II型膜锚定糖基转移酶在毕赤酵母中的测定及异源表达

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Two Arabidopsis xylosyltransferases, designated RGXT1 and RGXT2, were recently expressed in Baculovirus transfected insect cells and by use of the free sugar assay shown to catalyse transfer of D-xylose from UDP-α-D-xylose to L-fucose and derivatives hereof. We have now examined expression of RGXT1 and RGXT2 in Pichia pastoris and compared the two expression systems. Pichia transformants, expressing soluble, secreted forms of RGXT1 and RGXT2 with an N- or C-terminal Flag-tag, accumulated recombinant, hyper-glycosylated proteins at levels between 6 and 16 mg protein • L-1 in the media fractions. When incubated with 0.5 M L-fucose and UDP-D-xylose all four RGXT1 and RGXT2 variants catalyzed transfer of D-xylose onto L-fucose with estimated turnover numbers between 0.15 and 0.3 sec-1, thus demonstrating that a free C-terminus is not required for activity. N- and O-glycanase treatment resulted in deglycosylation of all four proteins, and this caused a loss of xylosyltransferase activity for the C-terminally but not the N-terminally Flag-tagged proteins. The RGXT1 and RGXT2 proteins displayed an absolute requirement for Mn2+ and were active over a broad pH range. Simple dialysis of media fractions or purification on phenyl Sepharose columns increased enzyme activities 2-8 fold enabling direct verification of the product formed in crude assay mixtures using electrospray ionization mass spectrometry. Pichia expressed and dialysed RGXT variants yielded activities within the range 0.011 to 0.013 U (1 U = 1 nmol conversion of substrate • min-1 • µl medium-1) similar to those of RGXT1 and RGXT2 expressed in Baculovirus transfected insect Sf9 cells. In summary, the data presented suggest that Pichia is an attractive host candidate for expression of plant glycosyltransferases.
机译:最近在杆状病毒转染的昆虫细胞中表达了两种拟南芥木糖基转移酶,分别命名为RGXT1和RGXT2,并且通过使用游离糖测定法可催化D-木糖从UDP-α-D-木糖向L-岩藻糖及其衍生物的转移。我们现在检查了毕赤酵母中RGXT1和RGXT2的表达,并比较了两种表达系统。毕赤酵母转化子表达带有N或C端Flag标签的可溶性,分泌形式的RGXT1和RGXT2,积累了重组的,高糖基化的蛋白质,蛋白质含量为6至16 mg•L -1 在媒体部分。当与0.5 M L-岩藻糖和UDP-D-木糖一起孵育时,所有四个RGXT1和RGXT2变体均催化D-木糖向L-岩藻糖的转移,估计周转数介于0.15和0.3 sec -1 之间,因此表明活动不需要游离的C末端。 N-和O-聚糖酶处理导致所有四种蛋白质的去糖基化,这导致C末端但N末端带有Flag标签的蛋白质的木糖基转移酶活性丧失。 RGXT1和RGXT2蛋白显示出对Mn 2 + 的绝对要求,并在很宽的pH范围内具有活性。简单的介质馏分透析或在苯基琼脂糖凝胶柱上纯化可将酶活性提高2-8倍,从而可以使用电喷雾电离质谱直接验证在粗测定混合物中形成的产物。毕赤酵母表达和透析的RGXT变体产生的活性在0.011至0.013 U(底物1 U = 1 nmol转化•min -1 •µl培养基 -1 )范围内在杆状病毒转染的昆虫Sf9细胞中表达的RGXT1和RGXT2的表达。总之,提出的数据表明毕赤酵母是表达植物糖基转移酶的有吸引力的宿主候选物。

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