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Functional expression in Pichia pastoris of human and rat intrinsic factor

机译:人类和大鼠内在因子在毕赤酵母中的功能表达

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Intrinsic factor (IF) has been expressed previously in Baculovirus with a yield (0.1-1 mg/l) that was inadequate for structural and metabolic studies. IF cDNAs were cloned into the shuttle vector pPIC9 of P. pastoris, and the proteins were induced and purified by cobalamin (Cbl) affinity chromatography. Expression of recombinant proteins revealed a major band of 49 kDa for both human and rat IF. Expression of human IF was achieved at 10-40 mg/l, but of rat IF at only 1-2 mg/l. Reaction of human IF wit a photo-activatable derivative of Cbl was demonstrated by Western blotting, and detection of IF fragments by anti-Cbl monoclonal antibody and by amino-terminal sequencing revealed at least three regions (residues 129-151, 234-254, and +294) linked to Cbl. Both recombinant human and rat [~(125)I]IF-Cbl bound to rat and guinea pig brush border membranes with similar affinity, but the binding capacity of human IF for the rat receptor was only 10% compared with rat IF. All six amino acids within the previously identified N-terminal binding region of human IF were mutated to be identical to rat IF, but the resulting chimeric IF still bound poorly to rat membranes. Mutations of residues 26/27 (Glu~(26) to Asp and Asn~(27) to Gln) and 32/34 (Ser~(32) to Thr and Tyr~(34) to Arg) showed changes in both K_a ad V_(max), with great effects on V_(max). In conclusion, P. pastoris is an expression system that produces functional human IF at a higher yield than in the baculovirus system. Cbl binding was directly demonstrated at multiple sites along the linear sequence of human IF. The receptor binding function of the amino terminal sequence 25-62 has been confirmed, but it is insufficient to reproduce all the features of IF-Cbl binding.
机译:内在因子(IF)先前已在杆状病毒中表达,产量(0.1-1 mg / l)不足以进行结构和代谢研究。将IF cDNA克隆到巴斯德毕赤酵母的穿梭载体pPIC9中,并通过钴胺素(Cbl)亲和色谱法诱导和纯化蛋白质。重组蛋白的表达揭示了人和大鼠IF的49 kDa主带。人IF的表达达到10-40mg / l,而大鼠IF的表达仅为1-2mg / l。 Western印迹证实了人IF与光活化Cbl衍生物的反应,抗Cbl单克隆抗体和氨基末端测序检测IF片段显示至少三个区域(残基129-151、234-254,和+294)链接到Cbl。重组人和大鼠[〜(125)I] IF-Cbl都以相似的亲和力与大鼠和豚鼠的刷状缘膜结合,但与大鼠IF相比,人IF对大鼠受体的结合能力仅为10%。先前鉴定的人IF的N末端结合区域内的所有六个氨基酸均突变为与大鼠IF相同,但所得嵌合IF仍与大鼠膜的结合较弱。残基26/27(Glu〜(26)突变为Asp和Asn〜(27)突变为Gln)和32/34(Ser〜(32)突变为Thr和Tyr〜(34)突变为Arg)的突变均显示K_a ad均发生变化V_(max),对V_(max)有很大影响。总之,巴斯德毕赤酵母是一种表达系统,它比杆状病毒系统产生的人IF的产量更高。在人类IF的线性序列上的多个位点直接证明了Cbl结合。已经确认了氨基末端序列25-62的受体结合功能,但是不足以再现IF-Cb1结合的所有特征。

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