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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Role of amino acid residue 90 in bioactivity and receptor binding capacity of tumor necrosis factor mutants.
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Role of amino acid residue 90 in bioactivity and receptor binding capacity of tumor necrosis factor mutants.

机译:氨基酸残基90在肿瘤坏死因子突变体的生物活性和受体结合能力中的作用。

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摘要

We have previously produced two bioactive lysine-deficient mutants of TNF-alpha (mutTNF-K90R,-K90P) and found that these mutants have bioactivity superior to wild-type TNF (wtTNF). Because these mutants contained same amino acid except for amino acid 90, it is unclear which amino acid residue is optimal for showing bioactivity. We speculated that this amino acid position was exchangeable, and this amino acid substitution enabled the creation of lysine-deficient mutants with enhanced bioactivity. Therefore, we produced mutTNF-K90R variants (mutTNF-R90X), in which R90 was replaced with other amino acids, to assay their bioactivities and investigated the importance of amino acid position 90. As a result, mutTNF-R90X that replaced R90 with lysine, arginine and proline were bioactive, while other mutants were not bioactive. Moreover, these three mutants showed bioactivity as good as or better than wtTNF. R90 replaced with lysine or arginine had especially superior binding affinities. These results suggest that the amino acid position 90 in TNF-alpha is important for TNF-alpha bioactivity and could be altered to improve its bioactivity to generate a "super-agonist".
机译:我们之前已经生产了两个具有生物活性的TNF-α赖氨酸缺陷型突变体(mutTNF-K90R,-K90P),发现这些突变体的生物活性优于野生型TNF(wtTNF)。由于这些突变体除氨基酸90以外都包含相同的氨基酸,因此尚不清楚哪个氨基酸残基最适合显示生物活性。我们推测该氨基酸位置是可交换的,并且该氨基酸取代使得能够创建具有增强的生物活性的赖氨酸缺陷型突变体。因此,我们生产了mutTNF-K90R变异体(mutTNF-R90X),其中R90被其他氨基酸取代,以测定其生物活性,并研究了氨基酸90位的重要性。结果,用赖氨酸替代R90的mutTNF-R90X。 ,精氨酸和脯氨酸具有生物活性,而其他突变体则没有生物活性。而且,这三个突变体显示出与wtTNF相同或更好的生物活性。用赖氨酸或精氨酸代替的R90具有特别优异的结合亲和力。这些结果表明,TNF-α中的90位氨基酸对于TNF-α的生物活性很重要,可以改变以提高其生物活性以产生“超激动剂”。

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