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从嘉兰百合中分离得到一种新型木聚糖酶和α-淀粉酶抑制剂蛋白(XAIP)的晶体结构测定及抑制作用研究。

Crystal structure determination and inhibition studies of a novel xylanase and alpha-amylase inhibitor protein (XAIP) from Scadoxus multiflorus.

机构信息

Department of Biophysics, All India Institute of Medical Sciences, New Delhi, India.

出版信息

FEBS J. 2010 Jul;277(13):2868-82. doi: 10.1111/j.1742-4658.2010.07703.x. Epub 2010 May 27.

DOI:10.1111/j.1742-4658.2010.07703.x
PMID:20528916
Abstract

A novel plant protein isolated from the underground bulbs of Scadoxus multiflorus, xylanase and alpha-amylase inhibitor protein (XAIP), inhibits two structurally and functionally unrelated enzymes: xylanase and alpha-amylase. The mature protein contains 272 amino acid residues which show sequence identities of 48% to the plant chitinase hevamine and 36% to xylanase inhibitor protein-I, a double-headed inhibitor of GH10 and GH11 xylanases. However, unlike hevamine, it is enzymatically inactive and, unlike xylanase inhibitor protein-I, it inhibits two functionally different classes of enzyme. The crystal structure of XAIP has been determined at 2.0 A resolution and refined to R(cryst) and R(free) factors of 15.2% and 18.6%, respectively. The polypeptide chain of XAIP adopts a modified triosephosphate isomerase barrel fold with eight beta-strands in the inner circle and nine alpha-helices forming the outer ring. The structure contains three cis peptide bonds: Gly33-Phe34, Tyr159-Pro160 and Trp253-Asp254. Although hevamine has a long accessible carbohydrate-binding channel, in XAIP this channel is almost completely filled with the side-chains of residues Phe13, Pro77, Lys78 and Trp253. Solution studies indicate that XAIP inhibits GH11 family xylanases and GH13 family alpha-amylases through two independent binding sites located on opposite surfaces of the protein. Comparison of the structure of XAIP with that of xylanase inhibitor protein-I, and docking studies, suggest that loops alpha3-beta4 and alpha4-beta5 may be involved in the binding of GH11 xylanase, and that helix alpha7 and loop beta6-alpha6 are suitable for the interaction with alpha-amylase.

摘要

从 Scadoxus multiflorus 的地下鳞茎中分离出一种新型植物蛋白,木聚糖酶和α-淀粉酶抑制剂蛋白(XAIP),可抑制两种结构和功能上不相关的酶:木聚糖酶和α-淀粉酶。成熟蛋白含有 272 个氨基酸残基,与植物几丁质酶 hevamine 的序列同一性为 48%,与木聚糖酶抑制剂蛋白-I 的序列同一性为 36%,后者是 GH10 和 GH11 木聚糖酶的双头抑制剂。然而,与 hevamine 不同,它没有酶活性,与木聚糖酶抑制剂蛋白-I 不同,它抑制两种功能不同的酶类。XAIP 的晶体结构已在 2.0 A 分辨率下确定,并分别精修至 R(cryst) 和 R(free) 因子为 15.2%和 18.6%。XAIP 的多肽链采用改良的磷酸丙糖异构酶桶折叠,内环有 8 条β-链,外环有 9 条α-螺旋。结构包含三个顺式肽键:Gly33-Phe34、Tyr159-Pro160 和 Trp253-Asp254。尽管 hevamine 有一个可接近的碳水化合物结合通道,但在 XAIP 中,这个通道几乎完全被残基 Phe13、Pro77、Lys78 和 Trp253 的侧链填充。溶液研究表明,XAIP 通过位于蛋白质相对表面的两个独立结合位点抑制 GH11 家族木聚糖酶和 GH13 家族α-淀粉酶。XAIP 结构与木聚糖酶抑制剂蛋白-I 的结构比较,以及对接研究表明,α3-β4 和 α4-β5 环可能参与 GH11 木聚糖酶的结合,而α7 螺旋和β6-α6 环适合与α-淀粉酶相互作用。

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