Wentzel A, Christmann A, Krätzner R, Kolmar H
Department of Molecular Genetics and Preparative Molecular Biology, Institute for Microbiology and Genetics, Georg-August-University, 37077 Göttingen, Federal Republic of Germany.
J Biol Chem. 1999 Jul 23;274(30):21037-43. doi: 10.1074/jbc.274.30.21037.
The Ecballium elaterium trypsin inhibitor II (EETI-II) contains 28 amino acids and three disulfides forming a cystine knot. Reduced EETI-II refolds spontaneously and quantitatively in vitro and regains its native structure. Due to its high propensity to form a reverse turn, the GPNG sequence of segment 22-25 comprising a beta-turn in native EETI-II is a possible candidate for a folding initiation site. We generated a molecular repertoire of EETI-II variants with variegated 22-25 tetrapeptide sequences and presented these proteins on the outer membrane of Escherichia coli cells via fusion to the Iga(beta) autotransporter. Functional trypsin-binding variants were selected by combination of magnetic and fluorescence-activated cell sorting. At least 1-5% of all possible tetrapeptide sequences were compatible with formation of the correct three disulfides. Occurrence of amino acid residues in functional variants is positively correlated with their propensity to be generally found in beta-turns. The folding pathway of two selected variants, EETI-beta(NEDE) and EETI-beta(TNNK), was found to be indistinguishable from EETI-II and occurs through formation of a stable 2-disulfide intermediate. Substantial amounts of misfolded byproducts, however, were obtained upon refolding of these variants corroborating the importance of the wild type EETI-II GPNG sequence to direct quantitative formation of the cystine knot architecture.
喷瓜胰蛋白酶抑制剂II(EETI-II)含有28个氨基酸和三个形成胱氨酸结的二硫键。还原型EETI-II在体外能自发且定量地重新折叠,并恢复其天然结构。由于其形成反向转角的倾向较高,天然EETI-II中包含β-转角的22-25片段的GPNG序列可能是折叠起始位点的候选序列。我们生成了具有多样化22-25四肽序列的EETI-II变体分子库,并通过与Iga(β)自转运蛋白融合将这些蛋白质呈现在大肠杆菌细胞的外膜上。通过磁性和荧光激活细胞分选相结合的方法筛选出功能性胰蛋白酶结合变体。所有可能的四肽序列中至少有1-5%与正确形成三个二硫键兼容。功能性变体中氨基酸残基的出现与其在β-转角中普遍存在的倾向呈正相关。发现两个选定变体EETI-β(NEDE)和EETI-β(TNNK)的折叠途径与EETI-II无法区分,并且通过形成稳定的二硫键中间体发生。然而,这些变体重新折叠时会产生大量错误折叠的副产物,这证实了野生型EETI-II的GPNG序列对指导胱氨酸结结构定量形成的重要性。