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首页> 外文期刊>Journal of Molecular Biology >ASSOCIATION OF ANTIBODY CHAINS AT DIFFERENT STAGES OF FOLDING - PROLYL ISOMERIZATION OCCURS AFTER FORMATION OF QUATERNARY STRUCTURE
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ASSOCIATION OF ANTIBODY CHAINS AT DIFFERENT STAGES OF FOLDING - PROLYL ISOMERIZATION OCCURS AFTER FORMATION OF QUATERNARY STRUCTURE

机译:第四代结构形成后折叠-脯氨酸异构化的不同阶段抗体链的结合。

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The folding pathways of multi-domain proteins are still poorly understood due to the complexity of the reaction involving domain folding, association and, in many cases, prolyl cis/trans isomerization. Here, we have established a kinetic model for the folding of the Fab fragment of the antibody MAK 33 with intact disulfide bonds. Folding of the hetero-dimeric protein from the completely denatured, oxidized state comprises the pairwise association of the two domains of each chain with those of the partner protein. Both the reactivation of the Fab fragment in which the two constituent polypeptide chains were covalently linked via a cystine bond (Fab) and that of a mutant lacking this covalent Linkage (Fab/-cys) were monitored by ELISA. Folding of the Fab fragment is a slow process, which can be described by a single exponential term. The kinetic phase reflects a folding step after the association of the two chains. The same reaction was detected in the folding of Fab/-cys but an additional rate-limiting step is involved that is due to a unimolecular step in the folding of the isolated light chain. This implies that, during Fab reactivation, Fd associates with the light chain at the stage of an earlier folding intermediate, thus eliminating the additional slow folding step of the light chain observed with Fab/-cys. Both in Fab and Fab/-cys renaturation, the folding reaction after association is determined by prolyl isomerization. Therefore, at least four different association-competent folding intermediates have to be postulated according to the folding stage of light chain and the configuration of at least one prolyl-peptide bond. Using the different substrate specificities of cyclophilin and FK506 binding protein, we have obtained evidence that Pro159 within the Fd fragment may be responsible for the observed slow folding phase after association, although three other proline residues adopt a cis configuration in the native protein. Furthermore, the data suggest that in the case of the Fab fragment, association is a prerequisite for cis/trans isomerization of prolyl peptide bonds, implying that the quaternary but not the tertiary structure determines the cis-configuration of the prolyl residue in Fd involved in the rate-limiting folding reaction. [References: 37]
机译:由于涉及域折叠,缔合以及在许多情况下脯氨酰顺/反异构化的反应的复杂性,多域蛋白的折叠途径仍知之甚少。在这里,我们建立了具有完整二硫键的抗体MAK 33 Fab片段折叠的动力学模型。从完全变性的氧化态折叠异源二聚体蛋白包括每条链的两个结构域与配对蛋白的结构域成对关联。通过ELISA监测其中两个组成多肽链通过胱氨酸键共价连接的Fab片段的重新活化(Fab)和缺乏该共价键合的突变体的重新活化(Fab / -cys)。 Fab片段的折叠是一个缓慢的过程,可以用一个指数项来描述。动力学相反映了两条链缔合后的折叠步骤。在Fab / -cys的折叠中检测到相同的反应,但是涉及额外的限速步骤,这是由于分离的轻链的折叠中的非分子步骤所致。这意味着,在Fab再活化期间,Fd在较早的折叠中间体阶段与轻链缔合,从而消除了用Fab / -cys观察到的轻链的额外缓慢折叠步骤。在Fab和Fab / -cys复性中,缔合后的折叠反应均通过脯氨酰异构化来确定。因此,根据轻链的折叠阶段和至少一个脯氨酰-肽键的构型,必须假定至少四种不同的缔合能力的折叠中间体。使用亲环蛋白和FK506结合蛋白的不同底物特异性,我们已经获得证据表明,尽管其他三个脯氨酸残基在天然蛋白中采用顺式构型,但Fd片段中的Pro159可能是导致观察到的慢折叠相的原因。此外,数据表明在Fab片段的情况下,缔合是脯氨酰肽键顺/反异构化的先决条件,这意味着四级而非三级结构决定了Fd参与的Fd中脯氨酰残基的顺式构型。限速折叠反应。 [参考:37]

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