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首页> 外文期刊>Journal of Molecular Biology >Both binding sites of the starch-binding domain of Aspergillus niger glucoamylase are essential for inducing a conformational change in amylose
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Both binding sites of the starch-binding domain of Aspergillus niger glucoamylase are essential for inducing a conformational change in amylose

机译:黑曲霉葡糖淀粉酶的淀粉结合结构域的两个结合位点对于诱导直链淀粉的构象变化是必不可少的

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摘要

The interaction of the two binding sites of the starch-binding domain (SBD) of Aspergillus niger glucoamylase 1 (GA-I) with substrate has been investigated by using atomic force microscopy (AFM) and UV difference spectroscopy in combination with site-specific mutants of both SBD and GA-I. The SBD possesses two binding sites with distinct affinities towards the soluble linear substrate maltoheptaose; dissociation constants (K-d) of 17 and 0.95 muM were obtained for W563 K (binding site 2 mutant) and W590 K (binding site I mutant), respectively, compared to an apparent K-d of 23 muM for the wild-type SBD. Further, the two sites are almost but not totally independent of each other for binding, since abolishing one site does not prevent the amylose chain binding to the other site. Using AFM, we show that the amylose chains undergo a conformational change to form loops upon binding to the SBD, using either the recombinant wild-type SBD or a catalytically inactive mutant of GA-I. This characteristic conformation of amylose is lost when one of the SBD binding sites is eliminated by site-directed mutagenesis, as seen with the mutants W563 K or W590 K. Therefore, although each binding site is capable of simple binding to a ligand, both sites must be functional in order to induce a gross conformational change of the amylose molecules. Taken together these data suggest that for the complex with soluble amylose, SBD binds to a single amylose chain, site 1 being responsible for the initial recognition of the chain and site 2 being involved in tighter binding, leading to the circularisation of the amylose chain observed by AFM. Binding of the SBD to the amylose chain results in a novel two-turn helical amylose complex structure. The binding of parallel amylosic chains to the SBD may provide a basis for understanding the role of the SBD in facilitating enzymatic degradation of crystalline starches by glucoamylase 1.
机译:黑曲霉葡糖淀粉酶1(GA-1)的淀粉结合域(SBD)的两个结合位点与底物的相互作用已通过使用原子力显微镜(AFM)和紫外差光谱法结合位点特异性突变体进行了研究SBD和GA-I。 SBD具有两个对可溶性线性底物麦芽七糖具有不同亲和力的结合位点。与野生型SBD的表观K-d为23μM相比,W563K(结合位点2突变体)和W590K(结合位点I突变体)的解离常数(K-d)分别为17和0.95μM。此外,两个位点几乎但并非彼此完全独立地结合,因为废除一个位点不会阻止直链淀粉与另一位点的结合。使用AFM,我们显示使用重组野生型SBD或GA-1的无催化活性的突变体,直链淀粉链与SBD结合后会发生构象变化,形成环。当通过定点诱变消除SBD结合位点之一时,直链淀粉的这种特征构象消失了,如突变体W563 K或W590 K所见。因此,尽管每个结合位点都能够简单地与配体结合,但两个位点为了诱导直链淀粉分子的总体构象变化,必须具有一定的功能。这些数据加在一起表明,对于具有可溶性直链淀粉的复合物,SBD与一条直链淀粉链结合,位点1负责链的初始识别,位点2参与更紧密的结合,导致观察到的直链淀粉环化由AFM。 SBD与直链淀粉链的结合导致了新颖的两匝螺旋直链淀粉复合结构。平行淀粉链与SBD的结合可以为理解SBD在促进葡糖淀粉酶1结晶淀粉的酶促降解中的作用提供基础。

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