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Structural and dynamic repercussions of heme binding and heme-protein cross-linking in Synechococcus sp PCC 7002 hemoglobin

机译:Synechococcus sp PCC 7002血红蛋白中血红素结合和血红素蛋白交联的结构和动态影响

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The recombinant two-on-two hemoglobin from the cyanobacterium Synechoccocus sp. PCC 7002 (S7002 rHb) is a bishistidine hexacoordinate globin capable of forming a covalent cross-link between a heme vinyl and a histidine in the C-terminal helix (H helix). Of the two heme axial histidines, His46 (in the E helix, distal side) and His70 (in the F helix, proximal histidine), His46 is displaced by exogenous ligands. S7002 rHb can be readily prepared as an apoglobin (apo-rHb), a non-cross-linked hemichrome (ferric iron and histidine axial ligands, rHb-R), and a cross-linked hemichrome (rHb-A). To determine the effects of heme binding and subsequent cross-linking, apo-rHb, rHb-R, and rHb-A were subjected to thermal denaturation and H-1/H-2 exchange. Interpretation of the latter data was based on nuclear magnetic resonance assignments obtained with uniformly N-15- and C-13, N-15-labeled proteins. Apo-rHb was found to contain a cooperative structural core, which was extended and stabilized by heme binding. Cross-linking resulted in further stabilization attributed mainly to an unfolded-state effect. Protection factors were higher at the cross-link site and near His70 in rHb-A than in rHb-R. In contrast, other regions became less resistant to exchange in rHb-A. These included portions of the B and E helices, which undergo large conformational changes upon exogenous ligand binding. Thus, the cross-link readjusted the dynamic properties of the heme pocket. H-1/H-2 exchange data also revealed that the B, G, and H helices formed a robust core regardless of the presence of the heme or cross-link. This motif likely encompasses the early folding nucleus of two-on-two globins.
机译:来自蓝细菌Synechocococus sp。的重组二对二血红蛋白。 PCC 7002(S7002 rHb)是一种双组氨酸六配位球蛋白,能够在C末端螺旋(H螺旋)中的血红素乙烯基和组氨酸之间形成共价交联。在两个血红素轴向组氨酸中,His46(在E螺旋的远端)和His70(在F螺旋的近端组氨酸)中,His46被外源性配体置换。 S7002 rHb可以容易地制备为载脂蛋白(apo-rHb),非交联的半色素(三价铁和组氨酸轴向配体,rHb-R)和交联的半色素(rHb-A)。为了确定血红素结合和后续交联的作用,对apo-rHb,rHb-R和rHb-A进行热变性和H-1 / H-2交换。后一个数据的解释是基于使用均匀的N-15和C-13,N-15标记蛋白获得的核磁共振结果。已发现Apo-rHb包含一个协同结构核心,该结构核心通过血红素结合而得以扩展和稳定。交联导致进一步的稳定化,这主要归因于未折叠状态效应。 rHb-A中的交联位点和His70附近的保护因子均高于rHb-R。相反,其他区域对rHb-A交换的抵抗力降低。这些包括B和E螺旋的部分,其在外源配体结合后经历大的构象变化。因此,交联重新调整了血红素袋的动态性能。 H-1 / H-2交换数据还显示,无论是否存在血红素或交联,B,G和H螺旋均形成坚固的核。该基序可能包含两个对两个球蛋白的早期折叠核。

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