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通过化学交联和高分辨率傅里叶变换离子回旋共振质谱法绘制钙调蛋白-蜂毒肽复合物的拓扑结构并确定其低分辨率三维结构:多种结合模式的直接证明

Mapping the topology and determination of a low-resolution three-dimensional structure of the calmodulin-melittin complex by chemical cross-linking and high-resolution FTICRMS: direct demonstration of multiple binding modes.

作者信息

Schulz Daniela M, Ihling Christian, Clore G Marius, Sinz Andrea

机构信息

Biotechnological-Biomedical Center, Faculty of Chemistry and Mineralogy, University of Leipzig, D-04103 Leipzig, Germany.

出版信息

Biochemistry. 2004 Apr 27;43(16):4703-15. doi: 10.1021/bi036149f.

Abstract

Calmodulin serves as a calcium-dependent regulator in many metabolic pathways and is known to bind with high affinity to various target proteins and peptides. One such target is the small peptide melittin, the principal component of honeybee venom. The calmodulin-melittin system was used as a model system to gain further insight into target recognition of calmodulin. Using chemical cross-linking in combination with high-resolution Fourier transform ion cyclotron resonance mass spectrometry (FTICRMS), we have determined the interacting regions within the calcium-dependent calmodulin-melittin complex and thus the orientation of bound melittin. Using ambiguous distance restraints derived from the chemical cross-linking data in combination with recently developed computational methods of conjoined rigid body/torsion angle simulated annealing, we were able to generate low-resolution three-dimensional structure models of the calmodulin-melittin complex, for which no high-resolution structure exists to date. Our data provide evidence for the first time that calmodulin can recognize target peptides in two opposing orientations simultaneously. The general procedure for mapping interacting regions within the complex involves conjugation of calmodulin and melittin with several cross-linking reagents possessing different specificities and spacer lengths, followed by enzymatic proteolysis of the cross-linked complex. The highly complex peptide mixtures were subsequently analyzed by nano-HPLC, which was online coupled to a FTICR mass spectrometer equipped with a nano-electrospray ionization source. The mass spectra obtained in this manner were screened for possible cross-linking products using customized software programs. This integrated approach, exemplified for mapping the topology of the calmodulin-melittin complex, is likely to have wide-ranging implications for structural studies on protein-protein interactions.

摘要

钙调蛋白在许多代谢途径中作为钙依赖性调节剂,已知它能与各种靶蛋白和肽以高亲和力结合。其中一个靶标是小肽蜂毒肽,它是蜂毒的主要成分。钙调蛋白 - 蜂毒肽系统被用作模型系统,以进一步深入了解钙调蛋白的靶标识别。通过将化学交联与高分辨率傅里叶变换离子回旋共振质谱(FTICRMS)相结合,我们确定了钙依赖性钙调蛋白 - 蜂毒肽复合物中的相互作用区域,从而确定了结合的蜂毒肽的取向。利用从化学交联数据得出的模糊距离限制,并结合最近开发的连体刚体/扭转角模拟退火计算方法,我们能够生成钙调蛋白 - 蜂毒肽复合物的低分辨率三维结构模型,迄今为止尚无该复合物的高分辨率结构。我们的数据首次提供了证据,证明钙调蛋白可以同时以两种相反的取向识别靶肽。绘制复合物中相互作用区域的一般程序包括将钙调蛋白和蜂毒肽与几种具有不同特异性和间隔长度的交联试剂缀合,然后对交联复合物进行酶促蛋白水解。随后通过纳米高效液相色谱(nano - HPLC)分析高度复杂的肽混合物,该色谱在线连接到配备纳米电喷雾电离源的FTICR质谱仪上。使用定制软件程序筛选以这种方式获得的质谱中可能的交联产物。这种以绘制钙调蛋白 - 蜂毒肽复合物拓扑结构为例的综合方法,可能对蛋白质 - 蛋白质相互作用的结构研究具有广泛影响。

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