Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, AR, USA.
J Am Soc Mass Spectrom. 2012 Mar;23(3):505-19. doi: 10.1007/s13361-011-0309-3. Epub 2011 Dec 30.
Pairing limited proteolysis and matrix-assisted laser desorption/ionization-time of flight mass spectrometry (MALDI-TOF MS) to probe clostridial collagenase collagen binding domain (CBD) reveals the solution dynamics and stability of the protein, as these factors are crucial to CBD effectiveness as a drug-delivery vehicle. MS analysis of proteolytic digests indicates initial cleavage sites, thereby specifying the less stable and highly accessible regions of CBD. Modulation of protein structure and stability upon metal binding is shown through MS analysis of calcium-bound and cobalt-bound CBD proteolytic digests. Previously determined X-ray crystal structures illustrate that calcium binding induces secondary structure transformation in the highly mobile N-terminal arm and increases protein stability. MS-based detection of exposed residues confirms protein flexibility, accentuates N-terminal dynamics, and demonstrates increased global protein stability exported by calcium binding. Additionally, apo- and calcium-bound CBD proteolysis sites correlate well with crystallographic B-factors, accessibility, and enzyme specificity. MS-observed cleavage sites with no clear correlations are explained either by crystal contacts of the X-ray crystal structures or by observed differences between Molecules A and B in the X-ray crystal structures. The study newly reveals the absence of the βA strand and thus the very dynamic N-terminal linker, as corroborated by the solution X-ray scattering results. Cobalt binding has a regional effect on the solution phase stability of CBD, as limited proteolysis data implies the capture of an intermediate-CBD solution structure when cobalt is bound.
将有限蛋白水解和基质辅助激光解吸/电离飞行时间质谱 (MALDI-TOF MS) 相结合,以探测梭菌胶原酶胶原结合域 (CBD),揭示了该蛋白的溶液动力学和稳定性,因为这些因素对于 CBD 作为药物传递载体的有效性至关重要。对蛋白水解消化物的 MS 分析表明了初始切割位点,从而确定了 CBD 中不太稳定且高度可及的区域。通过对钙结合和钴结合的 CBD 蛋白水解消化物的 MS 分析,显示了金属结合对蛋白结构和稳定性的调节。先前确定的 X 射线晶体结构表明,钙结合诱导高度移动的 N 端臂的二级结构转变并增加蛋白稳定性。基于 MS 的暴露残基检测证实了蛋白的灵活性,强调了 N 端动力学,并证明了钙结合所带来的全球蛋白稳定性的增加。此外,无钙结合和钙结合的 CBD 蛋白水解位点与晶体学 B 因子、可及性和酶特异性很好地相关。没有明显相关性的 MS 观察到的切割位点可以通过 X 射线晶体结构的晶体接触或 X 射线晶体结构中 A 分子和 B 分子之间观察到的差异来解释。该研究新揭示了 βA 链的缺失,从而使非常动态的 N 端接头缺失,这与溶液 X 射线散射结果相符。钴结合对 CBD 在溶液相稳定性上具有区域性影响,因为有限蛋白水解数据表明,当钴结合时,捕捉到了 CBD 溶液结构的中间态。