Department of Chemistry, University of Florida, P.O. Box 117200, Gainesville, FL, 32611-7200, USA.
J Am Soc Mass Spectrom. 2012 Mar;23(3):475-82. doi: 10.1007/s13361-011-0315-5. Epub 2012 Jan 5.
While recent studies have shown that for some peptides, such as oligoglycines and Leu-enkephalin, mid-sized b fragment ions exist as a mixture of oxazolone and macrocycle structures, other primary structure motifs, such as QWFGLM, are shown to exclusively give rise to macrocycle structures. The aim of this study was to determine if certain amino acid residues are capable of suppressing macrocycle formation in the corresponding b fragment. The residues proline and 4-aminomethylbenzoic acid (4AMBz) were chosen because of their intrinsic rigidity, in the expectation that limited torsional flexibility may impede "head-to-tail" macrocycle formation. The presence of oxazolone versus macrocycle b(6) fragment structures was validated by infrared multiple photon dissociation (IRMPD) spectroscopy, using the free electron laser FELIX. It is confirmed that proline disfavors macrocycle formation in the cases of QPWFGLM b(7) and in QPFGLM b(6). The 4AMBz substitution experiments show that merely QWFG(4AMBz)M b(6), with 4AMBz in the fifth position, exhibits a weak oxazolone band. This effect is likely ascribed to a stabilization of the oxazolone structure, due to an extended oxazolone ring-phenyl π-electron system, not due to the rigidity of the 4AMBz residue. These results show that some primary structures have an intrinsic propensity to form macrocycle structures, which is difficult to disrupt, even using residues with limited torsional flexibility.
虽然最近的研究表明,对于一些肽,如寡肽和亮氨酸脑啡肽,中等大小的 b 片段离子存在于噁唑酮和大环结构的混合物中,但其他一级结构模体,如 QWFGLM,则被证明仅产生大环结构。本研究旨在确定某些氨基酸残基是否能够抑制相应 b 片段中的大环形成。脯氨酸和 4-氨基甲基苯甲酸(4AMBz)之所以被选择,是因为它们的固有刚性,预计有限的扭转灵活性可能会阻碍“头到尾”的大环形成。通过使用自由电子激光 FELIX 的红外多光子解离(IRMPD)光谱,验证了噁唑酮与大环 b(6)片段结构的存在。脯氨酸确实不利于 QPWFGLM b(7)和 QPFGLM b(6)中大环的形成。4AMBz 取代实验表明,只有 QWFG(4AMBz)M b(6),其中 4AMBz 在第五位,表现出较弱的噁唑酮带。这种效应可能归因于噁唑酮结构的稳定化,由于扩展的噁唑酮环-苯基π-电子系统,而不是由于 4AMBz 残基的刚性。这些结果表明,一些一级结构具有形成大环结构的固有倾向,即使使用扭转灵活性有限的残基,也很难破坏这种倾向。