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首页> 外文期刊>ACS Omega >Characterization of Ultraviolet Photoreactions in Therapeutic Peptides by Femtosecond Laser Catalysis and Mass Spectrometry
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Characterization of Ultraviolet Photoreactions in Therapeutic Peptides by Femtosecond Laser Catalysis and Mass Spectrometry

机译:飞秒激光催化和质谱法表征治疗性肽中的紫外线光反应

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Peptides and proteins have diverse ultraviolet (UV) photoreaction pathways that can be activated by the energy of the UV photons absorbed. Simple light sources such as lamps are conventionally used to study these photoreactions in solution. This work provides a proof of concept that femtosecond laser technology can function as a highly potent UV source in rapidly conducting UV photostability studies of peptides. Correspondingly, sufficient quantities of photoproducts were generated in 1 min or less, allowing for identification of known and new photomodifications in the therapeutic peptides somatostatin-14 and arginine vasopressin. Identical photoproducts were also generated with a conventional continuous source. The major modifications included N-formylkynurenine, a cross-link between Trp and Phe, a Tyr product with an NH3 loss, and disruption of an unstable disulfide bond into a complex mixture of a trisulfide bond and multiple scrambled dimeric products. In conclusion, femtosecond lasers are extremely useful to drive fast UV-induced reactions for high throughput screening of photostability and modifications in amino acid polymers.
机译:肽和蛋白质具有多种紫外线(UV)光反应途径,这些途径可以被吸收的紫外线光子的能量激活。通常使用简单的光源(例如灯)来研究溶液中的这些光反应。这项工作提供了概念证明,即飞秒激光技术可以在快速进行肽的UV光稳定性研究中充当高效UV源。相应地,在1分钟或更短的时间内就产生了足够数量的光产物,从而可以鉴定治疗性肽生长抑素14和精氨酸加压素中已知的和新的光修饰。同样的光产物也可以用常规的连续光源产生。主要的修饰包括N-甲酰基犬尿氨酸,Trp和Phe之间的交联,失去NH3的Tyr产物,以及将不稳定的二硫键破坏成三硫键和多个加扰的二聚产物的复杂混合物。总之,飞秒激光对于驱动快速紫外线诱导的反应非常有用,可用于高通量筛选光稳定性和氨基酸聚合物中的修饰物。

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