Inoue Kanako, Fujihara Akimasa
Department of Chemistry, Graduate School of Science, Osaka Prefecture University, Osaka 599-8531, Japan.
Mass Spectrom (Tokyo). 2021;10(1):A0097. doi: 10.5702/massspectrometry.A0097. Epub 2021 Sep 7.
The enantioselectivity of tryptophan (Trp) for amino acids, such as alanine (Ala), valine (Val), and serine (Ser), was investigated using ultraviolet (UV) photoexcitation and tandem mass spectrometry. Product ion spectra of cold gas-phase amino acid enantiomers that were hydrogen-bonded to Na(L-Trp) were measured using a variable-wavelength UV laser and a tandem mass spectrometer equipped with an electrospray ionization source and a cold ion trap. Na(L-Trp), formed amino acid detachment, and the elimination of CO from the clusters were observed in the product ion spectra. For photoexcitation at 265 nm, the relative abundance of Na(L-Trp) compared to that of the precursor ion observed in the product ion spectrum of heterochiral Na(L-Trp)(D-Ala) was larger than that observed in the product ion spectrum of homochiral Na(L-Trp)(L-Ala). A difference between the Val enantiomers in the relative abundance of the precursor and product ions was observed in the case of photoexcitation at 272 nm. The elimination of CO was not observed for L-Ser for the 285 nm photoexcitation, which was the main reaction pathway for D-Ser. Photoexcited Trp chiral recognition was applied to identify and quantify the amino acid enantiomers in solution. Ala, Val, and Ser enantiomers in solution were quantified from their relative abundances in single product ion spectra measured using photoexcitation at 265, 272, and 285 nm, respectively, for hydrogen-bonded Trp within the clusters.
利用紫外(UV)光激发和串联质谱研究了色氨酸(Trp)对丙氨酸(Ala)、缬氨酸(Val)和丝氨酸(Ser)等氨基酸的对映选择性。使用可变波长紫外激光和配备电喷雾电离源及冷离子阱的串联质谱仪,测量了与Na(L-Trp)形成氢键的冷气相氨基酸对映体的产物离子光谱。在产物离子光谱中观察到了Na(L-Trp)、氨基酸脱离以及团簇中CO的消除。对于265 nm的光激发,在异手性Na(L-Trp)(D-Ala)的产物离子光谱中观察到的Na(L-Trp)与前体离子的相对丰度,大于在同手性Na(L-Trp)(L-Ala)的产物离子光谱中观察到的相对丰度。在272 nm光激发的情况下,观察到了Val对映体在前体离子和产物离子相对丰度上的差异。对于285 nm的光激发,未观察到L-Ser的CO消除,而这是D-Ser的主要反应途径。光激发的Trp手性识别被用于识别和定量溶液中的氨基酸对映体。通过分别在265、272和285 nm进行光激发,利用团簇内氢键结合的Trp测量单产物离子光谱中的相对丰度,对溶液中的Ala、Val和Ser对映体进行了定量。