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七种Toac标记的血管紧张素I类似物的构象性质与其肌肉收缩活性以及作为ACE底物的能力相关。

Conformational Properties of Seven Toac-Labeled Angiotensin I Analogues Correlate with Their Muscle Contraction Activity and Their Ability to Act as ACE Substrates.

作者信息

Teixeira Luis Gustavo D, Malavolta Luciana, Bersanetti Patrícia A, Schreier Shirley, Carmona Adriana K, Nakaie Clovis R

机构信息

Department of Biophysics, Escola Paulista de Medicina, Universidade Federal de Sao Paulo, Sao Paulo, Sao Paulo, Brazil.

Department of Physiological Sciences, Santa Casa de Sao Paulo School of Medical Sciences, Sao Paulo, Sao Paulo, Brazil.

出版信息

PLoS One. 2015 Aug 28;10(8):e0136608. doi: 10.1371/journal.pone.0136608. eCollection 2015.

Abstract

Conformational properties of the angiotensin II precursor, angiotensin I (AngI) and analogues containing the paramagnetic amino acid TOAC (2,2,6,6-tetramethylpiperidine-1-oxyl-4-amino-4-carboxylic acid) at positions 0, 1, 3, 5, 8, 9, and 10, were examined by EPR, CD, and fluorescence. The conformational data were correlated to their activity in muscle contraction experiments and to their properties as substrates of the angiotensin I-converting enzyme (ACE). Biological activity studies indicated that TOAC0-AngI and TOAC1-AngI maintained partial potency in guinea pig ileum and rat uterus. Kinetic parameters revealed that only derivatives labeled closer to the N-terminus (positions 0, 1, 3, and 5) were hydrolyzed by ACE, indicating that peptides bearing the TOAC moiety far from the ACE cleavage site (Phe8-His9 peptide bond) were susceptible to hydrolysis, albeit less effectively than the parent compound. CD spectra indicated that AngI exhibited a flexible structure resulting from equilibrium between different conformers. While the conformation of N-terminally-labeled derivatives was similar to that of the native peptide, a greater propensity to acquire folded structures was observed for internally-labeled, as well as C-terminally labeled, analogues. These structures were stabilized in secondary structure-inducing agent, TFE. Different analogues gave rise to different β-turns. EPR spectra in aqueous solution also distinguished between N-terminally, internally-, and C-terminally labeled peptides, yielding narrower lines, indicative of greater mobility for the former. Interestingly, the spectra of peptides labeled at, or close, to the C-terminus, showed that the motion in this part of the peptides was intermediate between that of N-terminally and internally-labeled peptides, in agreement with the suggestion of turn formation provided by the CD spectra. Quenching of the Tyr4 fluorescence by the differently positioned TOAC residues corroborated the data obtained by the other spectroscopic techniques. Lastly, we demonstrated the feasibility of monitoring the progress of ACE-catalyzed hydrolysis of TOAC-labeled peptides by following time-dependent changes in their EPR spectra.

摘要

通过电子顺磁共振(EPR)、圆二色光谱(CD)和荧光法研究了血管紧张素II前体、血管紧张素I(AngI)以及在0、1、3、5、8、9和10位含有顺磁性氨基酸TOAC(2,2,6,6 - 四甲基哌啶 - 1 - 氧基 - 4 - 氨基 - 4 - 羧酸)的类似物的构象性质。将构象数据与其在肌肉收缩实验中的活性以及作为血管紧张素I转换酶(ACE)底物的性质相关联。生物活性研究表明,TOAC0 - AngI和TOAC1 - AngI在豚鼠回肠和大鼠子宫中保持部分活性。动力学参数表明,只有在靠近N端(0、1、3和5位)标记的衍生物能被ACE水解,这表明带有远离ACE切割位点(Phe8 - His9肽键)的TOAC部分的肽虽然比母体化合物水解效率低,但仍易被水解。CD光谱表明,AngI由于不同构象体之间的平衡而呈现出柔性结构。虽然N端标记衍生物的构象与天然肽相似,但对于内部标记以及C端标记的类似物,观察到其更倾向于形成折叠结构。这些结构在二级结构诱导剂三氟乙醇(TFE)中得到稳定。不同的类似物产生不同的β - 转角。水溶液中的EPR光谱也区分了N端、内部和C端标记的肽,N端标记的肽谱线更窄,表明其具有更大的流动性。有趣的是,在C端或靠近C端标记的肽的光谱表明,肽的这部分运动介于N端和内部标记肽之间,这与CD光谱所表明的形成转角的情况一致。不同位置的TOAC残基对Tyr4荧光的猝灭证实了通过其他光谱技术获得的数据。最后,我们证明了通过跟踪TOAC标记肽的EPR光谱随时间的变化来监测ACE催化其水解过程的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b0ca/4552746/6e50c7856ad1/pone.0136608.g001.jpg

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