首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The role of the retinylidene Schiff base counterion in rhodopsin in determining wavelength absorbance and Schiff base pKa.
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The role of the retinylidene Schiff base counterion in rhodopsin in determining wavelength absorbance and Schiff base pKa.

机译:视黄质中视黄叉席夫碱抗衡离子在确定波长吸光度和席夫碱pKa中的作用。

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摘要

Glu-113 serves as the retinylidene Schiff base counterion in bovine rhodopsin. Purified mutant rhodopsin pigments were prepared in which Glu-113 was replaced individually by Gln (E113Q), Asp (E113D), Asn (E113N), or Ala (E113A). E113Q, E113N, and E113A existed as pH-dependent equilibrium mixtures of unprotonated and protonated Schiff base (PSB) forms. The Schiff base pKa values determined by spectrophotometric titration were 6.00 (E113Q), 6.71 (E113N), and 5.70 (E113A). Thus, mutation of Glu-113 markedly reduced the Schiff base pKa. The addition of NaCl promoted the formation of a PSB in E113Q and E113A. An exogenously supplied solute anion replaced Glu-113 to compensate for the positive charge of the PSB in these mutants. The lambda max values of the PSB forms of the mutants in NaCl were 496 nm (E113Q), 506 nm (E113A), 510 nm (E113D), and 520 nm (E113N). To evaluate the effect of different types of solute anions on lambda max values, mutants were prepared in sodium salts of halides, perchlorate, and a series of carboxylic acids of various sizes and acidity. The lambda max values of E113Q and E113A depended on the solute anion present and ranged from 488 nm to 522 nm for E113Q and from 486 nm to 528 nm for E113A. The solute anion affected the lambda max values of E113N and E113D to lesser degrees. The reactivities of the mutants to hydroxylamine were also studied. Whereas rhodopsin was stable to hydroxylamine in the dark, E113N reacted slowly and E113Q reacted rapidly under these conditions, indicating structural differences in the Schiff base environments. The lambda max values and solute anion dependencies of the Glu-113 mutants indicate that interactions between Schiff base and its counterion play a significant role in determining the lambda max of rhodopsin.
机译:Glu-113在牛视紫红质中充当视黄素类席夫碱抗衡离子。制备纯化的突变型视紫红质颜料,其中Glu-113分别由Gln(E113Q),Asp(E113D),Asn(E113N)或Ala(E113A)代替。 E113Q,E113N和E113A以pH依赖性的非质子化和质子化席夫碱(PSB)形式的平衡混合物形式存在。通过分光光度滴定法测定的席夫碱pKa值为6.00(E113Q),6.71(E113N)和5.70(E113A)。因此,Glu-113的突变显着降低了Schiff碱基的pKa。 NaCl的添加促进了E113Q和E113A中PSB的形成。外源提供的溶质阴离子取代了Glu-113,以补偿这些突变体中PSB的正电荷。 NaCl中突变体的PSB形式的λ最大值为496 nm(E113Q),506 nm(E113A),510 nm(E113D)和520 nm(E113N)。为了评估不同类型的溶质阴离子对λ最大值的影响,在卤化物,高氯酸盐和各种大小和酸度的一系列羧酸的钠盐中制备了突变体。 E113Q和E113A的λ最大值取决于存在的溶质阴离子,E113Q的范围为488 nm至522 nm,E113A的范围为486 nm至528 nm。溶质阴离子在较小程度上影响了E113N和E113D的λ最大值。还研究了突变体对羟胺的反应性。尽管视紫红质在黑暗中对羟胺稳定,但在这些条件下E113N反应缓慢,E113Q反应迅速,表明在席夫碱环境中存在结构差异。 Glu-113突变体的λ最大值和溶质阴离子依赖性表明,席夫碱及其抗衡离子之间的相互作用在确定视紫红质的λ最大值中起重要作用。

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