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视紫红质和视蛋白的酸碱性质。

Acid-base properties of rhodopsin and opsin.

作者信息

RADDING C M, WALD G

出版信息

J Gen Physiol. 1956 Jul 20;39(6):909-22. doi: 10.1085/jgp.39.6.909.

Abstract

Purified preparations of cattle rhodopsin have been titrated to various pH, irradiated, and the pH changes followed thereafter until completed. In this way we have obtained the titration curves of rhodopsin, of the immediate product of irradiation, measured within 30 seconds; and of the final product of irradiation (opsin). The rhodopsin preparations display about 54 titratable groups per mole of pigment: about 34 base-binding and 20 acid-binding groups. In default of an absolute purification, one cannot be sure that all of these go with rhodopsin itself. Exposure to light induces an immediate rise of pH between pH 2 and 8, maximal at about pH 5. This-followed by its slow partial or complete reversal-is the only change of pH in the physiological range (6-7). It involves the exposure of 1 new acid-binding group per mole of rhodopsin with pK about 6.6, close therefore to that of the imidazole group of histidine. At acid and alkaline pH this immediate change is followed by slower changes, occupying up to 40 minutes at 20 degrees C. These changes are always in the direction of neutrality. They involve increases of 5 to 6 moles acid bound at acid pH, and 7 moles base bound at alkaline pH. They are associated with the irreversible denaturation of opsin in acid and alkaline solution, as evidenced by loss of its capacity to regenerate rhodopsin. Such frank denaturation procedures as the exposure of rhodopsin to alkali or heat in the dark result in comparable acid-base changes.

摘要

已将纯化的牛视紫红质制剂滴定至不同pH值,进行照射,然后跟踪pH值变化直至结束。通过这种方式,我们获得了视紫红质、照射后30秒内测得的照射即时产物以及照射最终产物(视蛋白)的滴定曲线。视紫红质制剂每摩尔色素显示约54个可滴定基团:约34个碱基结合基团和20个酸结合基团。由于缺乏绝对纯化,无法确定所有这些基团都与视紫红质本身相关。光照会导致pH值在2至8之间立即升高,在约pH 5时达到最大值。随后其缓慢部分或完全逆转,这是生理范围内(6 - 7)唯一的pH值变化。它涉及每摩尔视紫红质暴露1个新的酸结合基团,其pK约为6.6,因此与组氨酸的咪唑基团相近。在酸性和碱性pH值下,这种即时变化之后是较慢的变化,在20℃下可持续长达40分钟。这些变化总是朝着中性方向。它们涉及在酸性pH值下结合5至6摩尔酸,在碱性pH值下结合7摩尔碱。它们与视蛋白在酸性和碱性溶液中的不可逆变性有关,这可通过其再生视紫红质能力的丧失来证明。在黑暗中对视紫红质进行诸如碱处理或加热等明显的变性处理会导致类似的酸碱变化。

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