Ascoli M, Ward D N, Jirgensons B
Eur J Biochem. 1977 Jan 3;72(1):157-65. doi: 10.1111/j.1432-1033.1977.tb11235.x.
The effect of alkali on the circular dichroic (CD) spectra of ovine lutropin and its subunits has been studied. Mild alkaline pH induces the appearance of a new optically active band in the 250-nm region of the spectra of lutropin without any detectable alteration in the secondary structure of the protein. This change is reversible and can be correlated with ionization of 2--3 exposed tyrosyl residues in the intact hormone. In a previous report from this laboratory it was concluded that the three exposed tyrosyl residues are located in the alpha subunit, in positions 21, 92 and 93 [Burleigh, B.D., Liu, W.-K, and Ward, D.M. (1976) J. Biol. Chem. 251, 308--315]. Nitration of these residues lowers the pH at which the intensity of the 250-nm band is maximal. The importance of the tyrosyl residues of lutropin alpha (as opposed to those of lutropin beta) is also supported by the similarity of the effect of alkali on the CD spectra of lutropin and lutropin alpha. Further evidence for this involvement was also obtained by a comparison of the alkali-induced changes of refolded lutropin (alpha + beta recombinant) and the product obtained by recombination of des-(92--96)-lutropin alpha (obtained from carboxypeptidase treatment of the alpha-subunit) and lutropin beta. The results indicate that removal of tyrosines alpha 92 and alpha 93 results in a decrease of the intensity of the 235-nm band of ovine lutropin (at pH7.5) as well as that of the 250-nm band observed under alkaline conditions. It is therefore concluded that the 250-nm band observed in alkaline solutions of lutropin arises (at least partially) from the red shift produced in the short-wavelength optically active band of tyrosines alpha 21, alpha 92, and alpha 93 upon ionization.
已研究了碱对绵羊促黄体激素及其亚基圆二色性(CD)光谱的影响。温和的碱性pH值会在促黄体激素光谱的250纳米区域诱导出现一条新的光学活性带,而蛋白质的二级结构没有任何可检测到的变化。这种变化是可逆的,并且可能与完整激素中2 - 3个暴露的酪氨酸残基的电离有关。在本实验室之前的一份报告中得出结论,三个暴露的酪氨酸残基位于α亚基的21、92和93位[伯利,B.D.,刘,W.-K,和沃德,D.M.(1976年)《生物化学杂志》251,308 - 315]。这些残基的硝化降低了250纳米带强度最大时的pH值。碱对促黄体激素和促黄体激素α的CD光谱的影响相似,这也支持了促黄体激素α的酪氨酸残基(与促黄体激素β的酪氨酸残基相对)的重要性。通过比较碱诱导的重折叠促黄体激素(α + β重组体)以及由去(92 - 96)-促黄体激素α(通过对α亚基进行羧肽酶处理获得)和促黄体激素β重组得到的产物的变化,也获得了这一参与过程的进一步证据。结果表明,去除α92和α93位的酪氨酸会导致绵羊促黄体激素在pH7.5时235纳米带的强度以及在碱性条件下观察到的250纳米带的强度降低。因此得出结论,在促黄体激素的碱性溶液中观察到的250纳米带(至少部分)是由于α21、α92和α93位酪氨酸的短波长光学活性带在电离时产生的红移所致。