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人皮肤中两种形式酪氨酸酶的pH依赖性相互转化

pH-dependent interconversion of two forms of tyrosinase in human skin.

作者信息

Tripathi R K, Chaya Devi C, Ramaiah A

机构信息

Department of Biophysics, All India Institute of Medical Sciences, New Delhi.

出版信息

Biochem J. 1988 Jun 1;252(2):481-7. doi: 10.1042/bj2520481.

Abstract
  1. We have shown that the characteristic lag in cresolase activity of human skin tyrosinase at inhibitory concentration of tyrosine was absent at all pH values studied, i.e. pH 5.2, 5.7, 6.2 and 6.8, if the enzyme solubilized at low pH was used as the source of enzyme, but the same enzyme when dialysed against buffers of various pH values showed linear activity only at pH 5.2 and was not inhibited by excess tyrosine, whereas at higher pH values it exhibited a lag and inhibition by excess tyrosine. 2. However, the enzyme solubilized in buffer/detergent, pH 6.8, when dialysed against buffer of the same pH showed linear activity at pH 5.2 and non-linear activity at pH 6.8. 3. The water/detergent-solubilized enzyme from human skin melanosomes showed linear activity even at inhibitory concentrations of tyrosine at pH 5.2 and 6.8 up to 2 h, but acceleration of rate was observed after 2 h for the enzyme measured at pH 6.8. 4. After dialysis of the water/detergent-solubilized enzyme against double-glass-distilled water, it still exhibits linear activity at inhibitory concentration of tyrosines at pH 6.8 for the first 2 h, but the same enzyme when dialysed against 0.02 M-sodium phosphate buffer, pH 6.8, exhibits negligible activity up to 1/2 h, in contrast with considerable activity before dialysis during the same interval of time, but without any loss of activity at later intervals of incubation time. 5. On the basis of these results, it is concluded that the enzyme exists in at least two interconvertible forms, one without lag and inhibition by excess tyrosine and the other with lag and inhibition by excess tyrosine. These two forms are interconvertible only by gradual change in pH over a period of hours.
摘要
  1. 我们已经表明,如果将在低pH值下溶解的酶用作酶源,那么在所研究的所有pH值(即pH 5.2、5.7、6.2和6.8)下,人皮肤酪氨酸酶在酪氨酸抑制浓度下甲酚酶活性的特征性滞后现象均不存在。但是,当将相同的酶用不同pH值的缓冲液透析时,其仅在pH 5.2时表现出线性活性,且不受过量酪氨酸的抑制,而在较高pH值时,它表现出滞后现象并受到过量酪氨酸的抑制。2. 然而,在pH 6.8的缓冲液/去污剂中溶解的酶,当用相同pH值的缓冲液透析时,在pH 5.2时表现出线性活性,在pH 6.8时表现出非线性活性。3. 从人皮肤黑素体中用水/去污剂溶解的酶,即使在酪氨酸抑制浓度下,在pH 5.2和6.8时长达2小时也表现出线性活性,但在pH 6.8下测量该酶时,2小时后观察到速率加快。4. 将水/去污剂溶解的酶用双蒸水透析后,在pH 6.8的酪氨酸抑制浓度下,最初2小时仍表现出线性活性,但当用pH 6.8的0.02 M磷酸钠缓冲液透析时,在长达半小时内活性可忽略不计,相比之下,在相同孵育时间间隔内透析前具有相当的活性,但在随后的孵育时间间隔内没有任何活性损失。5. 根据这些结果,可以得出结论,该酶至少以两种可相互转化的形式存在,一种没有滞后现象且不受过量酪氨酸的抑制,另一种有滞后现象且受过量酪氨酸的抑制。这两种形式仅通过数小时内pH值的逐渐变化才能相互转化。

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Biochem Biophys Res Commun. 1967 Jan 23;26(2):242-6. doi: 10.1016/0006-291x(67)90241-0.
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