Saidha T, Schiff J A
Biology Department, Brandeis University, Waltham, MA 02254.
Biochem J. 1994 Feb 15;298 ( Pt 1)(Pt 1):45-50. doi: 10.1042/bj2980045.
A purification procedure based on (NH4)2SO4 precipitation, and chromatography on Affi-Gel Blue, DEAE-cellulose, hydroxyapatite and Bio-Gel P-60 yields a stable 6400-fold-purified active monomeric phenol (tyrosine) sulphotransferase of 26 kDa from W10BSmL, an aplastidic mutant of Euglena gracilis var. bacillaris. The apparent Km for adenosine 3'-phosphate 5'-phosphosulphate (PAPS) is 15 microM (60 microM tyrosine as substrate); adenosine 5'-phosphosulphate is inactive. L-Tyrosine gave the lowest apparent Km (33 microM) (with PAPS at 30 microM), but tyrosine esters, tyrosinamide, L-p-hydroxyphenylglycine and a number of tyrosine dipeptides were also active, with higher Km values. Nitrophenols (m- and p-) and chlorophenols (o-, m- and p-) were active, with higher Km values than for tyrosine. D-Tyrosine was inactive as a substrate, as was D-p-hydroxyphenylglycine and a number of other tyrosine derivatives lacking the carboxy carbonyl or the amino group, or having extra ring substituents or the hydroxy group in the wrong position. Adenosine 3',5'-bisphosphate and tyrosine O4-sulphate, products of the enzyme reaction with PAPS and tyrosine as substrates, showed competitive (Ki = 20 microM) and uncompetitive (Ki = 500 microM) inhibition kinetics respectively. This appears to be the first phenol sulphotransferase to accept tyrosine as substrate. This membrane-bound enzyme may be involved in tyrosine transport as well as detoxification.
一种基于硫酸铵沉淀以及在Affi - Gel Blue、DEAE - 纤维素、羟基磷灰石和Bio - Gel P - 60上进行层析的纯化方法,从纤细裸藻杆菌变种的无质体突变体W10BSmL中获得了一种稳定的、纯化了6400倍的26 kDa活性单体酚(酪氨酸)磺基转移酶。以3'-磷酸腺苷5'-磷酸硫酸酯(PAPS)为底物时,其表观Km值为15 μM(以60 μM酪氨酸为底物);腺苷5'-磷酸硫酸酯无活性。L - 酪氨酸的表观Km值最低(33 μM)(PAPS为30 μM时),但酪氨酸酯、酪氨酰胺、L - 对羟基苯甘氨酸以及一些酪氨酸二肽也具有活性,不过Km值更高。硝基酚(间位和对位)和氯酚(邻位、间位和对位)具有活性,其Km值高于酪氨酸。D - 酪氨酸作为底物无活性,D - 对羟基苯甘氨酸以及其他一些缺少羧基羰基或氨基、或具有额外环取代基或羟基位置错误的酪氨酸衍生物也无活性。以PAPS和酪氨酸为底物时,酶反应产物3',5'-二磷酸腺苷和酪氨酸O4 - 硫酸酯分别表现出竞争性抑制动力学(Ki = 20 μM)和非竞争性抑制动力学(Ki = 500 μM)。这似乎是首个以酪氨酸为底物的酚磺基转移酶。这种膜结合酶可能参与酪氨酸转运以及解毒过程。