Pandey V, Modak M J
Department of Biochemistry, UMDNJ-New Jersey Medical School, Newark 07103.
Prep Biochem. 1987;17(4):359-77. doi: 10.1080/00327488708062502.
We have developed a simplified column chromatographic procedure for the simultaneous purification of two high molecular mass forms (58 kd and 45 kd) and a standard two subunit 44 kd from of terminal deoxynucleotidyltransferase (TdT) from calf thymus chromatin. The procedure involves high salt extraction of the chromatin fraction followed by successive chromatographies on phosphocellulose, DEAE sephadex, and hydroxylapatite matrices. While all 3 species of TdT comigrate throughout these steps, separation of individual species is achieved on a single stranded DNA agarose column. The combined yield of the 45 kd and 58 kd TdTs is quite high (approximately 8 mg/5000g tissue), 45 kd being the major species (approximately 60%) and the 58 kd constituting about 30%. The 44 kd species containing two subunits usually represents under 10% of the total. All the three forms of TdT showed similar specific activity and preference for purine deoxynucleoside triphosphates (dNTPs). The Km for individual dNTP with all three species of TdT is quite similar and decreases in the order dCTP greater than dTTP greater than dATP greater than dGTP. The Km for both synthetic primer and activated DNA with the 3 TdTs was, in increasing order, two subunit 44 kd less than 45 kd less than 58 kd TdT. Both 58 kd and 45 kd TdT displayed two optima for Mn++ (0.1 mM and 1 mM) and a single sharp optimum for Mg++ (2.5 mM). The two subunit 44 kd TdT exhibited a single but broad optimum for Mn++ (1 mM) and for Mg++ (10 mM).
我们开发了一种简化的柱色谱方法,用于同时从小牛胸腺染色质中纯化两种高分子量形式(58 kd和45 kd)的末端脱氧核苷酸转移酶(TdT)以及一种标准的双亚基44 kd TdT。该方法包括对染色质部分进行高盐提取,然后依次在磷酸纤维素、DEAE葡聚糖和羟基磷灰石基质上进行色谱分离。虽然这三种TdT在所有这些步骤中迁移情况相同,但在单链DNA琼脂糖柱上可实现单个种类的分离。45 kd和58 kd TdT的总收率相当高(约8 mg/5000g组织),其中45 kd是主要种类(约60%),58 kd约占30%。含有两个亚基的44 kd种类通常占总量的不到10%。所有三种形式的TdT表现出相似的比活性以及对嘌呤脱氧核苷三磷酸(dNTPs)的偏好。三种TdT对单个dNTP的Km非常相似,且按照dCTP>dTTP>dATP>dGTP的顺序递减。三种TdT对合成引物和活化DNA的Km,按递增顺序排列为:双亚基44 kd<45 kd<58 kd TdT。58 kd和45 kd TdT对Mn++均表现出两个最佳浓度(0.1 mM和1 mM),对Mg++表现出一个单一的尖锐最佳浓度(2.5 mM)。双亚基44 kd TdT对Mn++表现出一个单一但较宽的最佳浓度(1 mM),对Mg++表现出一个单一但较宽的最佳浓度(10 mM)。