Tanaka Y, Azuma T, Hamaguchi K
J Biochem. 1978 May;83(5):2149-63.
The pK values and reactivities of the thiol groups which participate in the formation of interchain disulfide bonds in Bence Jones proteins and the Fab(t) fragment of a myeloma protein (Jo) (IgGl, kappa) were determined by means of the reactions with chloroacetamide and DTNB, and of spectrophotometric titration. The two thiol groups of partially reduced type kappa Bence Jones protein dimers had the same pK values (pK = 9.76 at 0.2 ionic strength and 25 degrees C) and the same true second-order rate constants (k) toward chloroacetamide (k = 18.8 x 10(-2) M-1 . S-1). The two thiol groups of partially reduced type lambda Bence Jones protein dimers had different pK values but the variation of the pK values among the specimens was small (pK1 = 8.5-8.6 and pK2 = 9.5-9.7 at 0.2 ionic strength and 25 degrees C). The spectrophotometric titration of partially reduced Nag protein (type lambda) also showed that the two thiol groups have different pK values. The pK values of two thiol groups of the partially reduced Fab(t) fragment were determined as 8.51 and 9.76 at 0.2 ionic strength and 25 degrees C. The effect of ionic strength on the pK values of the thiol groups of partially reduced Nag protein and the pK values of the thiol groups in partially reduced Ta protein (type kappa) and in a hybrid molecule formed between partially reduced Ta protein and partially reduced and alkylated H chains indicated that the difference in pK values did not arise from electrostatic interaction between the two thiol groups, but that the pK values are intrinsically different. The true rate constants, k1 and k2, of the two thiol groups of type lambda Bence Jones proteins varied with the specimen (k1 = 1.9-5.7 x 10(-2) M-1 . S-1 and k2 = 18.5-25.0 x 10(-2) M-1 . S-1). The k1 and k2 values for Jo-Fab(t) were 7.21 x 10(-2) and 23.1 x 10(-2) M-1 . S-1, respectively. On the basis of these pK values and reactivities, we discuss the reformation of the interchain disulfide bonds from partially reduced Bence Jones proteins and immunoglobulins in the presence of oxidized glutathione.
通过与氯乙酰胺和5,5'-二硫代双(2-硝基苯甲酸)(DTNB)的反应以及分光光度滴定法,测定了参与本斯·琼斯蛋白和骨髓瘤蛋白(Jo)(IgG1,κ型)的Fab(t)片段中链间二硫键形成的巯基的pK值和反应活性。部分还原的κ型本斯·琼斯蛋白二聚体的两个巯基具有相同的pK值(在离子强度为0.2、25℃时pK = 9.76)以及对氯乙酰胺相同的真实二级速率常数(k)(k = 18.8×10⁻² M⁻¹·s⁻¹)。部分还原的λ型本斯·琼斯蛋白二聚体的两个巯基具有不同的pK值,但不同标本间pK值的变化很小(在离子强度为0.2、25℃时pK1 = 8.5 - 8.6,pK2 = 9.5 - 9.7)。对部分还原的Nag蛋白(λ型)的分光光度滴定也表明这两个巯基具有不同的pK值。在离子强度为0.2、25℃时,部分还原的Fab(t)片段的两个巯基的pK值测定为8.51和9.76。离子强度对部分还原的Nag蛋白巯基的pK值以及对部分还原的Ta蛋白(κ型)和部分还原并烷基化的重链之间形成的杂合分子中巯基的pK值的影响表明,pK值的差异并非源于两个巯基之间的静电相互作用,而是pK值本质上不同。λ型本斯·琼斯蛋白的两个巯基的真实速率常数k1和k2因标本而异(k1 = 1.9 - 5.7×10⁻² M⁻¹·s⁻¹,k2 = 18.5 - 25.0×10⁻² M⁻¹·s⁻¹)。Jo - Fab(t)的k1和k2值分别为7.21×10⁻²和23.1×10⁻² M⁻¹·s⁻¹。基于这些pK值和反应活性,我们讨论了在氧化型谷胱甘肽存在下,部分还原的本斯·琼斯蛋白和免疫球蛋白中链间二硫键的重新形成。