Gonias S L, Roche P A, Pizzo S V
Biochem J. 1986 Apr 15;235(2):559-67. doi: 10.1042/bj2350559.
Human alpha 2-macroglobulin (alpha 2M) was eluted as a single nondispersed peak from a TSK-G4000SW size exclusion chromatography column equilibrated in 20 mM-sodium phosphate/100 mM-NaCl, pH 7.2 (PBS). The void volume and total accessible volume of the column were 6.08 ml and 14.42 ml. The elution volume (Ve) of native alpha 2M was 9.20 +/- 0.04 ml. The Ve was altered minimally by changing the ionic strength or adding ethanol to the equilibration buffer. Ternary alpha 2M-trypsin, containing 2 mol of proteinase/mol of inhibitor, and alpha 2M-methylamine failed to be eluted in well-defined peaks when the column was equilibrated in PBS. The majority of either preparation was recovered slowly at Ve values greater than 14.5 ml, reflecting significant nonideal interactions with the support structure. Addition of 10% ethanol or increased ionic strength in the equilibration buffer independently caused either form of reacted alpha 2M to be eluted in a distinct peak at decreased Ve, suggesting that the nonideal interactions included hydrophobic and electrostatic adsorption. When the equilibration buffer was 80 mM-sodium phosphate/320 mM-NaCl, pH 7.2, partial resolution of ternary alpha 2M-trypsin and alpha 2M-methylamine was obtained with a single column run. The Ve values of ternary alpha 2M-trypsin and alpha 2M-methylamine in this buffer were 13.15 +/- 0.08 ml and 11.94 +/- 0.14 ml, respectively. The Ve of native alpha 2M was 8.84 +/- 0.03 ml. The resolving capacity of TSK-G4000SW was exploited to purify native alpha 2M rapidly and efficiently from solutions that contained significant amounts of either ternary alpha 2M-trypsin or binary alpha 2M-trypsin (1 mol of proteinase/mol of inhibitor). This purification was complete within the limits of sensitivity of denaturing and nondenaturing polyacrylamide-gel electrophoresis. alpha 2M-plasmin was well resolved from native alpha 2M. The Ve of alpha 2M-plasmin was 12.88 +/- 0.32 ml in 80 mM-sodium phosphate/320 mM-NaCl, pH 7.2. A number of procedures were used to prepare solutions with up to 90% binary alpha 2M-trypsin. The Ve of binary alpha 2M-trypsin in these various solutions was intermediate between the values of native alpha 2M and ternary alpha 2M-trypsin. The conformations of binary and ternary complex, as reflected by mobility in nondenaturing electrophoresis, were identical, confirming previous results. Finally, in the binary alpha 2M-trypsin complex, the single trypsin cleaved more than two, and as many as all four alpha 2M subunits.
人α2-巨球蛋白(α2M)在以20 mM磷酸钠/100 mM氯化钠,pH 7.2(PBS)平衡的TSK-G4000SW尺寸排阻色谱柱上洗脱为单一的非分散峰。该柱的空体积和总可及体积分别为6.08 ml和14.42 ml。天然α2M的洗脱体积(Ve)为9.20±0.04 ml。通过改变离子强度或向平衡缓冲液中添加乙醇,Ve的变化极小。当柱在PBS中平衡时,含有2摩尔蛋白酶/摩尔抑制剂的三元α2M-胰蛋白酶和α2M-甲胺未能以明确的峰洗脱。两种制剂中的大多数在Ve值大于14.5 ml时缓慢回收,这反映了与支持结构的显著非理想相互作用。在平衡缓冲液中添加10%乙醇或增加离子强度,独立地导致任何一种形式的反应性α2M在降低的Ve处以明显的峰洗脱,这表明非理想相互作用包括疏水和静电吸附。当平衡缓冲液为80 mM磷酸钠/320 mM氯化钠,pH 7.2时,通过单次柱运行可实现三元α2M-胰蛋白酶和α2M-甲胺的部分分离。在该缓冲液中,三元α2M-胰蛋白酶和α2M-甲胺的Ve值分别为13.15±0.08 ml和11.94±0.14 ml。天然α2M的Ve为8.84±0.03 ml。利用TSK-G4000SW的分离能力从含有大量三元α2M-胰蛋白酶或二元α2M-胰蛋白酶(1摩尔蛋白酶/摩尔抑制剂)的溶液中快速有效地纯化天然α2M。这种纯化在变性和非变性聚丙烯酰胺凝胶电泳的灵敏度范围内完成。α2M-纤溶酶与天然α2M得到了很好的分离。在80 mM磷酸钠/ 320 mM氯化钠,pH 7.2中,α2M-纤溶酶的Ve为12.88±0.32 ml。使用了多种方法来制备含高达90%二元α2M-胰蛋白酶的溶液。在这些不同溶液中,二元α2M-胰蛋白酶 的Ve值介于天然α2M和三元α2M-胰蛋白酶的值之间。非变性电泳中的迁移率反映出二元和三元复合物的构象相同,这证实了先前的结果。最后,在二元α2M-胰蛋白酶复合物中,单个胰蛋白酶切割了两个以上,多达所有四个α2M亚基。