Kit Y Y, Shipitsin M V, Semenov D V, Richter V A, Nevinsky G A
Novosibirsk Institute of Bioorganic Chemistry, Novosibirsk, 630090, Russia.
Biochemistry (Mosc). 1998 Jun;63(6):719-24.
The fractions of antibodies (Abs) containing only sIgA and IgG were purified from human breast milk by Protein A-Sepharose chromatography and they catalyzed phosphorylation of casein in the presence of [gamma-32P]ATP. Also, 32P-labeled low-molecular-weight non-protein products are formed which are visible as radioactive background on the polyacrylamide gel lanes during electrophoresis of Abs under denaturing conditions. Separation of sIgA from IgG using a DEAE-sorbent with subsequent gel-filtration in 0.05 M NaOH indicates that the low-molecular-weight substances partially remain tightly bound to sIgA and are separated only by gel-filtration in a buffer containing 5% dioxane (non-denaturing resolution) or by extraction of the sIgA pellet with the chloroform--methanol mixture (2:1). The 32P-labeled substances were separated by TLC in the system used for phospholipid chromatography forming two fractions (Rf 0.83 and 0.66) that were stained with iodine. The data suggest that the substances co-isolated with sIgA are phospholipids. At 25 nM ATP, casein and lipids are 32P-labeled. At 1 microM ATP, the sIgA polypeptides are also phosphorylated. Gentle removal of the lipids from Ab preparation enhanced 32P incorporation into casein and sIgA polypeptides. Considering the heterogeneity of polyclonal sIgA in protein and ATP affinity, it is suggested that phosphorylation of casein and sIgA polypeptides is catalyzed by abzymes of different clonal origin.
通过蛋白A-琼脂糖凝胶层析从人母乳中纯化出仅含分泌型免疫球蛋白A(sIgA)和免疫球蛋白G(IgG)的抗体组分,它们在[γ-32P]ATP存在的情况下催化酪蛋白磷酸化。此外,还形成了32P标记的低分子量非蛋白质产物,在变性条件下对抗体进行电泳时,这些产物在聚丙烯酰胺凝胶泳道上表现为放射性背景。使用DEAE吸附剂将sIgA与IgG分离,随后在0.05 M NaOH中进行凝胶过滤,结果表明低分子量物质部分仍紧密结合于sIgA,只有在含5%二氧六环的缓冲液中进行凝胶过滤(非变性分离)或用氯仿-甲醇混合物(2:1)提取sIgA沉淀时才能将其分离。32P标记的物质通过用于磷脂层析的系统进行薄层层析分离,形成两个组分(比移值分别为0.83和0.66),用碘染色。数据表明与sIgA共分离的物质是磷脂。在25 nM ATP时,酪蛋白和脂质被32P标记。在1 μM ATP时,sIgA多肽也被磷酸化。从抗体制剂中温和去除脂质可增强32P掺入酪蛋白和sIgA多肽。考虑到多克隆sIgA在蛋白质和ATP亲和力方面的异质性,提示酪蛋白和sIgA多肽的磷酸化是由不同克隆来源的抗体酶催化的。