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注入HeLa细胞的免疫球蛋白G及免疫球蛋白G片段的细胞内分布与降解

Intracellular distribution and degradation of immunoglobulin G and immunoglobulin G fragments injected into HeLa cells.

作者信息

McGarry T, Hough R, Rogers S, Rechsteiner M

出版信息

J Cell Biol. 1983 Feb;96(2):338-46. doi: 10.1083/jcb.96.2.338.

Abstract

Intact rabbit immunoglobulin G molecules (IgGs) and their papain or pepsin fragments were radio-iodinated and injected into HeLa cells. Whole IgGs, Fab2, and Fc fragments were degraded with half-lives of 60-90 h, whereas half-lives of Fab fragments were 110 h. These results indicate that proteolytic cleavage in the hinge region of the IgG molecule is not the rate-limiting step in its intracellular degradation. The hingeless human myeloma protein, Mcg, was degraded at the same rate as bulk human IgG, providing further evidence that the proteolytically susceptible hinge region is not important for intracellular degradation of IgG molecules. SDS acrylamide gel analysis of injected rabbit IgG molecules revealed that heavy and light chains were degraded at the same rate. Injected rabbit IgGs and rabbit IgG fragments were also examined on isoelectric focusing gels. Fab, Fab2, and Fc fragments were degraded without any correlation with respect to isoelectric point. Positively charged rabbit IgGs disappeared more rapidly than their negative counterparts, contrary to the trend reported for normal intracellular proteins. The isoelectric points of two mouse monoclonal antibodies were essentially unchanged after injection into HeLa cells, suggesting that the altered isoelectric profile observed for intact rabbit IgG resulted from degradation and not protein modification. The intracellular distributions of IgG fragments and intact rabbit IgG molecules were determined by autoradiography of thin sections through injected cells. Intact IgG molecules were excluded from HeLa nuclei whereas both Fab and Fc fragments readily entered them. Thus, for some proteins, entry into the nuclear compartment is determined primarily by size.

摘要

完整的兔免疫球蛋白G分子(IgGs)及其木瓜蛋白酶或胃蛋白酶片段经放射性碘化后注射到HeLa细胞中。完整的IgGs、Fab2和Fc片段的降解半衰期为60 - 90小时,而Fab片段的半衰期为110小时。这些结果表明,IgG分子铰链区的蛋白水解切割不是其细胞内降解的限速步骤。无铰链区的人骨髓瘤蛋白Mcg的降解速度与大量人IgG相同,这进一步证明了对蛋白水解敏感的铰链区对IgG分子的细胞内降解并不重要。对注射的兔IgG分子进行SDS聚丙烯酰胺凝胶分析显示,重链和轻链的降解速度相同。还在等电聚焦凝胶上检测了注射的兔IgGs和兔IgG片段。Fab、Fab2和Fc片段的降解与等电点无关。带正电荷的兔IgGs比带负电荷的兔IgGs消失得更快,这与正常细胞内蛋白质的报道趋势相反。两种小鼠单克隆抗体注射到HeLa细胞后,其等电点基本不变,这表明完整兔IgG观察到的等电点改变是由降解而非蛋白质修饰引起的。通过对注射细胞的薄切片进行放射自显影来确定IgG片段和完整兔IgG分子的细胞内分布。完整的IgG分子被排除在HeLa细胞核之外,而Fab和Fc片段都很容易进入细胞核。因此,对于某些蛋白质来说,进入核区主要由大小决定。

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