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PROTEINS IN NUCLEOCYTOPLASMIC INTERACTIONS : I. The Fundamental Characteristics of the Rapidly Migrating Proteins and the Slow Turnover Proteins of the Amoeba proteus Nucleus

机译:蛋白质在核细胞膜相互作用中的作用:I.变形杆菌变形核的快速迁移蛋白和缓慢转变蛋白的基本特征。

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摘要

By the transplantation of amino acid-3H-labeled nuclei between cells and the subsequent isolation of nuclei for quantitative assay, we have confirmed that all the nuclear proteins of Amoeba proteus are divisible into two classes that are sharply defined by their physiological behavior. About 40% of the proteins in the nucleus rapidly migrates back and forth between the nucleus and the cytoplasm. These rapidly migrating proteins (RMP) are 25–50 times more concentrated in the nucleus than in the cytoplasm, and migration into the nucleus therefore occurs against a high concentration differential. The remaining 60% of nuclear proteins has been classified as slow turnover proteins (STP) since (as reported in a following paper) virtually all of them ultimately undergo turnover. Turnover in this context means loss of label from the nucleus, by either protein breakdown or protein migration to the cytoplasm. Isolation of nuclei in the detergent Triton X-100 results in a 20% loss of nuclear proteins but conclusions about RMP and STP were not found to be significantly affected by this loss.
机译:通过在细胞之间移植氨基酸3H标记的核,并随后分离核进行定量分析,我们已经证实变形虫的所有核蛋白都可分为两类,它们的生理行为明确定义了这两类。细胞核中约40%的蛋白质在细胞核和细胞质之间快速来回迁移。这些快速迁移的蛋白质(RMP)在细胞核中的浓度比在细胞质中的浓度高25–50倍,因此向细胞核中的迁移发生了高浓度差异。剩余的60%核蛋白已被归类为慢更新蛋白(STP),因为(如以下论文中所述)几乎所有这些蛋白最终都会发生更新。在这种情况下,周转意味着通过蛋白质分解或蛋白质迁移到细胞质而使标记从细胞核中丢失。在去污剂Triton X-100中分离核可导致核蛋白损失20%,但未发现有关RMP和STP的结论受此损失的影响很大。

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