Flint-Ashtamker Galit, Eisen-Lev Ronit, Cohen Jacob, Jun-shen Huang Lily, Neumann Drorit
Department of Cell Biology and Histology, Sackler Faculty of Medicine Tel-Aviv University, 69978, Ramat Aviv, Israel.
FEBS Lett. 2002 May 8;518(1-3):189-94. doi: 10.1016/s0014-5793(02)02691-1.
Erythropoietin (EPO) promotes viability, proliferation and differentiation of mammalian erythroid progenitor cells via its specific cell surface receptor (EPO-R). We have previously shown that truncated EPO-Rs containing 267 amino acids or less were defective in internalization of (125)I-EPO, whereas internalization via a receptor derivative containing 276 amino acids was unaffected, thus directing focus to the nine amino acid residues FEGLFTTHK at positions 268-276 [Levin, Cohen, Supino, Yoshimura, Watowich, Neumann, FEBS Lett. 427 (1998) 164-170]. Here, a panel of EPO-R mutants was generated to determine the role of these residues in EPO endocytosis, down regulation of cell surface receptors and EPO-mediated signaling. While linking amino acid residues 268-276 to a truncated EPO-R (Delta+9 EPO-R) conferred both ligand uptake and ligand-independent down regulation of the respective receptor from the cell surface, Phe 272 was crucial for EPO endocytosis but not for ligand-independent down regulation. Additional receptor motifs probably play a role in EPO endocytosis and receptor down-regulation, as these processes were not adversely impaired in Delta268-276 EPO-R. A central role of residues 268-276, in particular Phe, was demonstrated by the inability of Delta268-276 and F268,272A EPO-Rs to support EPO-mediated signal transduction.
促红细胞生成素(EPO)通过其特异性细胞表面受体(EPO-R)促进哺乳动物红系祖细胞的存活、增殖和分化。我们之前已经表明,包含267个或更少氨基酸的截短型EPO-R在(125)I-EPO的内化过程中存在缺陷,而通过包含276个氨基酸的受体衍生物进行的内化则不受影响,因此将重点指向了位于268-276位的九个氨基酸残基FEGLFTTHK[Levin,Cohen,Supino,Yoshimura,Watowich,Neumann,FEBS Lett. 427(1998)164-170]。在此,构建了一组EPO-R突变体,以确定这些残基在EPO内吞作用、细胞表面受体下调以及EPO介导的信号传导中的作用。虽然将氨基酸残基268-276连接到截短型EPO-R(Delta+9 EPO-R)上赋予了配体摄取以及相应受体从细胞表面的非配体依赖性下调能力,但苯丙氨酸272对于EPO内吞作用至关重要,但对于非配体依赖性下调则并非如此。其他受体基序可能在EPO内吞作用和受体下调中发挥作用,因为在Delta268-276 EPO-R中这些过程并未受到不利影响。Delta268-276和F268,272A EPO-R无法支持EPO介导的信号转导,这证明了残基268-276,特别是苯丙氨酸的核心作用。