Identification of distinct roles for a dileucine and a tyrosine internalization motif in the interleukin (IL)-13 binding component IL-13 receptor alpha 2 chain.
K Kawakami, F Takeshita, RK Puri
Index: J. Biol. Chem. 276(27) , 25114-20, (2001)
Full Text: HTML
Abstract
Interleukin (IL)-13 receptor alpha2 (IL-13Ralpha2) chain is an essential binding component for IL-13-mediated ligand binding. Recently, we have demonstrated that this receptor chain also plays an important role in the internalization of IL-13. To study the mechanism of IL-13 internalization, we generated mutated IL-13Ralpha2 chains that targeted trileucine residues (Leu(335), Leu(336), and Leu(337)) in the transmembrane domain and a tyrosine motif (Tyr(343)) in the intracellular domain and transfected these cDNAs in COS-7 cells. Cells that expressed a C-terminally truncated IL-13Ralpha2 chain (Delta335) did not bind IL-13, suggesting that the trileucine region modulates IL-13 binding. Truncation of IL-13Ralpha2 chain with a mutation in the trileucine region resulted in significantly decreased internalization compared with wild type IL-13Ralpha2 chain transfected cells. COS-7 cells transfected with tyrosine motif mutants exhibited a similar internalization level compared with wild type IL-13Ralpha2 chain transfected cells; however, dissociation of cell surface IL-13 was faster compared with wild type IL-13Ralpha2 transfectants. These results were further confirmed by determining the cytotoxicity of a chimeric protein composed of IL-13 and a mutated form of Pseudomonas exotoxin (IL13-PE38QQR) to cells that expressed IL-13Ralpha2 chain mutants. We further demonstrate that the IL-13Ralpha2 chain is not ubiquitinated and that internalization of IL-13Ralpha2 did not depend on ubiquitination. Together, our findings suggest that the dileucine motif in the trileucine region and tyrosine motif participate in IL-13Ralpha2 internalization in distinct manners.
Related Compounds
Related Articles:
2010-10-19
[Proc. Natl. Acad. Sci. U. S. A. 107 , 18143-18148, (2010)]
Trileucine improves aerosol performance and stability of spray-dried powders for inhalation.
2008-01-01
[J. Pharm. Sci. 97 , 287-302, (2008)]
2010-11-01
[Pharm. Res. 27 , 2317-2329, (2010)]
2011-07-01
[Am. J. Physiol. Gastrointest. Liver Physiol. 301 , G69-81, (2011)]
2009-05-01
[J. Chromatogr. A. 1216 , 3992-4004, (2009)]