Reconstitution of the functional receptors for murine and human interleukin 5

111Citations
Citations of this article
10Readers
Mendeley users who have this article in their library.

Abstract

The murine interleukin 5 receptor (mIL-5R) is composed of two distinct subunits, α and β. The α subunit (mIL-5Ra) specifically binds IL-5 with low affinity. The β subunit (mIL-5Rβ) does not bind IL-5 by itself, but forms the high-affinity receptor with mIL-5Rα. mIL-5Rβ has been revealed to be the mIL-3R-like protein, AIC2B which is shared with receptors for IL-3 and granulocyte/macrophage colony-stimulating factor. We demonstrated here the reconstitution of the functional receptors for murine and human IL-5 on the mouse IL-2-dependent cell line, CTLL-2. CTLL-2 was transfected with the cDNAs for mIL-5Ra and/or AIC2B. Only CTLL-2 transfectant expressing both mIL-5Rα and AIC2B expressed the high-affinity receptor and proliferated in response to murine IL-5. Then CTLL-2 was transfected with the cDNAs for hIL-5Rα and/or KH97 (βc), the human homologue of AIC2B. Though βc did not contribute much to binding affinity of hIL-5R, only CTLL-2 transfectant expressing both hIL-5Rα and βc proliferated in response to human IL-5. These results showed that the β subunit is indispensable in IL-5 signal transduction. We further investigated the function of IL-5-specific α subunit in transmitting IL-5 signals. Mutant mIL-5Rα, which lacks its whole cytoplasmic domain, was transfected into mouse IL-3-dependent cell line, FDC-P1 expressing AIC2B intrinsically. The resulting transfectant did not respond to IL-5, though the transfectant expressed the high-affinity IL-5R, indicating that the cytoplasmic portion of the a subunit also has some important role in IL-5-mediated signal transduction.

Cite

CITATION STYLE

APA

Takaki, S., Murata, Y., Kitamura, T., Miyajima, A., Tominaga, A., & Takatsu, K. (1993). Reconstitution of the functional receptors for murine and human interleukin 5. Journal of Experimental Medicine, 177(6), 1523–1529. https://doi.org/10.1084/jem.177.6.1523

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free