Gaillard J P, Mani J C, Liautard J, Klein B, Brochier J
INSERM U. 475, 99, rue Puech-Villa, 34197 Montpellier, Cedex 05 France.
Eur Cytokine Netw. 1999 Mar;10(1):43-8.
Interleukin-6 (IL-6) is used as a growth factor by various tumor cells. It binds to a gp80 specific receptor (IL-6R) and then to a gp130 transducing chain. Both receptor chains are released as soluble functional proteins which circulate in biological fluids. To study the physiological role of these soluble receptors, both proteins were purified from human plasma and the kinetic constants of equilibria between IL-6 and its natural soluble IL-6R (sIL-6R) and gp130 receptor (sgp130) were measured using surface plasmon resonance analysis. Unexpectedly, natural sIL-6R and natural sgp130 were found to interact (Kd = 2.8 nM) in the absence of IL-6. No interaction was seen between the recombinant soluble receptors or between either natural soluble receptor and its recombinant partner. This binary complex was not due to copurification of IL-6 and was detected in human plasma of healthy donors. It results from either direct interaction between the two natural soluble receptors or indirect binding mediated by a yet unidentified copurified plasma molecule playing the role of an IL-6 antagonist. Once formed, the binary complex was found to be unable to bind IL-6. Soluble gp130 had already been shown to inhibit IL-6 signaling by inactivating the IL-6/IL-6R complex. In addition we show that, in the absence of IL-6, circulating natural sgp130 is able to inhibit directly the circulating sIL-6R that is a strong synergic molecule of IL-6 signaling.
白细胞介素-6(IL-6)被多种肿瘤细胞用作生长因子。它与gp80特异性受体(IL-6R)结合,然后与gp130转导链结合。两种受体链均以可溶性功能蛋白形式释放,在生物体液中循环。为研究这些可溶性受体的生理作用,从人血浆中纯化了这两种蛋白,并使用表面等离子体共振分析测定了IL-6与其天然可溶性IL-6R(sIL-6R)和gp130受体(sgp130)之间平衡的动力学常数。出乎意料的是,发现天然sIL-6R和天然sgp130在没有IL-6的情况下相互作用(解离常数Kd = 2.8 nM)。重组可溶性受体之间或天然可溶性受体与其重组伴侣之间均未观察到相互作用。这种二元复合物不是由于IL-6的共纯化,并且在健康供体的人血浆中被检测到。它是由两种天然可溶性受体之间的直接相互作用或由尚未鉴定的共纯化血浆分子介导间接结合产生的,该血浆分子起到IL-6拮抗剂的作用。一旦形成,发现二元复合物无法结合IL-6。可溶性gp130已被证明通过使IL-6/IL-6R复合物失活来抑制IL-6信号传导。此外,我们表明,在没有IL-6的情况下,循环中的天然sgp130能够直接抑制循环中的sIL-6R,而sIL-6R是IL-6信号传导的强协同分子。