Atypical interactions of integrin α<sub>V</sub>β<sub>8</sub> with pro-TGF-β1.

Wang, Jianchuan; Dong, Xianchi; Zhao, Bo; Li, Jing; Lu, Chafen; Springer, Timothy A · Proc Natl Acad Sci U S A · 2017

basic_science · Level V

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Abstract

Integrins α<sub>V</sub>β<sub>6</sub> and α<sub>V</sub>β<sub>8</sub> are specialized for recognizing pro-TGF-β and activating its growth factor by releasing it from the latency imposed by its surrounding prodomain. The integrin α<sub>V</sub>β<sub>8</sub> is atypical among integrins in lacking sites in its cytoplasmic domain for binding to actin cytoskeleton adaptors. Here, we examine α<sub>V</sub>β<sub>8</sub> for atypical binding to pro-TGF-β1. In contrast to α<sub>V</sub>β<sub>6</sub>, α<sub>V</sub>β<sub>8</sub> has a constitutive extended-closed conformation, and binding to pro-TGF-β1 does not stabilize the open conformation of its headpiece. Although Mn<sup>2+</sup> potently activates other integrins and increases affinity of α<sub>V</sub>β<sub>6</sub> for pro-TGF-β1 25- to 55-fold, it increases α<sub>V</sub>β<sub>8</sub> affinity only 2- to 3-fold. This minimal effect correlates with the inability of Mn<sup>2+</sup> and pro-TGF-β1 to stabilize the open conformation of the α<sub>V</sub>β<sub>8</sub> headpiece. Moreover, α<sub>V</sub>β<sub>8</sub> was inhibited by high concentrations of Mn<sup>2+</sup> and was stimulated and inhibited at markedly different Ca<sup>2+</sup> concentrations than α<sub>V</sub>β<sub>6</sub> These unusual characteristics are likely to be important in the still incompletely understood physiologic mechanisms that regulate α<sub>V</sub>β<sub>8</sub> binding to and activation of pro-TGF-β.

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