Cardiac troponin I directly binds and inhibits mitochondrial ATP synthase with a noncanonical role in the post-ischemic heart.

心肌肌钙蛋白 I 直接结合并抑制线粒体 ATP 合酶,在缺血后心脏中发挥非经典作用

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作者:Elezaby Aly, Lin Amanda J, Vijayan Vijith, Pokhrel Suman, Kraemer Benjamin R, Bechara Luiz R G, Larus Isabel, Sun Junhui, Baena Valentina, Syed Zulfeqhar A, Murphy Elizabeth, Glancy Brian, Ostberg Nicolai P, Queliconi Bruno B, Campos Juliane C, Ferreira Julio C B, Haileselassie Bereketeab, Mochly-Rosen Daria
Cardiac troponin I (cTnI) is a key regulator of cardiomyocyte contraction. However, its role in mitochondria is unknown. Here we show that cTnI localized to mitochondria in the heart, inhibited mitochondrial functions when stably expressed in noncardiac cells and increased the opening of the mitochondrial permeability transition pore under oxidative stress. Direct, specific and saturable binding of cTnI to F(1)F(O)-ATP synthase was demonstrated in vitro using immune-captured ATP synthase and in cells using proximity ligation assay. cTnI binding doubled ATPase activity, whereas skeletal troponin I and several human pathogenic cTnI variants associated with familial hypertrophic cardiomyopathy did not. A rationally designed peptide, P888, inhibited cTnI binding to ATP synthase, inhibited cTnI-induced increase in ATPase activity in vitro and reduced cardiac injury following transient ischemia in vivo. We suggest that cTnI-bound ATP synthase results in lower ATP levels, and releasing this interaction during cardiac ischemia-reperfusion may increase the reservoir of functional mitochondria to reduce cardiac injury.

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