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TLR9 and beclin 1 crosstalk regulates muscle AMPK activation in exercise 期刊论文
NATURE, 2020
作者:  Keener, Megan;  Hunt, Camden;  Carroll, Timothy G.;  Kampel, Vladimir;  Dobrovetsky, Roman;  Hayton, Trevor W.;  Menard, Gabriel
收藏  |  浏览/下载:18/0  |  提交时间:2020/07/03

In mice, the interaction of the innate immune sensor TLR9 with beclin 1 is shown to have a role in glucose metabolism and AMPK activation in skeletal muscle during exercise.


The activation of adenosine monophosphate-activated protein kinase (AMPK) in skeletal muscle coordinates systemic metabolic responses to exercise(1). Autophagy-a lysosomal degradation pathway that maintains cellular homeostasis(2)-is upregulated during exercise, and a core autophagy protein, beclin 1, is required for AMPK activation in skeletal muscle(3). Here we describe a role for the innate immune-sensing molecule Toll-like receptor 9 (TLR9)(4), and its interaction with beclin 1, in exercise-induced activation of AMPK in skeletal muscle. Mice that lack TLR9 are deficient in both exercise-induced activation of AMPK and plasma membrane localization of the GLUT4 glucose transporter in skeletal muscle, but are not deficient in autophagy. TLR9 binds beclin 1, and this interaction is increased by energy stress (glucose starvation and endurance exercise) and decreased by a BCL2 mutation(3,5) that blocks the disruption of BCL2-beclin 1 binding. TLR9 regulates the assembly of the endolysosomal phosphatidylinositol 3-kinase complex (PI3KC3-C2)-which contains beclin 1 and UVRAG-in skeletal muscle during exercise, and knockout of beclin 1 or UVRAG inhibits the cellular AMPK activation induced by glucose starvation. Moreover, TLR9 functions in a muscle-autonomous fashion in ex vivo contraction-induced AMPK activation, glucose uptake and beclin 1-UVRAG complex assembly. These findings reveal a heretofore undescribed role for a Toll-like receptor in skeletal-muscle AMPK activation and glucose metabolism during exercise, as well as unexpected crosstalk between this innate immune sensor and autophagy proteins.


  
Tripled yield in direct-drive laser fusion through statistical modelling 期刊论文
NATURE, 2019, 565 (7741) : 581-+
作者:  Gopalaswamy, V.;  Betti, R.;  Knauer, J. P.;  Luciani, N.;  Patel, D.;  Woo, K. M.;  Bose, A.;  Igumenshchev, I. V.;  Campbell, E. M.;  Anderson, K. S.;  Bauer, K. A.;  Bonino, M. J.;  Cao, D.;  Christopherson, A. R.;  Collins, G. W.;  Collins, T. J. B.;  Davies, J. R.;  Delettrez, J. A.;  Edgell, D. H.;  Epstein, R.;  Forrest, C. J.;  Froula, D. H.;  Glebov, V. Y.;  Goncharov, V. N.;  Harding, D. R.;  Hu, S. X.;  Jacobs-Perkins, D. W.;  Janezic, R. T.;  Kelly, J. H.;  Mannion, O. M.;  Maximov, A.;  Marshall, F. J.;  Michel, D. T.;  Miller, S.;  Morse, S. F. B.;  Palastro, J.;  Peebles, J.;  Radha, P. B.;  Regan, S. P.;  Sampat, S.;  Sangster, T. C.;  Sefkow, A. B.;  Seka, W.;  Shah, R. C.;  Shmyada, W. T.;  Shvydky, A.;  Stoeckl, C.;  Solodov, A. A.;  Theobald, W.;  Zuegel, J. D.;  Johnson, M. Gatu;  Petrasso, R. D.;  Li, C. K.;  Frenje, J. A.
收藏  |  浏览/下载:12/0  |  提交时间:2019/11/27
Reconstitution of the tubular endoplasmic reticulum network with purified components 期刊论文
NATURE, 2017, 543 (7644) : 257-+
作者:  Powers, Robert E.;  Wang, Songyu;  Liu, Tina Y.;  Rapoport, Tom A.
收藏  |  浏览/下载:3/0  |  提交时间:2019/04/09