Activated mTORC1 promotes long-term cone survival in retinitis pigmentosa mice

被引:119
作者
Venkatesh, Aditya [1 ,2 ]
Ma, Shan [1 ,2 ,3 ]
Le, Yun Z. [4 ]
Hall, Michael N. [5 ]
Rueegg, Markus A. [5 ]
Punzo, Claudio [1 ,2 ]
机构
[1] Univ Massachusetts, Sch Med, Dept Ophthalmol, Worcester, MA 01605 USA
[2] Univ Massachusetts, Sch Med, Gene Therapy Ctr, Worcester, MA 01605 USA
[3] Tianjin Med Univ, Hosp Eye, Nankai Dist Tianjin, Peoples R China
[4] Univ Oklahoma, Hlth Sci Ctr, Dept Med, Endocrinol Sect, Oklahoma City, OK USA
[5] Univ Basel, Biozentrum, Basel, Switzerland
关键词
RETINAL DEGENERATION; CELL-DEATH; MOUSE MODEL; INCREASED EXPRESSION; DIFFUSIBLE FACTOR; CRE RECOMBINASE; ROD; RICTOR; GENE; POPULATIONS;
D O I
10.1172/JCI79766
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Retinitis pigmentosa (RP) is an inherited photoreceptor degenerative disorder that results in blindness. The disease is often caused by mutations in genes that are specific to rod photoreceptors; however, blindness results from the secondary loss of cones by a still unknown mechanism. Here, we demonstrated that the mammalian target of rapamycin complex 1 (mTORC1) is required to slow the progression of cone death during disease and that constitutive activation of mTORC1 in cones is sufficient to maintain cone function and promote long-term cone survival. Activation of mTORC1 in cones enhanced glucose uptake, retention, and utilization, leading to increased levels of the key metabolite NADPH. Moreover, cone death was delayed in the absence of the NADPH-sensitive cell death protease caspase 2, supporting the contribution of reduced NADPH in promoting cone death. Constitutive activation of mTORC1 preserved cones in 2 mouse models of RP, suggesting that the secondary loss of cones is caused mainly by metabolic deficits and is independent of a specific rod-associated mutation. Together, the results of this study address a longstanding question in the field and suggest that activating mTORC1 in cones has therapeutic potential to prolong vision in RP.
引用
收藏
页码:1446 / 1458
页数:13
相关论文
共 60 条
  • [1] CNS energy metabolism as related to function
    Ames, A
    [J]. BRAIN RESEARCH REVIEWS, 2000, 34 (1-2) : 42 - 68
  • [2] Andrieu-Soler C, 2005, MOL VIS, V11
  • [3] Skeletal Muscle-Specific Ablation of raptor, but Not of rictor, Causes Metabolic Changes and Results in Muscle Dystrophy
    Bentzinger, C. Florian
    Romanino, Klaas
    Cloetta, Dimitri
    Lin, Shuo
    Mascarenhas, Joseph B.
    Oliveri, Filippo
    Xia, Jinyu
    Casanova, Emilio
    Costa, Celine F.
    Brink, Marijke
    Zorzato, Francesco
    Hall, Michael N.
    Rueegg, Markus A.
    [J]. CELL METABOLISM, 2008, 8 (05) : 411 - 424
  • [4] Defects in regulation of apoptosis in caspase-2-deficient mice
    Bergeron, L
    Perez, GI
    Macdonald, G
    Shi, LF
    Sun, Y
    Jurisicova, A
    Varmuza, S
    Latham, KE
    Flaws, JA
    Salter, JCM
    Hara, H
    Moskowitz, MA
    Li, E
    Greenberg, A
    Tilly, JL
    Yuan, JY
    [J]. GENES & DEVELOPMENT, 1998, 12 (09) : 1304 - 1314
  • [5] Selective loss of cone function in mice lacking the cyclic nucleotide-gated channel CNG3
    Biel, M
    Seeliger, M
    Pfeifer, A
    Kohler, K
    Gerstner, A
    Ludwig, A
    Jaissle, G
    Fauser, S
    Zrenner, E
    Hofmann, F
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (13) : 7553 - 7557
  • [6] RETINAL DEGENERATION IN THE RD MOUSE IS CAUSED BY A DEFECT IN THE BETA-SUBUNIT OF ROD CGMP-PHOSPHODIESTERASE
    BOWES, C
    LI, TS
    DANCIGER, M
    BAXTER, LC
    APPLEBURY, ML
    FARBER, DB
    [J]. NATURE, 1990, 347 (6294) : 677 - 680
  • [7] Distinct and Atypical Intrinsic and Extrinsic Cell Death Pathways between Photoreceptor Cell Types upon Specific Ablation of Ranbp2 in Cone Photoreceptors
    Cho, Kyoung-in
    Haque, MdEmdadul
    Wang, Jessica
    Yu, Minzhong
    Hao, Ying
    Qiu, Sunny
    Pillai, Indulekha C. L.
    Peachey, Neal S.
    Ferreira, Paulo A.
    [J]. PLOS GENETICS, 2013, 9 (06):
  • [8] Glucose Addiction of TSC Null Cells Is Caused by Failed mTORC1-Dependent Balancing of Metabolic Demand with Supply
    Choo, Andrew Y.
    Kim, Sang Gyun
    Heiden, Matthew G. Vander
    Mahoney, Sarah J.
    Vu, Hieu
    Yoon, Sang-Oh
    Cantley, Lewis C.
    Blenis, John
    [J]. MOLECULAR CELL, 2010, 38 (04) : 487 - 499
  • [9] Curatolo P, 2013, HAND CLINIC, V111, P323, DOI 10.1016/B978-0-444-52891-9.00038-5
  • [10] Characterization of Rictor Phosphorylation Sites Reveals Direct Regulation of mTOR Complex 2 by S6K1
    Dibble, Christian C.
    Asara, John M.
    Manning, Brendan D.
    [J]. MOLECULAR AND CELLULAR BIOLOGY, 2009, 29 (21) : 5657 - 5670