Heterotrimeric G protein activation rapidly inhibits outgrowth of optic axons from adult and embryonic mouse, and goldfish retinal explants

被引:12
作者
Bates, CA
Meyer, RL
机构
[1] Deptartment Devmtl. and Cell Biol., University of California at Irvine, Irvine
关键词
development; retina; tissue culture; neurite outgrowth; regenerative failure;
D O I
10.1016/0006-8993(95)01468-3
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Axons in the adult mammalian CNS normally do not regenerate following axotomy even though they retain the capacity for growth under certain experimental conditions. Although this implies that the regeneration of adult axons is under regulative control, very little is known about the signaling pathways responsible for this regulation. This study examines the possibility that a G protein signaling system exists in adult mouse optic fibers and that it functions to regulate axonal outgrowth. To induce the growth of optic fibers, retinas from adult mouse were placed in organotypic culture under serum free conditions and allowed to regenerate onto a laminin substrate. Heterotrimeric G proteins were stimulated by adding mastoparan (MST) to the medium while monitoring growing fibers with time lapse microscopy. Mastoparan treatment produced rapid growth cone collapse and axonal retraction which persisted while MST was present. Prior addition of pertussis toxin (PTX), which irreversibly inactivates the G proteins, G(o) and G(i), completely blocked the effect of MST, confirming that MST was acting through the PTX sensitive G proteins. Selective activation of G proteins in the growth cone by local application of MST with a micropipet was equally effective. For comparison, equivalent experiments were performed on embryonic day 15 retinal explants and on retinal explants from adult goldfish, which normally regenerate in vivo. MST similarly inhibited these axons and this effect was blocked by PTX. However, embryonic fibers were less reliably affected compared to goldfish or adult mouse, suggesting a developmentally regulated sensitivity. The presence of G-proteins in the mouse axons was further tested immunohistochemically using antibodies against G(o)/G(i). Positive staining was detected in the growth cones and shaft of adult and embryonic mouse optic fibers. These findings demonstrate that G protein activation inhibits axonal outgrowth and suggest that there may be a G protein signaling pathway that normally regulates this outgrowth. However, since this pathway appears to exist in both axons that can regenerate and those that normally do not, the presence of PTX-sensitive G proteins alone cannot account for regenerative failure. Regenerative failure may instead be explained as the selective or increased activation of this pathway in the adult mammalian CNS.
引用
收藏
页码:65 / 75
页数:11
相关论文
共 46 条
[1]   DEGENERATIVE AND REGENERATIVE RESPONSES OF INJURED NEURONS IN THE CENTRAL-NERVOUS-SYSTEM OF ADULT MAMMALS [J].
AGUAYO, AJ ;
RASMINSKY, M ;
BRAY, GM ;
CARBONETTO, S ;
MCKERRACHER, L ;
VILLEGASPEREZ, MP ;
VIDALSANZ, M ;
CARTER, DA .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 1991, 331 (1261) :337-343
[2]   2 FORMS OF G(O)-TYPE G-PROTEINS - IDENTIFICATION AND DISTRIBUTION IN VARIOUS RAT-TISSUES AND CLONED CELLS [J].
ASANO, T ;
MORISHITA, R ;
KATO, K .
JOURNAL OF NEUROCHEMISTRY, 1992, 58 (06) :2176-2181
[3]   ONTOGENY OF THE GTP-BINDING PROTEIN G0 IN RAT-BRAIN AND HEART [J].
ASANO, T ;
KAMIYA, N ;
SEMBA, R ;
KATO, K .
JOURNAL OF NEUROCHEMISTRY, 1988, 51 (06) :1711-1716
[4]   ROLE OF INTRACELLULAR CALCIUM IN NI-35-EVOKED COLLAPSE OF NEURONAL GROWTH CONES [J].
BANDTLOW, CE ;
SCHMIDT, MF ;
HASSINGER, TD ;
SCHWAB, ME ;
KATER, SB .
SCIENCE, 1993, 259 (5091) :80-83
[5]  
BATES C A, 1990, Society for Neuroscience Abstracts, V16, P338
[6]   THE HEAVY NEUROFILAMENT PROTEIN IS EXPRESSED IN REGENERATING ADULT BUT NOT EMBRYONIC MAMMALIAN OPTIC FIBERS INVITRO [J].
BATES, CA ;
MEYER, RL .
EXPERIMENTAL NEUROLOGY, 1993, 119 (02) :249-257
[7]   DISTRIBUTION OF MICROTUBULE-ASSOCIATED PROTEINS (MAPS) IN ADULT AND EMBRYONIC MOUSE RETINAL EXPLANTS - PRESENCE OF THE EMBRYONIC MAP, MAP5/1B, IN REGENERATING ADULT RETINAL AXONS [J].
BATES, CA ;
TRINH, N ;
MEYER, RL .
DEVELOPMENTAL BIOLOGY, 1993, 155 (02) :533-544
[8]   DIFFERENTIAL EFFECT OF SERUM ON LAMININ-DEPENDENT OUTGROWTH OF EMBRYONIC AND ADULT-MOUSE OPTIC AXONS IN-VITRO [J].
BATES, CA ;
MEYER, RL .
EXPERIMENTAL NEUROLOGY, 1994, 125 (01) :99-105
[9]  
BOKOCH GM, 1983, J BIOL CHEM, V258, P2072
[10]   BOTH REGENERATING AND LATE-DEVELOPING PATHWAYS CONTRIBUTE TO TRANSPLANT-INDUCED ANATOMICAL PLASTICITY AFTER SPINAL-CORD LESIONS AT BIRTH [J].
BREGMAN, BS ;
BERNSTEINGORAL, H .
EXPERIMENTAL NEUROLOGY, 1991, 112 (01) :49-63