HIPPOCAMPAL GLUCOCORTICOID RECEPTOR ACTIVATION ENHANCES VOLTAGE-DEPENDENT CA2+ CONDUCTANCES - RELEVANCE TO BRAIN AGING

被引:223
作者
KERR, DS [1 ]
CAMPBELL, LW [1 ]
THIBAULT, O [1 ]
LANDFIELD, PW [1 ]
机构
[1] UNIV OTAGO, DEPT PSYCHOL, DUNEDIN, NEW ZEALAND
关键词
D O I
10.1073/pnas.89.18.8527
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Glucocorticoids (GCs) activate several biochemical/molecular processes in the hippocampus through two receptor types. In addition, GCs influence cognitive behaviors and hippocampal neural activity and can also increase the rate of aging-dependent cell loss in the hippocampus. However, the ionic mechanisms through which GCs modulate hippocampal neuronal function are not well understood. We report here direct evidence that activation of cytosolic steroid receptors, specifically of the type II GC receptor, can enhance voltage-dependent Ca2+ conductances in brain neurons. Ca2+ current was assessed by current-clamp measures of Ca2+ action potentials and by sharp electrode voltage-clamp analyses of voltage-sensitive currents in cesium-, tetrodotoxin-, and tetraethylammonium-treated CA1 neurons in hippocampal slices. Both Ca2+ action potentials and voltage-activated Ca2+ currents (N- and L-like) were increased by 2-hr exposure to the synthetic GC receptor agonist, RU 28362. This effect of RU 28362 was blocked by coincubation with cycloheximide, indicating that the GC receptor-Ca2+ channel interaction depends on de novo protein synthesis. Dysregulated calcium homeostasis is also viewed as a candidate mechanism in brain aging. Thus, present results are consistent with the hypothesis that excessive GC-receptor activation and resultant increased Ca2+ influx may be two sequential phases of a brain-aging process that results initially in impairment of function and eventually in neuronal loss.
引用
收藏
页码:8527 / 8531
页数:5
相关论文
共 50 条
  • [1] EPILEPTIFORM BURST AFTERHYPERPOLARIZATION - CALCIUM-DEPENDENT POTASSIUM POTENTIAL IN HIPPOCAMPAL CA1-PYRAMIDAL CELLS
    ALGER, BE
    NICOLL, RA
    [J]. SCIENCE, 1980, 210 (4474) : 1122 - 1124
  • [2] CLASSES OF CALCIUM CHANNELS IN VERTEBRATE CELLS
    BEAN, BP
    [J]. ANNUAL REVIEW OF PHYSIOLOGY, 1989, 51 : 367 - 384
  • [3] CAMPBELL L W, 1990, Society for Neuroscience Abstracts, V16, P676
  • [4] PHARMACOLOGICAL EVIDENCE THAT THE INHIBITION OF DIURNAL ADRENOCORTICOTROPIN SECRETION BY CORTICOSTEROIDS IS MEDIATED VIA TYPE-I CORTICOSTERONE-PREFERRING RECEPTORS
    DALLMAN, MF
    LEVIN, N
    CASCIO, CS
    AKANA, SF
    JACOBSON, L
    KUHN, RW
    [J]. ENDOCRINOLOGY, 1989, 124 (06) : 2844 - 2850
  • [5] DEKLOET ER, 1991, FRONT NEUROENDOCRIN, V12, P95
  • [6] DEWIED D, 1989, NEWS PHYSIOL SCI, V4, P32
  • [7] NIMODIPINE FACILITATES ASSOCIATIVE LEARNING IN AGING RABBITS
    DEYO, RA
    STRAUBE, KT
    DISTERHOFT, JF
    [J]. SCIENCE, 1989, 243 (4892) : 809 - 811
  • [8] Dingledine R., 1984, BRAIN SLICES
  • [9] CENTRAL GLUCOCORTICOID RECEPTOR IMMUNOREACTIVE NEURONS - NEW INSIGHTS INTO THE ENDOCRINE REGULATION OF THE BRAIN
    FUXE, K
    CINTRA, A
    HARFSTRAND, A
    AGNATI, LF
    KALIA, M
    ZOLI, M
    WIKSTROM, AC
    OKRET, S
    ARONSSON, M
    GUSTAFSSON, JA
    [J]. ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1987, 512 : 362 - 393
  • [10] CALCIUM AND THE AGING NERVOUS-SYSTEM
    GIBSON, GE
    PETERSON, C
    [J]. NEUROBIOLOGY OF AGING, 1987, 8 (04) : 329 - 343