Ewald D A, Matthies H J, Perney T M, Walker M W, Miller R J
Department of Pharmacological and Physiological Sciences, University of Chicago, Illinois 60637.
J Neurosci. 1988 Jul;8(7):2447-51. doi: 10.1523/JNEUROSCI.08-07-02447.1988.
Dorsal root ganglion (DRG) neurons cultured from neonatal rats contained high concentrations of protein kinase C (PKC). Normally, the majority of the enzyme activity was found in the cytosol and considerably less was associated with the membrane fraction. Upon incubation with the phorbol ester phorbol dibutyrate (PDBu, 10(-6) M) for 20 min, PKC activity increased in the membrane-associated fraction and decreased in the cytoplasmic fraction. Longer incubations with phorbol ester also induced a decline in membrane-associated PKC activity. If incubations were continued for periods of over 10 hr, both membrane and cytosolic PKC activity declined essentially to zero. Down-regulation of PKC had no effect on the number or affinity of 125I-neuropeptide Y (NPY) binding sites on DRG cells or on the absolute magnitude of the DRG Ca2+ current. However, the ability of NPY to inhibit the DRG Ca2+ current was greatly reduced. When sustained Ca2+ currents were evoked from depolarized holding potentials (-40 mV), all concentrations of NPY (10(-10)-10(-7) M) were less effective. In contrast, higher concentrations of NPY still blocked the transient portion of the DRG Ca2+ current evoked from hyperpolarized holding potentials. These results support the suggestion that PKC is involved in the inhibitory modulation of DRG Ca2+ currents by neurotransmitters. The precise role of PKC may vary depending on the type of Ca2+ channel involved.
从新生大鼠培养的背根神经节(DRG)神经元含有高浓度的蛋白激酶C(PKC)。正常情况下,大部分酶活性存在于胞质溶胶中,与膜部分相关的活性则少得多。用佛波酯佛波醇二丁酸酯(PDBu,10⁻⁶ M)孵育20分钟后,膜相关部分的PKC活性增加,而细胞质部分的活性降低。用佛波酯进行更长时间的孵育也会导致膜相关PKC活性下降。如果孵育持续超过10小时,膜和胞质溶胶中的PKC活性基本上都会降至零。PKC的下调对DRG细胞上¹²⁵I-神经肽Y(NPY)结合位点的数量或亲和力以及DRG Ca²⁺电流的绝对大小没有影响。然而,NPY抑制DRG Ca²⁺电流的能力大大降低。当从去极化的保持电位(-40 mV)诱发持续的Ca²⁺电流时,所有浓度的NPY(10⁻¹⁰ - 10⁻⁷ M)的效果都较差。相比之下,较高浓度的NPY仍然可以阻断从超极化保持电位诱发的DRG Ca²⁺电流的瞬态部分。这些结果支持了PKC参与神经递质对DRG Ca²⁺电流的抑制性调节这一观点。PKC的确切作用可能因所涉及的Ca²⁺通道类型而异。