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脑钠肽对大鼠视网膜ON型双极细胞上GABA受体的调节作用。

Modulation by brain natriuretic peptide of GABA receptors on rat retinal ON-type bipolar cells.

作者信息

Yu Yong-Chun, Cao Li-Hui, Yang Xiong-Li

机构信息

Institute of Neurobiology, Fudan University, Shanghai 200433, China.

出版信息

J Neurosci. 2006 Jan 11;26(2):696-707. doi: 10.1523/JNEUROSCI.3653-05.2006.

Abstract

Natriuretic peptides (NPs) may work as neuromodulators through their associated receptors [NP receptors (NPRs)]. By immunocytochemistry, we showed that NPR-A and NPR-B were expressed abundantly on both ON-type and OFF-type bipolar cells (BCs) in rat retina, including the dendrites, somata, and axon terminals. Whole-cell recordings made from isolated ON-type BCs further showed that brain natriuretic peptide (BNP) suppressed GABAA receptor-, but not GABAC receptor-, mediated currents of the BCs, which was blocked by the NPR-A antagonist anantin. The NPR-C agonist c-ANF [des(Gln18, Ser19, Gln20, Leu21, Gly22)ANF(4-23)-NH2] did not suppress GABAA currents. The BNP effect on GABAA currents was abolished with preincubation with the pGC-A/B antagonist HS-142-1 but mimicked by application of 8-bromoguanosine-3',5'-cyclomonophosphate. These results suggest that elevated levels of intracellular cGMP caused by activation of NPR-A may mediate the BNP effect. Internal infusion of the cGMP-dependent protein kinase G (PKG) inhibitor KT5823 essentially blocked the BNP-induced reduction of GABAA currents. Moreover, calcium imaging showed that BNP caused a significant elevation of intracellular calcium that could be caused by increased calcium release from intracellular stores by PKG. The BNP effect was blocked by the ryanodine receptor modulators caffeine, ryanodine, and ruthenium red but not by the IP3 receptor antagonists heparin and xestospongin-C. Furthermore, the BNP effect was abolished after application of the blocker of endoplasmic reticulum Ca2+-ATPase thapsigargin and greatly reduced by the calmodulin inhibitors W-7 and calmidazolium. We therefore conclude that the increased calcium release from ryanodine-sensitive calcium stores by BNP may be responsible for the BNP-caused GABAA response suppression in ON-type BCs through stimulating calmodulin.

摘要

利钠肽(NPs)可能通过其相关受体[NP受体(NPRs)]发挥神经调节作用。通过免疫细胞化学方法,我们发现NPR-A和NPR-B在大鼠视网膜的ON型和OFF型双极细胞(BCs)上均大量表达,包括树突、胞体和轴突终末。对分离出的ON型BCs进行的全细胞记录进一步显示,脑利钠肽(BNP)抑制了BCs中由GABAA受体介导的电流,但不抑制由GABAC受体介导的电流,该作用被NPR-A拮抗剂阿南亭阻断。NPR-C激动剂c-ANF [去(Gln18,Ser19,Gln20,Leu21,Gly22)ANF(4 - 23)-NH2]并未抑制GABAA电流。BNP对GABAA电流的作用在用pGC-A/B拮抗剂HS-142-1预孵育后消失,但应用8-溴鸟苷-3',5'-环一磷酸可模拟该作用。这些结果表明,NPR-A激活导致的细胞内cGMP水平升高可能介导了BNP的作用。向细胞内注入cGMP依赖性蛋白激酶G(PKG)抑制剂KT5823基本阻断了BNP诱导的GABAA电流降低。此外,钙成像显示BNP导致细胞内钙显著升高,这可能是由PKG使细胞内钙库释放增加所致。BNP的作用被兰尼碱受体调节剂咖啡因、兰尼碱和钌红阻断,但未被IP3受体拮抗剂肝素和西司他汀-C阻断。此外,应用内质网Ca2+-ATP酶抑制剂毒胡萝卜素后,BNP的作用消失,且被钙调蛋白抑制剂W-7和氯米达唑显著减弱。因此,我们得出结论,BNP使兰尼碱敏感的钙库释放的钙增加,可能通过刺激钙调蛋白导致ON型BCs中BNP引起的GABAA反应抑制。

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