Langub M C, Watson R E, Herman J P
Department of Anatomy and Neurobiology, University of Kentucky School of Medicine, Lexington 40536-0084, USA.
J Comp Neurol. 1995 May 29;356(2):183-99. doi: 10.1002/cne.903560205.
Atrial natriuretic peptide (ANP), brain natriuretic peptide (BNP), and C-type natriuretic peptide (CNP) represent members of a recently discovered neuropeptide family involved in central regulation of endocrine and autonomic functions. The present study employed an in situ hybridization approach to provide the first detailed comparative mapping of ANP, BNP, and CNP mRNAs in brain. Results indicate that ANP mRNA is highly expressed in anterior olfactory nuclei, limbic cortices, dorsal endopiriform nucleus, hippocampal subfield CA1, cortical amygdaloid nuclei, medial habenula, anteroventral periventricular and arcuate nuclei, periventricular stratum, zona incerta, mammillary nuclei, inferior olive, nucleus ambiguus, and pontine paragigantocellular nuclei. CNP mRNA is expressed at highest levels in olfactory nuclei, limbic cortices, dorsal endopiriform nucleus, hippocampal subfields CA1-3, anteroventral periventricular and arcuate nuclei, and numerous brainstem regions (including the pontine, lateral reticular, solitary tract, prepositus hypoglossal, and spinal trigeminal nuclei). Positive labeling for BNP mRNA was not observed in brain. The presence of both ANP and CNP mRNA in the same regions of distinct nuclei (e.g., the anteroventral periventricular and arcuate nuclei) suggests the potential for coexpression. Overall, the present data are consistent with a prominent role for both ANP and CNP in neuroendocrine regulation and central cardiovascular integration. The extensive localization of ANP and/or CNP mRNA in olfactory nuclei, limbic cortex, hippocampus, amygdala and diencephalic limbic relays further indicate a putative role for ANP and CNP as neuromodulators of olfactory/limbic information processing.
心房利钠肽(ANP)、脑利钠肽(BNP)和C型利钠肽(CNP)代表了最近发现的一个神经肽家族的成员,该家族参与内分泌和自主功能的中枢调节。本研究采用原位杂交方法,首次对脑中的ANP、BNP和CNP mRNA进行了详细的比较定位。结果表明,ANP mRNA在前嗅核、边缘皮质、背侧梨状内核、海马CA1亚区、皮质杏仁核、内侧缰核、室旁前腹侧和弓状核、室周层、未定带、乳头体核、下橄榄核、疑核和脑桥旁巨细胞核中高度表达。CNP mRNA在嗅核、边缘皮质、背侧梨状内核、海马CA1-3亚区、室旁前腹侧和弓状核以及许多脑干区域(包括脑桥、外侧网状核、孤束核、舌下前置核和三叉神经脊束核)中表达水平最高。在脑中未观察到BNP mRNA的阳性标记。在不同核的相同区域(如室旁前腹侧和弓状核)同时存在ANP和CNP mRNA,提示了共表达的可能性。总体而言,目前的数据与ANP和CNP在神经内分泌调节和中枢心血管整合中的重要作用一致。ANP和/或CNP mRNA在嗅核、边缘皮质、海马、杏仁核和间脑边缘中继中的广泛定位进一步表明,ANP和CNP作为嗅觉/边缘信息处理的神经调节剂具有假定作用。