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大鼠下丘脑在整个发情周期中P物质编码的β-、γ-前速激肽原和P物质受体NK-1转录本水平的变化:β-前速激肽原与NK-1 mRNA量之间的相关性。

Variations in levels of substance P-encoding beta-, gamma-preprotachykinin and substance P receptor NK-1 transcripts in the rat hypothalamus throughout the estrous cycle: a correlation between amounts of beta-preprotachykinin and NK-1 mRNA.

作者信息

Gautreau A, Duval P, Kerdelhué B

机构信息

Laboratoire de Neuroendocrinologie, CNRS URA 1310, Faculté de Pharmacie, Paris, France.

出版信息

Brain Res Mol Brain Res. 1997 Oct 3;49(1-2):157-64. doi: 10.1016/s0169-328x(97)00140-x.

Abstract

Using a sensitive RNase protection assay, the simultaneous quantification of hypothalamic beta-, gamma-preprotachykinin (PPT) and SP receptor NK-1 transcripts was performed throughout the estrous cycle. The amounts of these 3 transcripts were up-regulated during diestrus II-proestrus night (2-, 1.5- and 1.3-fold, respectively). These levels returned to low values during the proestrous day in the case of gamma-PPT mRNA and during the estrus-diestrus I night in the cases of beta-PPT and NK-1 mRNAs. These results implicate a differential regulation in amounts of the two alternatively spliced PPT transcripts. The 160 hypothalami of this study had been previously assayed for amounts of substance P (SP) and neurokinin A (NKA) peptides [P. Duval, V. Lenoir, S. Moussaoui, C. Garret and B. Kerdelhué, Substance P and neurokinin A variations throughout the rat estrous cycle; comparison with ovariectomized and male rats: I. Plasma, hypothalamus, anterior and posterior pituitary, J. Neurosci. Res., 45 (1996) 598-609]. Variations in mRNA and peptide levels were compared by statistical analysis. Surprisingly, variations in SP level paralleled those in beta-PPT mRNA level and variations in NKA level paralleled those of gamma-PPT mRNA level, although beta- and gamma-PPT transcripts encode both SP and NKA. Furthermore, the level of NK-1 mRNA was positively correlated with the level of beta-PPT mRNA (r = 0.90, P < 10(-58)) and with the level of SP peptide (r = 0.30, P < 10(-3)) but not with the level of NKA peptide. This analysis suggests that SP receptor NK-1 mRNA could be physiologically regulated by SP peptide in the rat hypothalamus.

摘要

利用灵敏的核糖核酸酶保护分析方法,在整个发情周期对下丘脑β-、γ-前速激肽原(PPT)和速激肽受体NK-1转录物进行同步定量分析。在动情后期Ⅱ-发情前期夜间,这3种转录物的量均上调(分别为2倍、1.5倍和1.3倍)。γ-PPT mRNA在发情前期白天恢复到低水平,β-PPT和NK-1 mRNA在发情期-动情后期Ⅰ夜间恢复到低水平。这些结果表明,两种选择性剪接的PPT转录物在量上存在差异调节。本研究中的160个下丘脑先前已检测过P物质(SP)和神经激肽A(NKA)肽的量[P. 杜瓦尔、V. 勒努瓦、S. 穆萨维、C. 加勒特和B. 凯尔德吕埃,大鼠发情周期中P物质和神经激肽A的变化;与去卵巢大鼠和雄性大鼠的比较:Ⅰ. 血浆、下丘脑、垂体前叶和垂体后叶,《神经科学研究杂志》,45(1996)598 - 609]。通过统计分析比较mRNA和肽水平的变化。令人惊讶的是,SP水平的变化与β-PPT mRNA水平的变化平行,NKA水平的变化与γ-PPT mRNA水平的变化平行,尽管β-和γ-PPT转录物都编码SP和NKA。此外,NK-1 mRNA水平与β-PPT mRNA水平呈正相关(r = 0.90,P < 10^(-58)),与SP肽水平呈正相关(r = 0.30,P < 10^(-3)),但与NKA肽水平无关。该分析表明,大鼠下丘脑中的SP受体NK-1 mRNA可能受SP肽的生理调节。

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