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脉冲式促性腺激素释放激素可改变促性腺激素亚基信使核糖核酸的多聚腺苷酸化。

Pulsatile gonadotropin-releasing hormone modifies polyadenylation of gonadotropin subunit messenger ribonucleic acids.

作者信息

Weiss J, Crowley W F, Jameson J L

机构信息

Department of Medicine, Massachusetts General Hospital, Harvard Medical School, Boston 02114.

出版信息

Endocrinology. 1992 Jan;130(1):415-20. doi: 10.1210/endo.130.1.1345779.

Abstract

Gonadotropin subunit mRNA levels rise after castration, coincident with a period of increased GnRH input to the pituitary. In addition to increased levels of gonadotropin mRNAs, we observed that the sizes of the alpha and LH beta mRNAs were increased after ovariectomy (OVX) of rats. To determine whether these changes occurred in the 5' (alternate transcriptional start site or splicing)- or 3' (altered polyadenylation)-end of the molecules, mRNAs were cleaved using oligonucleotide-directed RNase-H digestion, and the fragments were analyzed by Northern blot, using probes specific to the 5'- and 3'-segments of each transcript. After OVX, there was no change in the sizes of the 5'-segments of LH beta, FSH beta, and alpha-subunit mRNAs. However, the LH beta and alpha-subunit 3'-fragments were increased in size, indicating a shift to more adenylated forms of the LH beta and alpha transcripts. For FSH beta, the 3'-fragment bands were more diffuse than for LH beta or alpha-subunit, and no alteration in the lengths of FSH beta poly(A) tails were detected. A perifused pituitary cell system was used to determine whether pulses of GnRH were sufficient to cause modifications of polyadenylation. GnRH was administered as hourly 10-nM pulses for 4-12 h. Time-dependent increases in the sizes of LH beta and alpha-subunit mRNAs were observed in GnRH-treated cells compared to cells receiving no GnRH. Changes in the lengths of LH beta and alpha-subunit mRNAs were shown to be due to increased polyadenylation, and there was no observable change in polyadenylation of FSH beta mRNA. In addition, no changes were observed in the size of the 3'-fragments of PRL or beta-actin mRNAs. These data demonstrate that pulsatile GnRH administered in vitro elicits specific increases in the lengths of the LH beta and alpha-subunit mRNA poly(A) tails. Similar changes occur after OVX. Thus, in addition to transcriptional stimulation of the gonadotropin gene, GnRH modifies gonadotropin mRNAs at a posttranscriptional level.

摘要

阉割后促性腺激素亚基mRNA水平升高,这与垂体GnRH输入增加的时期相吻合。除了促性腺激素mRNA水平升高外,我们还观察到大鼠卵巢切除(OVX)后α和LHβmRNA的大小增加。为了确定这些变化是发生在分子的5'端(交替转录起始位点或剪接)还是3'端(改变的聚腺苷酸化),使用寡核苷酸定向RNase-H消化切割mRNA,并用针对每个转录本5'-和3'-片段的探针通过Northern印迹分析片段。OVX后,LHβ、FSHβ和α亚基mRNA的5'-片段大小没有变化。然而,LHβ和α亚基的3'-片段大小增加,表明LHβ和α转录本向更多聚腺苷酸化形式转变。对于FSHβ,3'-片段条带比LHβ或α亚基更弥散,未检测到FSHβ多聚(A)尾长度的改变。使用灌流垂体细胞系统来确定GnRH脉冲是否足以引起聚腺苷酸化的改变。以每小时10 nM的脉冲形式给予GnRH 4-12小时。与未接受GnRH的细胞相比,在GnRH处理的细胞中观察到LHβ和α亚基mRNA大小随时间增加。LHβ和α亚基mRNA长度的变化表明是由于聚腺苷酸化增加,并且FSHβmRNA的聚腺苷酸化没有可观察到的变化。此外,PRL或β-肌动蛋白mRNA的3'-片段大小没有变化。这些数据表明,体外给予的脉冲式GnRH会引起LHβ和α亚基mRNA多聚(A)尾长度的特异性增加。OVX后也会发生类似的变化。因此,除了对促性腺激素基因的转录刺激外,GnRH在转录后水平修饰促性腺激素mRNA。

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