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在Fshb基因敲除小鼠中评估重组低聚糖基化(FSH)和完全糖基化(FSH)人促卵泡激素糖型的体内生物活性。

Evaluation of in vivo bioactivities of recombinant hypo- (FSH) and fully- (FSH) glycosylated human FSH glycoforms in Fshb null mice.

作者信息

Wang Huizhen, May Jacob, Butnev Viktor, Shuai Bin, May Jeffrey V, Bousfield George R, Kumar T Rajendra

机构信息

Department of Molecular and Integrative Physiology, University of Kansas Medical Center, Kansas City, KS 66160, USA.

Department of Biological Sciences, Wichita State University, Wichita, KS 67260, USA.

出版信息

Mol Cell Endocrinol. 2016 Dec 5;437:224-236. doi: 10.1016/j.mce.2016.08.031. Epub 2016 Aug 22.

Abstract

The hormone - specific FSHβ subunit of the human FSH heterodimer consists of N-linked glycans at Asn and Asn residues that are co-translationally attached early during subunit biosynthesis. Differences in the number of N-glycans (none, one or two) on the human FSHβ subunit contribute to macroheterogeneity in the FSH heterodimer. The resulting FSH glycoforms are termed hypo-glycosylated (FSH, missing either an Asn or Asn N-glycan chain on the β - subunit, respectively) or fully glycosylated (FSH, possessing of both Asn and Asn N-linked glycans on the β - subunit) FSH. The recombinant versions of human FSH glycoforms (FSH and FSH) have been purified and biochemically characterized. In vitro functional studies have indicated that FSH exhibits faster FSH- receptor binding kinetics and is much more active than FSH in every assay tested to date. However, the in vivo bioactivity of the hypo-glycosylated FSH glycoform has never been tested. Here, we evaluated the in vivo bioactivities of FSH glycoforms in Fshb null mice using a pharmacological rescue approach. In Fshb null female mice, both hypo- and fully-glycosylated FSH elicited an ovarian weight gain response by 48 h and induced ovarian genes in a dose- and time-dependent manner. Quantification by real time qPCR assays indicated that hypo-glycosylated FSH was bioactive in vivo and induced FSH-responsive ovarian genes similar to fully-glycosylated FSH. Western blot analyses followed by densitometry of key signaling components downstream of the FSH-receptor confirmed that the hypo-glycosylated FSH elicited a response similar to that by fully-glycosylated FSH in ovaries of Fshb null mice. When injected into Fshb null males, hypo-glycosylated FSH was more active than the fully-glycosylated FSH in inducing FSH-responsive genes and Sertoli cell proliferation. Thus, our data establish that recombinant hypo-glycosylated human FSH glycoform elicits bioactivity in vivo similar to the fully-glycosylated FSH. Our studies may have clinical implications particularly in formulating FSH-based ovarian follicle induction protocols using a combination of different human FSH glycoforms.

摘要

人促卵泡激素(FSH)异二聚体中激素特异性的FSHβ亚基在亚基生物合成早期共翻译连接于天冬酰胺(Asn)残基上,带有N - 连接聚糖。人FSHβ亚基上N - 聚糖数量(无、一个或两个)的差异导致FSH异二聚体出现宏观异质性。由此产生的FSH糖型分别被称为低聚糖基化型(FSH,β亚基上分别缺失一个Asn或Asn N - 聚糖链)或完全糖基化型(FSH,β亚基上同时拥有Asn和Asn N - 连接聚糖)FSH。人FSH糖型(FSH和FSH)的重组形式已被纯化并进行了生化特性鉴定。体外功能研究表明,FSH表现出更快的FSH受体结合动力学,并且在迄今为止测试的每项试验中都比FSH更具活性。然而,低聚糖基化FSH糖型的体内生物活性从未经过测试。在此,我们使用药理学拯救方法评估了Fshb基因敲除小鼠中FSH糖型的体内生物活性。在Fshb基因敲除的雌性小鼠中,低聚糖基化和完全糖基化的FSH在48小时内均引起卵巢重量增加反应,并以剂量和时间依赖性方式诱导卵巢基因表达。实时定量PCR分析定量结果表明,低聚糖基化FSH在体内具有生物活性,并且诱导FSH反应性卵巢基因的情况与完全糖基化FSH相似。对FSH受体下游关键信号成分进行密度测定的蛋白质印迹分析证实,低聚糖基化FSH在Fshb基因敲除小鼠的卵巢中引发的反应与完全糖基化FSH相似。当注射到Fshb基因敲除的雄性小鼠体内时,低聚糖基化FSH在诱导FSH反应性基因和支持细胞增殖方面比完全糖基化FSH更具活性。因此,我们的数据证实重组低聚糖基化人FSH糖型在体内引发的生物活性与完全糖基化FSH相似。我们的研究可能具有临床意义,特别是在使用不同人FSH糖型组合制定基于FSH的卵巢卵泡诱导方案方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f279/5048586/eae1450e9c9a/nihms-813659-f0001.jpg

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