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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Decreased degradation of internalized follicle-stimulating hormone caused by mutation of aspartic acid 6.30(550) in a protein kinase-CK2 consensus sequence in the third intracellular loop of human follicle-stimulating hormone receptor.
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Decreased degradation of internalized follicle-stimulating hormone caused by mutation of aspartic acid 6.30(550) in a protein kinase-CK2 consensus sequence in the third intracellular loop of human follicle-stimulating hormone receptor.

机译:人卵泡刺激素受体第三胞内环中的蛋白激酶-CK2共有序列中的天冬氨酸6.30(550)突变引起的内在卵泡刺激素的降解降低。

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摘要

A naturally occurring mutation in follicle-stimulating hormone receptor (FSHR) gene has been reported: an amino acid change to glycine occurs at a conserved aspartic acid 550 (D550, D567, D6.30(567)). This residue is contained in a protein kinase-CK2 consensus site present in human FSHR (hFSHR) intracellular loop 3 (iL3). Because CK2 has been reported to play a role in trafficking of some receptors, the potential roles for CK2 and D550 in FSHR function were evaluated by generating a D550A mutation in the hFSHR. The hFSHR-D550A binds hormone similarly to WT-hFSHR when expressed in HEK293T cells. Western blot analyses showed lower levels of mature hFSHR-D550A. Maximal cAMP production of both hFSHR-D550A as well as the naturally occurring mutation hFSHR-D550G was diminished, but constitutive activity was not observed. Unexpectedly, when (125)I-hFSH bound to hFSHR-D550A or hFSHR-D550G, intracellular accumulation of radiolabeled FSH was observed. Both sucrose and dominant-negative dynamin blocked internalization of radiolabeled FSH and its commensurate intracellular accumulation. Accumulation of radiolabeled FSH in cells transfected with hFSHR-D550A is due to a defect in degradation of hFSH as measured in pulse chase studies, and confocal microscopy imaging revealed that FSH accumulated in large intracellular structures. CK2 kinase activity is not required for proper degradation of internalized FSH because inhibition of CK2 kinase activity in cells expressing hFSHR did not uncouple degradation of internalized radiolabeled FSH. Additionally, the CK2 consensus site in FSHR iL3 is not required for binding because CK2alpha coimmunoprecipitated with hFSHR-D550A. Thus, mutation of D550 uncouples the link between internalization and degradation of hFSH.
机译:据报道,促卵泡激素受体(FSHR)基因发生自然突变:在保守的天冬氨酸550处氨基酸变为甘氨酸(D550,D567,D6.30(567))。此残基包含在人FSHR(hFSHR)细胞内环3(iL3)中存在的蛋白激酶-CK2共有位点中。由于据报道CK2在某些受体的运输中起作用,因此通过在hFSHR中产生D550A突变来评估CK2和D550在FSHR功能中的潜在作用。当在HEK293T细胞中表达时,hFSHR-D550A与WT-hFSHR的结合激素相似。蛋白质印迹分析显示较低水平的成熟hFSHR-D550A。 hFSHR-D550A和自然发生的突变hFSHR-D550G的最大cAMP产生都减少了,但是没有观察到组成活性。出乎意料的是,当(125)I-hFSH与hFSHR-D550A或hFSHR-D550G结合时,观察到放射性标记的FSH的细胞内积累。蔗糖和显性负性动力蛋白均能阻止放射性标记的FSH的内在化及其相应的细胞内积累。在hFSHR-D550A转染的细胞中,放射性标记的FSH的积累是由于在脉冲追踪研究中检测到的hFSH降解缺陷所致,并且共聚焦显微镜成像显示FSH在大的细胞内结构中积累。 CK2激酶活性对于内在的FSH的适当降解不是必需的,因为在表达hFSHR的细胞中CK2激酶活性的抑制不会解耦内在的放射性标记的FSH的降解。此外,FSHR iL3中的CK2共有位点不需要绑定,因为CK2alpha与hFSHR-D550A共免疫沉淀。因此,D550的突变使hFSH的内在化和降解之间的联系解开。

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