Nguyen Thi-Mong Diep, Filliatreau Laura, Klett Danièle, Combarnous Yves
INRA, CNRS, Physiologie de la Reproduction et des Comportements, 37380 Nouzilly, France; Qui Nhon University, Viet Nam.
INRA, CNRS, Physiologie de la Reproduction et des Comportements, 37380 Nouzilly, France.
Gen Comp Endocrinol. 2018 May 15;261:23-30. doi: 10.1016/j.ygcen.2018.01.018. Epub 2018 Feb 3.
We have compared various Luteinizing Hormone (LH) and Chorionic Gonadotropin (CG) preparations from non-human and human species in their ability to synergize with 10 µM forskolin (FSK) for cyclic AMP intracellular accumulation, in MLTC cells. LH from rat pituitary as well as various isoforms of pituitary ovine, bovine, porcine, equine and human LHs and equine and human CG were studied. In addition, recombinant human LH and CG were also compared with the natural human and non-human hormones. Sub-stimulating concentrations of all LHs and CGs (2-100 pM) were found to stimulate cyclic AMP accumulation in MLTC cells in the presence of an also non-stimulating FSK concentration (10 µM). Like rat LH, the most homologous available hormone for mouse MLTC cells, all non-human LHs and CG exhibit a strong potentiating effect on FSK response. The human, natural and recombinant hLH and hCG also do so but in addition, they were found to elicit a permissive effect on FSK stimulation. Indeed, when incubated alone with MLTC cells at non-stimulating concentrations (2-70 pM) hLH and hCG permit, after being removed, a dose-dependent cyclic AMP accumulation with 10 µM FSK. Our data show a clearcut difference between human LH and CG compared to their non-human counterparts on MLTC cells adenylate cyclase activity control. This points out the risk of using hCG as a reference ligand for LHR in studies using non-human cells.
我们比较了来自非人类和人类物种的各种促黄体生成素(LH)和绒毛膜促性腺激素(CG)制剂,研究它们在MLTC细胞中与10µM福斯可林(FSK)协同作用以促进细胞内环磷酸腺苷(cAMP)积累的能力。研究了大鼠垂体LH以及垂体绵羊、牛、猪、马和人LH的各种亚型,还有马和人CG。此外,还将重组人LH和CG与天然人及非人类激素进行了比较。发现在非刺激浓度的FSK(10µM)存在下,所有LH和CG的亚刺激浓度(2 - 100pM)均能刺激MLTC细胞中的cAMP积累。与大鼠LH(对小鼠MLTC细胞最同源的可用激素)一样,所有非人类LH和CG对FSK反应均表现出强烈的增强作用。天然和重组的人LH和hCG也有此作用,但此外,还发现它们对FSK刺激产生允许作用。实际上,当以非刺激浓度(2 - 70pM)与MLTC细胞单独孵育后去除hLH和hCG时,它们会使10µM FSK诱导剂量依赖性的cAMP积累。我们的数据显示,在MLTC细胞腺苷酸环化酶活性控制方面,人LH和CG与其非人类对应物之间存在明显差异。这指出了在使用非人类细胞的研究中,将hCG用作促黄体生成素受体(LHR)参考配体的风险。