Sub-Department of Pathophysiology, Department of Preclinical Veterinary Sciences, Faculty of Veterinary Medicine, University of Life Sciences in Lublin, Lublin, Poland.
National Research Council (CNR), The Institute of Agricultural Biology and Biotechnology (IBBA) - Research Unit of Pisa, Pisa, Italy.
J Physiol Pharmacol. 2019 Aug;70(4). doi: 10.26402/jpp.2019.4.03. Epub 2019 Oct 19.
Early weaning of ewe lambs strongly stimulates the hypothalamic-pituitary-adrenal axis and is associated with suppressed growth rate despite the increased food intake. At the same time, plasma leptin concentration increases only slightly or undetectably. To better understand this atypical interdependence among somatic stress, leptin, and lamb growth rate, we analyzed impact of leptin and/or adrenocorticotropic hormone (ACTH) on growth hormone (GH) secretion as well as the effect of ACTH on mRNA expression of two splice variants of leptin receptor (LEPRa, LEPRb) in pituitary cells isolated from early weaned ewe lambs. The GH secretion under the influence of leptin and/or ACTH depended on the timing of exposure and hormone concentration. After 6 - 30 h, GH secretion increased under 10 - 10 M leptin (P ≤ 0.05). However, after 24 - 30 h, GH secretion significantly increased only in cells exposed to both leptin and ACTH compared to culture with leptin only. Simultaneously, there was a significant (P ≤ 0.05) decrease in leptin receptor mRNA expression under the influence of ACTH at 10 - 10 M after 12 - 30 and 24 - 30 h for LEPRa and LEPRb, respectively. ACTH-related downregulation of LEPR mRNA was associated with a significant (P ≤ 0.05) reduction in leptin-stimulated GH secretion, also after 24 - 30 hours. Thus, the timing of ACTH exposure, followed by decreased leptin receptor mRNA, converged with the timing of decreased GH secretion under the influence of leptin with ACTH. The ACTH-induced downregulation of LEPR mRNA therefore may underlie the decrease in GH. These results show a direct role for leptin, ACTH, and leptin receptor expression in modulation of pituitary GH secretion in early weaned ewe lambs. During the early weaning-induced stress response, the ACTH-mediated decrease in sensitivity of pituitary cells to leptin may abolish a stimulatory effect of leptin on GH secretion and explain in part, the reduction in lamb growth rate.
早期断奶的羔羊强烈刺激下丘脑-垂体-肾上腺轴,尽管采食量增加,但生长速度仍受到抑制。与此同时,血浆瘦素浓度仅略有增加或无法检测到。为了更好地理解这种体细胞应激、瘦素和羔羊生长率之间的非典型相互依存关系,我们分析了瘦素和/或促肾上腺皮质激素 (ACTH) 对生长激素 (GH) 分泌的影响,以及 ACTH 对分离自早期断奶羔羊的垂体细胞中两种瘦素受体 (LEPRa、LEPRb) 剪接变体的 mRNA 表达的影响。在暴露时间和激素浓度的影响下,瘦素和/或 ACTH 对 GH 分泌的影响取决于暴露时间和激素浓度。在 6-30 小时内,10-10M 瘦素(P≤0.05)下 GH 分泌增加。然而,在 24-30 小时后,仅在同时暴露于瘦素和 ACTH 的细胞中,与仅用瘦素培养相比,GH 分泌显著增加。同时,在 10-10M ACTH 作用下,LEPRa 和 LEPRb 的 mRNA 表达分别在 12-30 小时和 24-30 小时后显著(P≤0.05)降低。ACTH 相关的 LEPR mRNA 下调与 GH 分泌受瘦素刺激的显著(P≤0.05)减少有关,也在 24-30 小时后。因此,ACTH 暴露的时间,随后是瘦素受体 mRNA 的减少,与在 ACTH 存在下瘦素诱导的 GH 分泌减少的时间一致。ACTH 诱导的 LEPR mRNA 下调可能是 GH 减少的基础。这些结果表明,在早期断奶的羔羊中,瘦素、ACTH 和瘦素受体表达直接调节垂体 GH 分泌。在早期断奶引起的应激反应中,ACTH 介导的垂体细胞对瘦素敏感性降低可能会消除瘦素对 GH 分泌的刺激作用,并部分解释羔羊生长率降低的原因。