| Literature DB >> 27599613 |
Xiaoxiao Gao1, Kaifa Zhang1, Min Song1,2,3, Xiumei Li1,2,3, Lei Luo1, Yuan Tian1, Yunhai Zhang1,2,3, Yunsheng Li1,2,3, Xiaorong Zhang1,2,3, Yinghui Ling1,2,3, Fugui Fang1,2,3, Ya Liu1,2,3.
Abstract
Nesfatin-1 is an important molecule in the regulation of reproduction. However, its role in the reproductive axis in male animals remains to be understood. Here, we found that nesfatin-1 was mainly distributed in the arcuate nucleus (ARC), paraventricular nucleus (PVN), periventricular nucleus (PeN), and lateral hypothalamic area (LHA) of the hypothalamus; adenohypophysis and Leydig cells in male rats. Moreover, the concentrations of serum nesfatin-1 and its mRNA in hypothalamo-pituitary-gonadal axis (HPGA) vary with the age of the male rat. After intracerebroventricular injection of nesfatin-1, the hypothalamic genes for gonadotrophin releasing hormone (GnRH), kisspeptin (Kiss-1), pituitary genes for follicle-stimulate hormone β(FSHβ), luteinizing hormone β(LHβ), and genes for testicular steroidogenic acute regulatory (StAR) expression levels were decreased significantly. Nesfatin-1 significantly increased the expression of genes for 3β-hydroxysteroid dehydrogenase (3β-HSD), 17β-hydroxysteroid dehydrogenase (17β-HSD), and cytochrome P450 cleavage (P450scc) in the testis of pubertal rats, but their levels decreased in adult rats (P < 0.05), along with the serum FSH, LH, and testosterone (T) concentrations. After nesfatin-1 addition in vitro, T concentrations of the supernatant were significantly higher than that in the control group. These results were suggestive of the role of nesfatin-1 in the regulation of the reproductive axis in male rats.Entities:
Mesh:
Substances:
Year: 2016 PMID: 27599613 PMCID: PMC5013388 DOI: 10.1038/srep32877
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Localization of nesfatin-1-immunopositive cells in hypothalamic nuclei (a–e) in male rats. (a) and (a1), arcuate nucleus (ARC); (b) and (b1), paraventricular nucleus (PVN); (c) and (c1), periventricular nucleus (PeN); (d) and (d1), lateral hypothalamic area (LHA); (e), whole hypothalamic area; (f), (f1,f2), negative control. TV: third ventricle, bar = 100 μm.
Figure 2Localization of nesfatin-1-immunopositive cells in pituitary gland (a), (a1,a2) and testis (c), (c1,c2). (b), (b1,b2), negative control in pituitary gland; (d), (d1,d2), negative control in testis. bar = 100 μm.
Figure 3Changes in the serum testosterone (a), nesfatin-1 concentrations (b) and NUCB2 mRNA concentrations in the hypothalamus (c), pituitary (d) and testis (e) of infantile (10 d), prepubertal (25 d), pubertal (45 d), and adult (65 d) rats. The values are means ± SEM (n = 5). Means with different letters indicate significant difference (P < 0.05).
Figure 4Effect of nesfatin-1 on the levels of serum FSH (a), LH (b), and T (c) levels in pubertal (45 d) and adult (65 d) rats. The values are means ± SEM (n = 5). Means with different letters indicate significant difference (P < 0.01).
Figure 5Effect of nesfatin-1 on GnRH (a) and Kiss1 (b) mRNA in the hypothalamus and FSHβ (c) and LHβ (d) mRNA in pituitary in pubertal (45 d) and adult (65 d) rats. The values are means ± SEM (n = 5). Means with different letters indicate significant difference (P < 0.01).
Figure 6Effect of nesfatin-1 on 3β-HSD (a), 17β-HSD (b), StAR (c), and P450scc (d) mRNA in the testes of pubertal (45 d) and adult (65 d) rats. The values are means ± SEM (n = 5). Means with different letters indicate significant difference (P < 0.01).
Figure 7Regulation of testicular T secretion (a) and relative levels of 3β-HSD (b), 17β-HSD (c), StAR (d), and P450scc (e) mRNA by nesfatin-1 in vitro. Leydig cells were incubated with increasing doses of nesfatin-1 (1, 10, and 100 ng/ml), and the concentration of T in the medium was monitored after 48 h of cultivation.
Real-time PCR primer and size of the amplification products of the target and housekeeping genes.
| Gene | Forward primer, 5′-3′ | Reverse primer, 5′-3′ | Product, bp |
|---|---|---|---|
| CCAGACACGGGACTTTATTATG | CCGCTCCTTATCTCCTCTATGT | 122 | |
| AGACCAAACACCCAGAAAG | TCACTATCACACTTGCCACA | 140 | |
| GCCGCTGTTGTTCTGTTGAC | CTGGGGTTCTGCCATTTGA | 153 | |
| TGCTGCTTCTCCTCTGTGTG | CCAGGCATTAACGAGTTCCT | 117 | |
| CATAGTCTCCTTTCCTGTGGC | CATTGGTTGAGTCCTGGGA | 91 | |
| CAACTGGAAGCAACACTCTACA | ACACCTGGCACCACCTTACT | 164 | |
| AACGGCACACACAGAATCCAT | AAGAGAGTCGCTGCGTCCTTAG | 128 | |
| GTGTATGTAGGCAATGTGGC | ACTGGAATCAAGGTGGAGG | 180 | |
| AGCCAAGAAGTTAGGAGGAAAC | CACAGTTGACAGCCACATCT | 125 | |
| CCCATCTATGAGGGTTACGC | TTTAATGTCACGCACGATTTC | 150 | |
| TTGAGCAGAAGACGGAAGGT | GAAGCATTGGGGATCAAGAA | 136 |