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Kinetic and autoradiographic studies on binding of hCG to the testicular LH receptors of neonatal rats

机译:hCG与新生大鼠睾丸LH受体结合的动力学和放射自显影研究

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Summary. The properties of hCG binding to LH receptors of the neonatal (5-day-old) rat testis were analysed and compared with those of the adult testis. The equilibrium association constants (Ka) of hCG-binding were similar at both ages, 2–4 × 1010 m?1. In contrast, kinetic binding studies revealed that the association and dissociation rate constants of hCG binding were more rapid in the neonatal testis. Likewise, it was observed that the progression from loose (easily dissociable) to tight (non-dissociable) binding was less complete in the young than in the adult testis. Autoradiography of 125I-labelled hCG binding to interstitial cell suspensions at the two ages showed that the gonadotrophin binding per Leydig cell was about 50% lower in the neonatal testis. Conversely, since the surface area of adult Leydig cells was about 4-fold larger, the receptor density appeared to be higher in the neonatal Leydig cells. The rapid recovery of LH receptors after hCG stimulation, typical of the neonatal cells, was due to rapid replenishment of binding in the cells initially occupied by the injected hormone, rather than to an hCG-induced increase of Leydig cell number. Finally, in-vivo experiments with cycloheximide revealed that the rapid recovery of LH receptors was dependent on protein synthesis. These differences in the kinetics of neonatal testicular LH receptor turnover may be involved in the unique functional features of the fetal–neonatal growth phase of rat testicular Leydig cells.
机译:概要。分析了与新生(5日龄)大鼠睾丸LH受体结合的hCG特性,并将其与成年睾丸的LH受体进行了比较。 hCG结合的平衡缔合常数(Ka)在两个年龄(2-4×1010 m?1)相似。相反,动力学结合研究表明,hCG结合的缔合和解离速率常数在新生儿睾丸中更快。同样,观察到,年轻时从松散(容易解离)到紧密(不可解离)结合的进展不如成年睾丸完整。 125 I标记的hCG在两个年龄段与间质细胞悬液的放射自显影显示,新生儿睾丸中每个Leydig细胞的促性腺激素结合降低约50%。相反,由于成年Leydig细胞的表面积约大4倍,因此新生Leydig细胞的受体密度似乎更高。 hCG刺激后,新生细胞中典型的LH受体迅速恢复,是由于最初被注射激素占据的细胞中结合的快速补充,而不是hCG诱导的Leydig细胞数增加。最后,用环己酰亚胺进行的体内实验表明,LH受体的快速恢复取决于蛋白质的合成。新生睾丸LH受体更新动力学的这些差异可能与大鼠睾丸Leydig细胞的胎儿-新生生长阶段的独特功能有关。

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