Center for Theoretical Problems of Physico-Chemical Pharmacology, Russian Academy of Sciences, 30 Srednyaya Kalitnikovskaya, 109029 Moscow, Russia.
National Medical Research Center of Pediatric Hematology, Oncology and Immunology Dmitry Rogachev, 1 Samory Mashela St., 117198 Moscow, Russia.
Int J Mol Sci. 2021 Jul 27;22(15):8018. doi: 10.3390/ijms22158018.
In human spermatozoa, calcium dynamics control most of fertilization events. Progesterone, present in the female reproductive system, can trigger several types of calcium responses, such as low-frequency oscillations. Here we aimed to identify the mechanisms of progesterone-induced calcium signaling in human spermatozoa. Progesterone-induced activation of fluorophore-loaded spermatozoa was studied by fluorescent microscopy. Two computational models were developed to describe the spermatozoa calcium responses: a homogeneous one based on a system of ordinary differential equations and a three-dimensional one with added space dimensions and diffusion for the cytosolic species. In response to progesterone, three types of calcium responses were observed in human spermatozoa: a single transient rise of calcium concentration in cytosol, a steady elevation, or low-frequency oscillations. The homogenous model provided qualitative description of the oscillatory and the single spike responses, while the three-dimensional model captured the calcium peak shape and the frequency of calcium oscillations. The model analysis demonstrated that an increase in the calcium diffusion coefficient resulted in the disappearance of the calcium oscillations. Additionally, in silico analysis suggested that the spatial distribution of calcium signaling enzymes governs the appearance of calcium oscillations in progesterone-activated human spermatozoa.
在人类精子中,钙离子动力学控制着大多数受精事件。孕激素存在于女性生殖系统中,可以引发多种类型的钙反应,如低频振荡。在这里,我们旨在确定孕激素诱导的人类精子钙信号转导的机制。通过荧光显微镜研究了荧光染料加载的精子中孕激素诱导的激活。为描述精子的钙反应,建立了两个计算模型:一个基于常微分方程系统的均匀模型和一个具有添加空间维度和胞质物种扩散的三维模型。在孕激素的作用下,在人类精子中观察到三种类型的钙反应:胞质中钙浓度的单次短暂上升、稳定升高或低频振荡。均匀模型对振荡和单次尖峰反应进行了定性描述,而三维模型则捕获了钙峰的形状和钙振荡的频率。模型分析表明,钙扩散系数的增加导致钙振荡的消失。此外,计算机模拟分析表明,钙信号酶的空间分布决定了孕激素激活的人类精子中钙振荡的出现。