Department of Physiology and Biophysics, Weill Cornell Medical College in Qatar, Education City-Qatar Foundation, Doha, Qatar.
PLoS One. 2011;6(11):e27928. doi: 10.1371/journal.pone.0027928. Epub 2011 Nov 30.
The activation of vertebrate development at fertilization relies on IP₃-dependent Ca²⁺ release, a pathway that is sensitized during oocyte maturation. This sensitization has been shown to correlate with the remodeling of the endoplasmic reticulum into large ER patches, however the mechanisms involved are not clear. Here we show that IP₃ receptors within ER patches have a higher sensitivity to IP₃ than those in the neighboring reticular ER. The lateral diffusion rate of IP₃ receptors in both ER domains is similar, and ER patches dynamically fuse with reticular ER, arguing that IP₃ receptors exchange freely between the two ER compartments. These results suggest that increasing the density of IP₃ receptors through ER remodeling is sufficient to sensitize IP₃-dependent Ca²⁺ release. Mathematical modeling supports this concept of 'geometric sensitization' of IP₃ receptors as a population, and argues that it depends on enhanced Ca²⁺-dependent cooperativity at sub-threshold IP₃ concentrations. This represents a novel mechanism of tuning the sensitivity of IP₃ receptors through ER remodeling during meiosis.
脊椎动物发育在受精时的激活依赖于 IP₃ 依赖性 Ca²⁺释放,该途径在卵母细胞成熟过程中被敏化。已经表明这种敏化与内质网重塑为大的 ER 斑有关,但是涉及的机制尚不清楚。在这里,我们表明 ER 斑内的 IP₃ 受体对 IP₃ 的敏感性高于相邻的网状 ER 中的 IP₃ 受体。两个 ER 区域中的 IP₃ 受体的侧向扩散速率相似,并且 ER 斑与网状 ER 动态融合,这表明 IP₃ 受体在两个 ER 隔室之间自由交换。这些结果表明,通过内质网重塑增加 IP₃ 受体的密度足以敏化 IP₃ 依赖性 Ca²⁺释放。数学模型支持将 IP₃ 受体作为一个群体的“几何敏化”这一概念,并认为它取决于亚阈值 IP₃ 浓度下增强的 Ca²⁺依赖性协同作用。这代表了通过减数分裂期间内质网重塑来调节 IP₃ 受体敏感性的新机制。