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钙和活性依赖性信号在大脑皮质发育中的作用。

Calcium and activity-dependent signaling in the developing cerebral cortex.

机构信息

Graduate Program in Developmental and Stem Cell Biology, University of California, San Francisco, CA 94143, USA.

Eli and Edythe Broad Center of Regeneration Medicine and Stem Cell Research, University of California, San Francisco, CA 94143, USA.

出版信息

Development. 2022 Sep 1;149(17). doi: 10.1242/dev.198853. Epub 2022 Sep 14.

Abstract

Calcium influx can be stimulated by various intra- and extracellular signals to set coordinated gene expression programs into motion. As such, the precise regulation of intracellular calcium represents a nexus between environmental cues and intrinsic genetic programs. Mounting genetic evidence points to a role for the deregulation of intracellular calcium signaling in neuropsychiatric disorders of developmental origin. These findings have prompted renewed enthusiasm for understanding the roles of calcium during normal and dysfunctional prenatal development. In this Review, we describe the fundamental mechanisms through which calcium is spatiotemporally regulated and directs early neurodevelopmental events. We also discuss unanswered questions about intracellular calcium regulation during the emergence of neurodevelopmental disease, and provide evidence that disruption of cell-specific calcium homeostasis and/or redeployment of developmental calcium signaling mechanisms may contribute to adult neurological disorders. We propose that understanding the normal developmental events that build the nervous system will rely on gaining insights into cell type-specific calcium signaling mechanisms. Such an understanding will enable therapeutic strategies targeting calcium-dependent mechanisms to mitigate disease.

摘要

钙内流可以被各种细胞内外信号刺激,从而启动协调的基因表达程序。因此,细胞内钙的精确调节代表了环境线索和内在遗传程序之间的联系。越来越多的遗传证据表明,细胞内钙信号的失调在发育起源的神经精神疾病中起作用。这些发现促使人们重新热衷于理解钙在正常和功能失调的产前发育中的作用。在这篇综述中,我们描述了钙时空调节并指导早期神经发育事件的基本机制。我们还讨论了神经发育性疾病出现时细胞内钙调节的未解决问题,并提供了证据表明,细胞特异性钙动态平衡的破坏和/或发育性钙信号机制的重新配置可能导致成年神经障碍。我们提出,理解构建神经系统的正常发育事件将依赖于深入了解细胞类型特异性钙信号机制。这种理解将使针对钙依赖性机制的治疗策略能够减轻疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2abd/9578689/ab6e7d22dfba/develop-149-198853-g1.jpg

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