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首页> 外文期刊>The Journal of Physiology >New insights into ion channel‐dependent signalling during left‐right patterning
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New insights into ion channel‐dependent signalling during left‐right patterning

机译:左右图案化期间离子通道依赖信中的新见解

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Abstract The left‐right organizer (LRO) in the mouse consists of pit cells within the depression, located at the end of the developing notochord, also known as the embryonic node and crown cells lining the outer periphery of the node. Cilia on pit cells are posteriorly tilted, rotate clockwise and generate leftward fluid flow. Primary cilia on crown cells are required to interpret the directionality of fluid movement and initiate flow‐dependent gene transcription. Crown cells express PC1‐L1 and PC2, which may form a heteromeric polycystin channel complex on primary cilia. It is still only poorly understood how fluid flow activates the ciliary polycystin complex. Besides polycystin channels voltage gated channels like HCN4 and KCNQ1 have been implicated in establishing asymmetry. How this electrical network of ion channels initiates left‐sided signalling cascades and differential gene expression is currently only poorly defined.
机译:摘要鼠标中的左右组织者(LRO)由凹陷内的坑细胞组成,位于显影脊索的末端,也称为衬里节点外周的胚胎节点和冠细胞。 纤毛在坑细胞上被向后倾斜,顺时针旋转并产生向左流体流动。 需要在冠状电池上的原发性纤毛来解释流体运动的方向性并引发流动依赖性基因转录。 Crown细胞表达PC1-L1和PC2,其可以在原代纤毛上形成异孔多环沟道络合物。 它仍然只懂流体流动激活睫状多囊蛋白复合物。 除了多囊素通道外,电压门控通道如HCN4和KCNQ1相对于建立不对称性。 这种离子通道的电气网络如何启动左侧信号级联,差异基因表达目前仅定义不足。

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