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TRPM6 通道在神经管闭合中的非冗余作用。

A Nonredundant Role for the TRPM6 Channel in Neural Tube Closure.

机构信息

Rutgers-Robert Wood Johnson Medical School, Deptartment of Pharmacology, Piscataway, 08854, USA.

Temple University, Deptartment of Biology, Philadelphia, 19122, USA.

出版信息

Sci Rep. 2017 Nov 15;7(1):15623. doi: 10.1038/s41598-017-15855-y.

Abstract

In humans, germline mutations in Trpm6 cause autosomal dominant hypomagnesemia with secondary hypocalcemia disorder. Loss of Trpm6 in mice also perturbs cellular magnesium homeostasis but additionally results in early embryonic lethality and neural tube closure defects. To define the mechanisms by which TRPM6 influences neural tube closure, we functionally characterized the role of TRPM6 during early embryogenesis in Xenopus laevis. The expression of Xenopus TRPM6 (XTRPM6) is elevated at the onset of gastrulation and is concentrated in the lateral mesoderm and ectoderm at the neurula stage. Loss of XTRPM6 produced gastrulation and neural tube closure defects. Unlike XTRPM6's close homologue XTRPM7, whose loss interferes with mediolateral intercalation, depletion of XTRPM6 but not XTRPM7 disrupted radial intercalation cell movements. A zinc-influx assay demonstrated that TRPM6 has the potential to constitute functional channels in the absence of TRPM7. The results of our study indicate that XTRPM6 regulates radial intercalation with little or no contribution from XTRPM7 in the region lateral to the neural plate, whereas XTRPM7 is mainly involved in regulating mediolateral intercalation in the medial region of the neural plate. We conclude that both TRPM6 and TRPM7 channels function cooperatively but have distinct and essential roles during neural tube closure.

摘要

在人类中,Trpm6 的种系突变导致常染色体显性低镁血症伴继发性低钙血症疾病。Trpm6 在小鼠中的缺失也会扰乱细胞镁稳态,但此外还会导致早期胚胎致死和神经管闭合缺陷。为了确定 TRPM6 影响神经管闭合的机制,我们在非洲爪蟾 Xenopus laevis 中对 TRPM6 的功能进行了早期胚胎发生过程中的特征描述。Xenopus TRPM6(XTRPM6)的表达在原肠胚形成开始时升高,并在神经胚阶段集中在侧中胚层和外胚层中。XTRPM6 的缺失导致原肠胚形成和神经管闭合缺陷。与 XTRPM7 不同,XTRPM7 的缺失会干扰中侧细胞间的插入,而 XTRPM6 的缺失而不是 XTRPM7 的缺失会破坏放射状细胞间的插入运动。锌流入测定表明,TRPM6 有可能在没有 TRPM7 的情况下构成功能性通道。我们的研究结果表明,XTRPM6 调节放射状细胞间的插入,而 XTRPM7 在神经板外侧区域的作用很小或没有,而 XTRPM7 主要参与调节神经板内侧区域的中侧细胞间的插入。我们得出结论,TRPM6 和 TRPM7 通道在神经管闭合过程中协同作用,但具有不同且必不可少的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c92e/5688082/6741a78166b7/41598_2017_15855_Fig1_HTML.jpg

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