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Mex3c基因敲除对小鼠胚胎神经管发育的影响及其机制OA北大核心CSTPCD

Effect and mechanism of Mex3c gene knockout on embryonic neural tube development

中文摘要英文摘要

目的 研究Mex3c基因敲除对小鼠胚胎神经管发育的影响及其可能的机制.方法 利用NCBI数据库分析Mex3c基因在小鼠各个组织中的表达情况,荧光原位杂交技术(FISH)检测Mex3c在Mex3c+/+小鼠不同发育时期(E12.5 d、E14.5 d)神经管中的表达情况.将性发育成熟的小鼠按照Mex3c+/-雄∶雌(1∶1)的比例进行合笼繁殖,取繁殖的胚胎,采用PCR鉴定小鼠基因型,按照基因型分为3组:野生型组(Mex3c+/+,WT组)、纯合子敲除组(Mex3c-/-,KO组)与杂合子敲除组(Mex3c+/-),采用HE染色观察3组胚胎神经管的发育情况;免疫荧光染色及Western blotting检测WT组、KO组的胚胎神经干细胞增殖及凋亡情况;透射电镜观察WT组、KO组神经管发育及线粒体的超微结构.提取WT组、KO组神经管的RNA,进行RNA-seq测序,利用R.3.6.3对差异表达基因进行KEGG信号通路富集分析,并采用RT-qPCR验证测序结果.结果 NCBI数据库分析及FISH检测结果显示,Mex3c基因主要表达于胚胎的中枢神经系统.HE染色结果显示,在E12.5 d、E13.5 d,胚胎神经管的发育在KO组、WT组及杂合子敲除组无明显差异;而在E14.5 d,KO组较WT组的胚胎神经管发育迟缓,表型明显异常,据此选择E14.5 d的KO组及WT组胚胎神经管组织进行后续实验.免疫荧光染色结果显示,KO组PCNA阳性细胞率明显低于WT组(P<0.001).Western blotting检测结果显示,KO组Bax/Bcl-2比值高于WT组(P<0.01).透射电镜观察显示,与WT组比较,KO组突触间隙消失,胚胎神经管的线粒体水肿,线粒体嵴断裂,结构明显异常.RNA-seq测序分析结果显示,共获得377个差异基因,其中表达上调101个,表达下调276个.KEGG信号通路富集分析发现,差异基因的主要信号通路富集于神经活性配体受体相互作用信号通路.RT-qPCR验证结果显示该信号通路中的Avpr1a、Drd1、Htr7、Sstr1、Oxtr、Gabra5 mRNA表达水平下调(P<0.05或P<0.01),与RNA-seq结果一致.结论 Mex3c在小鼠胚胎神经管发育过程中起着重要作用,可能通过神经活性配体受体相互作用信号通路,参与调控神经干细胞的增殖及凋亡过程,进而影响神经管的发育.

Objective To investigate the effect of Mex3c gene knockout on embryonic neural tube development and its possible mechanisms.Methods The NCBI database was used to analyze the expression of Mex3c gene in various tissues of mice.Fluorescence in situ hybridization(FISH)was employed to detect the expression of Mex3c in neural tubes of Mex3c+/+mice at different developmental stages(E12.5 d,E14.5 d).Sexual mature mice were mated at a ratio of Mex3c+/-male to female(1:1)in the same cage.Embryos were collected and genotyped using PCR.They were divided into 3 groups based on their genotype:wild-type group(Mex3c+/+,WT group),homozygous knockout group(Mex3c-/-,KO group),and heterozygous knockout group(Mex3c+/-).HE staining was employed to observe the development of neural tubes in the 3 groups of embryos.Immunofluorescence staining and Western blotting were performed to detect the proliferation and apoptosis of embryonic neural stem cells in the WT and KO groups.Transmission electron microscopy was used to observe the ultrastructure of the neural tubes and mitochondria in the WT and KO groups.RNA was extracted from the neural tubes of WT and KO groups for RNA-seq sequencing.The R.3.6.3 software was used to perform KEGG signaling pathway enrichment analysis on differentially expressed genes.RT-qPCR was used to validate the sequencing results.Results The NCBI database analysis and FISH detection results showed that the Mex3c gene was mainly expressed in the central nervous system of embryos.HE staining results showed that there was no significant difference in the development of embryonic neural tubes between KO group,WT group,and heterozygous knockout group at E12.5 d and E13.5 d.However,at E14.5 d,the embryonic neural tube development in KO group was delayed and the phenotype was significantly abnormal compared with those in WT group.Therefore,the embryonic neural tube tissues of KO group and WT group at E14.5 d were selected for subsequent experiments.The immunofluorescence staining results showed that the PCNA positive cell rate in KO group was significantly lower than that in WT group(P<0.001).The Western blotting results showed that the Bax/Bcl-2 ratio in KO group was higher than that in WT group(P<0.01).Transmission electron microscopy observation showed that compared with WT group,the synaptic gap in KO group disappeared,the mitochondrial of the embryonic neural tube in KO group were swollen,the mitochondrial cristae were disrupted,and the structure was significantly abnormal.The results of RNA-seq analysis showed that a total of 377 differentially expressed genes were obtained,including 101 up-regulated genes and 276 down-regulated genes.KEGG signaling pathway enrichment analysis revealed that the main signaling pathways of differentially expressed genes were enriched in the neuroactive ligand receptor interaction signaling pathways.The RT-qPCR validation results showed that the mRNA expression levels of Avpr1a,Drd1,Htr7,Sstr1,Oxtr and Gabra5 in this signaling pathway were down-regulated(P<0.05 or P<0.01),which was consistent with the RNA-seq results.Conclusion Mex3c plays an important role in the development of neural tubes in mouse embryos,which may participate in regulating the proliferation and apoptosis of neural stem cells through neural active ligand receptor interaction signaling pathways,thereby affecting the development of neural tubes.

路志国;吴晓婷;王凯;张波;汪涌;杜勇

空军军医大学第二附属医院泌尿外科,陕西西安 710000||宁夏医科大学总医院小儿外科,宁夏银川 750000西安国际医学中心消化内镜诊疗科,陕西西安 710000宁夏医科大学总医院小儿外科,宁夏银川 750000空军军医大学第二附属医院泌尿外科,陕西西安 710000

基础医学

基因,Mex3c神经管发育异常基因敲除

gene,Mex3cneural tubedysplasiagene knockout

《解放军医学杂志》 2024 (009)

1029-1037 / 9

This work was supported by the National Natural Science Foundation of China(82260308,81560253) 国家自然科学基金(82260308,81560253)

10.11855/j.issn.0577-7402.1012.2024.0124

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