1.Copper deficiency myelopathy: A case report,literature review
Journal of Apoplexy and Nervous Diseases 2023;40(9):844-847
Copper deficiency myelopathy (CDM) is a degenerative disease of the nervous system as a result of copper deficiency. It can affect the posterior cord, lateral cord, and peripheral nervous system to cause sensory ataxia, spastic paralysis, and peripheral nerve damage. Anemia and/or neutropenia are among accompanying abnormalities. CDM is so rare and little reported that there is a high probability of a miss diagnosis or misdiagnosis. In this article, we present the clinical data and diagnosis and treatment process of a patient with CDM, and reviewed relevant literature, in order to provide a reference for clinical workers.
2.Differential regulation of H3S10 phosphorylation, mitosis progression and cell fate by Aurora Kinase B and C in mouse preimplantation embryos.
Wenzhi LI ; Peizhe WANG ; Bingjie ZHANG ; Jing ZHANG ; Jia MING ; Wei XIE ; Jie NA
Protein & Cell 2017;8(9):662-674
Coordination of cell division and cell fate is crucial for the successful development of mammalian early embryos. Aurora kinases are evolutionarily conserved serine/threonine kinases and key regulators of mitosis. Aurora kinase B (AurkB) is ubiquitously expressed while Aurora kinase C (AurkC) is specifically expressed in gametes and preimplantation embryos. We found that increasing AurkC level in one blastomere of the 2-cell embryo accelerated cell division and decreasing AurkC level slowed down mitosis. Changing AurkB level had the opposite effect. The kinase domains of AurkB and AurkC were responsible for their different ability to phosphorylate Histone H3 Serine 10 (H3S10P) and regulate metaphase timing. Using an Oct4-photoactivatable GFP fusion protein (Oct4-paGFP) and fluorescence decay after photoactivation assay, we found that AurkB overexpression reduced Oct4 retention in the nucleus. Finally, we show that blastomeres with higher AurkC level elevated pluripotency gene expression, which were inclined to enter the inner cell mass lineage and subsequently contributed to the embryo proper. Collectively, our results are the first demonstration that the activity of mitotic kinases can influence cell fate decisions in mammalian preimplantation embryos and have important implications to assisted reproduction.
Animals
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Aurora Kinase B
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metabolism
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Aurora Kinase C
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metabolism
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Blastocyst
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metabolism
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Gene Expression Regulation, Developmental
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physiology
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Histones
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metabolism
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Mice
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Phosphorylation
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physiology
3.Dgcr8 deletion in the primitive heart uncovered novel microRNA regulating the balance of cardiac-vascular gene program.
Xi CHEN ; Lin WANG ; Rujin HUANG ; Hui QIU ; Peizhe WANG ; Daren WU ; Yonglin ZHU ; Jia MING ; Yangming WANG ; Jianbin WANG ; Jie NA
Protein & Cell 2019;10(5):327-346
Primitive mammalian heart transforms from a single tube to a four-chambered muscular organ during a short developmental window. We found that knocking out global microRNA by deleting Dgcr8 microprocessor in Mesp1 cardiovascular progenitor cells lead to the formation of extremely dilated and enlarged heart due to defective cardiomyocyte (CM) differentiation. Transcriptome analysis revealed unusual upregulation of vascular gene expression in Dgcr8 cKO hearts. Single cell RNA sequencing study further confirmed the increase of angiogenesis genes in single Dgcr8 cKO CM. We also performed global microRNA profiling of E9.5 heart for the first time, and identified that miR-541 was transiently highly expressed in E9.5 hearts. Interestingly, introducing miR-541 back into microRNA-free CMs partially rescued their defects, downregulated angiogenesis genes and significantly upregulated cardiac genes. Moreover, miR-541 can target Ctgf and inhibit endothelial function. Our results suggest that microRNAs are required to suppress abnormal angiogenesis gene program to maintain CM differentiation.