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Aleshkina, D.

Publications and source records attributed to Aleshkina, D..

3 recordsLinked to original sources

Epigenomic and transcriptomic analyses reveal cnidocyte specialization in a sea anemone

Cnidarians, including corals, hydras, jellyfish, and sea anemones, possess specialized stinging cells called cnidocytes that function in prey capture and defense. These cells represent a striking evolutionary innovation and produce distinct types of organelles such as venom injecting nematocysts and mechanically entangling spirocysts. While their biomechanics and transcriptional regulation have been studied extensively, little is known about their epigenetic regulation. Here, we combined epigenetic profiling with RNA sequencing in the sea anemone Nematostella vectensis to explore regulatory programs underlying cnidocyte diversity. We identified cell-type-specific regulatory elements in promoter and enhancer regions and linked them to distinct gene expression programs. This analysis revealed fundamental differences between nematocytes and spirocytes and uncovered a previously unrecognized nematocyte population that expresses the Nep3 toxin but lacks most other toxins. These findings highlight the complexity of cnidocyte regulation and suggest greater cellular diversity within this defining cnidarian cell type than previously appreciated.

evolutionary biology↗

Functional characterization of immune cells in a cnidarian reveals an ancestral antiviral program

Examining early-branching animal phyla can help reconstructing the evolutionary origins of immune cells. Here, we characterized immune-related cell programs in embryos of the sea anemone Nematostella vectensis, a model of Cnidaria, which diverged [~]600 million years ago from other animals. Using a transgenic Nematostella reporter line expressing mCherry under the RLRb antiviral promoter, we identified a morphologically and transcriptomically distinct cell population activated by the viral mimic poly(I:C). These cells upregulate immune effector and regulator genes and show increased phagocytic activity. Bulk RNA sequencing of RLRb expressing cells and single-cell transcriptomics revealed gene regulatory programs expressed in specialized immune cells under basal conditions and upon activation. Comparing the Nematostella immune expression profile with that of stony corals treated with the immunostimulant 2'3'-Cyclic GMP-AMP demonstrated a conserved immune response across Hexacorallia. This study uncovers a novel cnidarian immune cell type involved in antiviral immunity, providing insights into the evolutionary history of innate immunity.

evolutionary biology↗

Absence of CDK12 in oocyte leads to female infertility

Transcriptional activity and gene expression are essential for the development of a mature, meiotically competent oocyte. We have found that the absence of cyclin-dependent kinase 12 (CDK12) in oocytes leads to complete female sterility, as there are no fully developed oocytes able to accomplish meiosis I in the ovaries. Mechanistically, CDK12 in growing oocytes controls POLII activity and maintenance of the physiological maternal transcriptome, which negatively affects protein synthesis that promotes further oocyte growth. In addition, disruption of oocyte development disrupts folliculogenesis, resulting in a premature failure phenotype without terminal folliculogenesis and ovulation. In summary, we have characterized a single master regulator of the oocyte transcriptional program and gene expression that is essential for oocyte growth and female fertility. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=113 HEIGHT=200 SRC="FIGDIR/small/622910v1_ufig1.gif" ALT="Figure 1"> View larger version (16K): org.highwire.dtl.DTLVardef@179b286org.highwire.dtl.DTLVardef@b7a847org.highwire.dtl.DTLVardef@1890a35org.highwire.dtl.DTLVardef@1fd2798_HPS_FORMAT_FIGEXP M_FIG C_FIG

developmental biology↗