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Biology subjects

Zylka, M.

Publications and source records attributed to Zylka, M..

2 recordsLinked to original sources

GSE1 links the HDAC1/CoREST co-repressor complex to DNA damage

Post-translational modifications of histones are important regulators of the DNA damage response (DDR). By using affinity purification mass spectrometry (AP-MS) we discovered that genetic suppressor element 1 (GSE1) forms a complex with the HDAC1/CoREST deacetylase/demethylase co-repressor complex. In-depth phosphorylome analysis revealed that loss of GSE1 results in impaired DDR, ATR signalling and {gamma}H2AX formation upon DNA damage induction. Altered profiles of ATR target serine-glutamine motifs (SQ) on DDR-related hallmark proteins point to a defect in DNA damage sensing. In addition, GSE1 knock-out cells showed hampered DNA damage-induced phosphorylation on SQ motifs of regulators of histone post-translational modifications, suggesting altered histone modification. While loss of GSE1 does not affect the histone deacetylation activity of CoREST, GSE1 appears to be essential for binding of the deubiquitinase USP22 to CoREST and for the deubiquitination of H2B K120 in response to DNA damage. The combination of deacetylase, demethylase, and deubiquitinase activity makes the USP22-GSE1-CoREST subcomplex a multi enzymatic eraser that seems to play an important role during DDR. Since GSE1 has been previously associated with cancer progression and survival our findings are potentially of high medical relevance.

molecular biology↗

Cellular genome wide association study identifies common genetic variation influencing lithium induced neural progenitor proliferation

Lithium is used in the treatment of bipolar disorder (BD) and is known to increase neural progenitor cell (NPC) proliferation. Though the mechanism of lithiums therapeutic effect is not understood, evidence suggests that genetic variation influences response to treatment. Here, we used a library of genetically diverse human NPCs to identify common genetic variants that modulate lithium induced proliferation. We identified a locus on chr3p21.1 associated with lithium induced proliferation that colocalizes with BD risk. One lithium responsive gene, GNL3, was detected within the locus. The allele associated with increased baseline and lithium-induced GNL3 expression was also associated with increased lithium-induced NPC proliferation. Experimental manipulation of GNL3 expression using CRISPRa/i in NPCs showed that GNL3 was necessary for lithiums full proliferative effects, and sufficient to induce proliferation without lithium treatment. In all, our data suggest that GNL3 expression sensitizes NPCs for a stronger proliferative response to lithium.

genetics↗