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Kleemann, M.

Publications and source records attributed to Kleemann, M..

2 recordsLinked to original sources

The Tgf-β family member Gdf6Y determines the male sex in Nothobranchius furzeri by suppressing oogenesis-inducing genes

The short-lived African killifish Nothobranchius furzeri lives in seasonal freshwater ponds and has evolved remarkable traits to survive in this limited environment. One of those traits is a genetic XX/XY sex-determination system, which ensures an equal distribution of both sexes. Comparisons of female and male genomic sequences identified the Y-chromosomal copy of the TGF-{beta} family member gdf6 as the candidate male sex-determining (SD) gene, which was named gdf6Y in contrast to the X-chromosomal allele gdf6X. CRISPR/Cas9-mediated inactivation of gdf6Y in N. furzeri led to a complete male-to-female sex reversal in XY animals. The homozygous inactivation of gdf6X on the other hand led to a detrimental phenotype post-hatching. This phenotype was compensated by gdf6Y, revealing that the latter became the SD gene while retaining at least some of its original gdf6 function. Gdf6Y is expressed in testicular somatic cells already prior to hatching, where it represses the germ cell-intrinsic feminizing gene foxl2l. We have identified components of the TGF-{beta} signaling pathway, especially the inhibitor of DNA binding genes id1/2/3, and the mRNA decay activator zfp36l2, as Gdf6Y targets. We conclude that Gdf6Y exerts its function as the male sex-determining gene by suppressing female-specific genes in the developing gonad of male N. furzeri.

molecular biology↗

Targeting the MYC interaction network in B-cell lymphoma via histone deacetylase 6 inhibition

Overexpression of MYC is a genuine cancer driver in lymphomas and related to poor prognosis. However, therapeutic targeting of the transcription factor MYC remains challenging. Here, we show that inhibition of the histone deacetylase 6 (HDAC6) using the HDAC6 inhibitor Marbostat-100 (M-100) reduces oncogenic MYC levels and prevents lymphomagenesis in a mouse model of MYC-induced aggressive B-cell lymphoma. M-100 specifically alters protein-protein interactions by switching the acetylation state of HDAC6 substrates, such as tubulin. Tubulin facilitates nuclear import of MYC, and MYC-dependent B-cell lymphoma cells rely on continuous import of MYC due to its high turn-over. Acetylation of tubulin impairs this mechanism and enables proteasomal degradation of MYC. M-100 targets almost exclusively B-cell lymphoma cells with high levels of MYC whereas non-tumor cells are not affected. M-100 induces massive apoptosis in human and murine MYC-overexpressing B-cell lymphoma cells. We identified the heat-shock protein DNAJA3 as an interactor of tubulin in an acetylation-dependent manner and overexpression of DNAJA3 resulted in a pronounced degradation of MYC. We propose a mechanism by which DNAJA3 associates with hyperacetylated tubulin in the cytoplasm to control MYC turnover. Taken together, our data demonstrate a beneficial role of HDAC6 inhibition in MYC-dependent B-cell lymphoma.

cancer biology↗