@article{GrossHennardMasourisetal.2012, author = {Gross, Henrik and Hennard, Christine and Masouris, Ilias and Cassel, Christian and Barth, Stephanie and Stober-Gr{\"a}sser, Ute and Mamiani, Alfredo and Moritz, Bodo and Ostareck, Dirk and Ostareck-Lederer, Antje and Neuenkirchen, Nils and Fischer, Utz and Deng, Wen and Leonhardt, Heinrich and Noessner, Elfriede and Kremmer, Elisabeth and Gr{\"a}sser, Friedrich A.}, title = {Binding of the Heterogeneous Ribonucleoprotein K (hnRNP K) to the Epstein-Barr Virus Nuclear Antigen 2 (EBNA2) Enhances Viral LMP2A Expression}, series = {PLoS One}, volume = {7}, journal = {PLoS One}, number = {8}, doi = {10.1371/journal.pone.0042106}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-133707}, year = {2012}, abstract = {The Epstein-Barr Virus (EBV) -encoded EBNA2 protein, which is essential for the in vitro transformation of B-lymphocytes, interferes with cellular processes by binding to proteins via conserved sequence motifs. Its Arginine-Glycine (RG) repeat element contains either symmetrically or asymmetrically di-methylated arginine residues (SDMA and ADMA, respectively). EBNA2 binds via its SDMA-modified RG-repeat to the survival motor neurons protein (SMN) and via the ADMA-RG-repeat to the NP9 protein of the human endogenous retrovirus K (HERV-K (HML-2) Type 1). The hypothesis of this work was that the methylated RG-repeat mimics an epitope shared with cellular proteins that is used for interaction with target structures. With monoclonal antibodies against the modified RG-repeat, we indeed identified cellular homologues that apparently have the same surface structure as methylated EBNA2. With the SDMA-specific antibodies, we precipitated the Sm protein D3 (SmD3) which, like EBNA2, binds via its SDMA-modified RG-repeat to SMN. With the ADMA-specific antibodies, we precipitated the heterogeneous ribonucleoprotein K (hnRNP K). Specific binding of the ADMA-antibody to hnRNP K was demonstrated using E. coli expressed/ADMA-methylated hnRNP K. In addition, we show that EBNA2 and hnRNP K form a complex in EBV-infected B-cells. Finally, hnRNP K, when co-expressed with EBNA2, strongly enhances viral latent membrane protein 2A (LMP2A) expression by an unknown mechanism as we did not detect a direct association of hnRNP K with DNA-bound EBNA2 in gel shift experiments. Our data support the notion that the methylated surface of EBNA2 mimics the surface structure of cellular proteins to interfere with or co-opt their functional properties.}, language = {en} } @article{GrossBurschkaMalisch1986, author = {Groß, Elisabeth and Burschka, Christian and Malisch, Wolfgang}, title = {Hauptgruppenelement-{\"U}bergangsmetall-Mehrfachbindungen, IV. Katalytische Assistenz von [Cp(C0)\(_3\)Mo]\(_2\) bei der Aggregation von Metallo-arsanen {\"u}ber Arsen-Metall-Doppelbindungskomplexe}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-31424}, year = {1986}, abstract = {The metallo-arsanes CP(CO)\(_3\)M - AsMc\(_2\) (1 a, b) (M = Mo, W) are convcrted to the double arsenido-bridged dinuclear complexes [(η-AsMe\(_2\))Mo(CO)\(_2\)Cp]\(_2\) (3a, b) in the presence of [CP(CO)\(_3\)Mo]\(_2\). Due to the unusual mild conditions of aggregation the intermediate formation of the double bonded species Cp(CO)\(_2\)M = AsMe\(_2\) (2a, b) is postulated. The crystal structure of 3a is reported, which shows mutual trans arrangement of the cyclopentadienyl and CO ligands.}, subject = {Chemie}, language = {de} } @article{SchuemannGrossBaueretal.2021, author = {Sch{\"u}mann, Franziska Lea and Groß, Elisabeth and Bauer, Marcus and Rohde, Christian and Sandmann, Sarah and Terziev, Denis and M{\"u}ller, Lutz P. and Posern, Guido and Wienke, Andreas and Fend, Falko and Hansmann, Martin-Leo and Klapper, Wolfram and Rosenwald, Andreas and Stein, Harald and Dugas, Martin and M{\"u}ller-Tidow, Carsten and Wickenhauser, Claudia and Binder, Mascha and Weber, Thomas}, title = {Divergent effects of EZH1 and EZH2 protein expression on the prognosis of patients with T-cell lymphomas}, series = {Biomedicines}, volume = {9}, journal = {Biomedicines}, number = {12}, issn = {2227-9059}, doi = {10.3390/biomedicines9121842}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-252155}, year = {2021}, abstract = {T-cell lymphomas are highly heterogeneous and their prognosis is poor under the currently available therapies. Enhancers of zeste homologue 1 and 2 (EZH1/2) are histone H3 lysine-27 trimethyltransferases (H3K27me3). Despite the rapid development of new drugs inhibiting EZH2 and/or EZH1, the molecular interplay of these proteins and the impact on disease progression and prognosis of patients with T-cell lymphomas remains insufficiently understood. In this study, EZH1/2 mutation status was evaluated in 33 monomorphic epitheliotropic intestinal T-cell lymphomas by next generation sequencing and EZH1/2 and H3K27me3 protein expression levels were detected by immunohistochemistry in 46 T-cell lymphomas. Correlations with clinicopathologic features were analyzed and survival curves generated. No EZH1 mutations and one (3\%) EZH2 missense mutation were identified. In univariable analysis, high EZH1 expression was associated with an improved overall survival (OS) and progression-free survival (PFS) whereas high EZH2 and H3K27me3 expression were associated with poorer OS and PFS. Multivariable analysis revealed EZH1 (hazard ratio (HR) = 0.183; 95\% confidence interval (CI): 0.044-0.767; p = 0.020;) and EZH2 (HR = 8.245; 95\% CI: 1.898-35.826; p = 0.005) to be independent, divergent prognostic markers for OS. In conclusion, EZH1/2 protein expression had opposing effects on the prognosis of T-cell lymphoma patients.}, language = {en} }