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Number of items: 9.

2018

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Payán-Bravo, L., Peñate, X. and Chávez, S. (2018) Functional Contributions of Prefoldin to Gene Expression. In: Prefoldins: the new chaperones. , ed. by Djouder, N.. Advances in Experimental Medicine and Biology, 1106 . Springer International Publishing, Cham, pp. 1-10. ISBN 978-3-030-00737-9 DOI 10.1007/978-3-030-00737-9_1.

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Arranz, R., Martín-Benito, J. and Valpuesta, J. M. (2018) Structure and Function of the Cochaperone Prefoldin. In: Prefoldins: the new chaperones. , ed. by Djouder, N.. Advances in Experimental Medicine and Biology, 1106 . Springer International Publishing, Cham, pp. 119-131. ISBN 978-3-030-00737-9 DOI 10.1007/978-3-030-00737-9_9.

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Thomas, P. A., Mita, P., Ha, S. and Logan, S. K. (2018) Role of the Unconventional Prefoldin Proteins URI and UXT in Transcription Regulation. In: Prefoldins: the new chaperones. , ed. by Djouder, N.. Advances in Experimental Medicine and Biology, 1106 . Springer International Publishing, Cham, pp. 85-94. ISBN 978-3-030-00737-9 DOI 10.1007/978-3-030-00737-9_6.

2012


Augustin, R., Fraune, S., Franzenburg, S. and Bosch, T. (2012) Where Simplicity Meets Complexity: Hydra, a Model for Host Microbe Interactions. In: Recent Advances on Model Hosts. ; 710 , ed. by Mylonakis, E., Ausubel, F. M., Gilmore, M. and Casadevall, A.. Advances in Experimental Medicine and Biology . UNSPECIFIED, pp. 71-81. ISBN 0065-2598978-1-4419-5637-8


Roeder, T., Isermann, K., Kallsen, K., Uliczka, K. and Wagner, C. (2012) A Drosophila Asthma Model - What the Fly Tells Us About Inflammatory Diseases of the Lung. In: Recent Advances on Model Hosts. ; 710 , ed. by Mylonakis, E., Ausubel, F. M., Gilmore, M. and Casadevall, A.. Advances in Experimental Medicine and Biology . Springer-Verlag Berlin, Berlin, pp. 37-47. ISBN 0065-2598978-1-4419-5637-8

2011


Bertsch, U., Edelmann, B., Tchikov, V., Winoto-Morbach, S., Jakob, M., Adam, S., Hallas, C. and Schutze, S. (2011) COMPARTMENTALIZATION OF TNF-R1 SIGNALING: CASPASE-8 AND CASPASE-7 SEQUENTIALLY MEDIATE ACTIVATION OF ACID SPINGOMYELINASE IN INTERNALIZED TNF-R1 RECEPTOSOMES. In: Advances in Tnf Family Research. ; 691 . Advances in Experimental Medicine and Biology . Springer-Verlag Berlin, Berlin, p. 738.


Bertsch, U., Edelmann, B., Tchikov, V., Winoto-Morbach, S. and Schutze, S. (2011) Compartmentalization of TNF-Receptor 1 Signaling: TNF-R1-Associated Caspase-8 Mediates Activation of Acid Sphingomyelinase in Late Endosomes. In: Advances in Tnf Family Research. ; 691 . Advances in Experimental Medicine and Biology . Springer-Verlag Berlin, Berlin, pp. 605-616. DOI 10.1007/978-1-4419-6612-4₆₄.


Kruglov, A. A., Tumanov, A. V., Grivennikov, S. I., Shebzukhov, Y. V., Kuchmiy, A. A., Efimov, G. A., Drutskaya, M. S., Scheller, J., Kuprash, D. V. and Nedospasov, S. A. (2011) Modalities of Experimental TNF Blockade In Vivo: Mouse Models. In: Advances in Tnf Family Research. ; 691 . Advances in Experimental Medicine and Biology . Springer-Verlag Berlin, Berlin, pp. 421-431. DOI 10.1007/978-1-4419-6612-4₄₄.

2009


Rosenstiel, P. and Schreiber, S. (2009) NOD-Like Receptors-Pivotal Guardians of the Immunological Integrity of Barrier Organs. In: Target Pattern Recognition in Innate Immunity. . Advances in Experimental Medicine and Biology, 653 . Springer, Heidelberg, pp. 35-47. ISBN 978-1-4419-0900-8

This list was generated on Tue Jan 21 20:33:42 2025 CET.