Dr. Francesco Raimondi

Profil

Derzeitige StellungPost Doc
FachgebietBioinformatik und Theoretische Biologie,Biochemie,Zellbiologie
KeywordsRas GTPase, structural bioinformatic, structural system biology, protein-protein interaction, signal transduction

Aktuelle Kontaktadresse

LandItalien
OrtModena
Universität/InstitutionUniversita degli Studi di Modena e Reggio Emilia
Institut/AbteilungDepartment of Life Sciences

Gastgeber*innen während der Förderung

Prof. Dr. Robert B. RussellBioquant-Institut, Ruprecht-Karls-Universität Heidelberg, Heidelberg
Beginn der ersten Förderung01.01.2015

Programm(e)

2014Humboldt-Forschungsstipendien-Programm für Postdocs

Publikationen (Auswahl)

2019Gröschel S, Hübschmann D, Raimondi F, Horak P, Warsow G, Fröhlich M, Klink B, Gieldon L, Hutter B, Kleinheinz K, Bonekamp D, Marschal O, Chudasama P, Mika J, Groth M, Uhrig S, Krämer S, Heining C, Heilig CE, Richter D, Reisinger E, Pfütze K, Eils R, Wolf S, von Kalle C, Brandts C, Scholl C, Weichert W, Richter S, Bauer S, Penzel R, Schröck E, Stenzinger A, Schlenk RF, Brors B, Russell RB, Glimm H, Schlesner M, Fröhling S.: Defective homologous recombination DNA repair as therapeutic target in advanced chordoma. In: Nature Communications, 2019,
2019López C, Kleinheinz K, Aukema SM, Rohde M, Bernhart SH, Hübschmann D, Wagener R, Toprak UH, Raimondi F, et al.: Genomic and transcriptomic changes complement each other in the pathogenesis of sporadic Burkitt lymphoma. In: Nature Communications, 2019,
2019Inoue A, Raimondi F, Kadji FMN, Singh G, Kishu T, Uwamizu A, Ono Y, Shinjo Y, Ishida S, Arang N, Kawakami K, Gutkind JS, Aoki J, Russell RB: Illuminating G-protein coupling selectivity of GPCRs. In: Cell, 2019,
2019Wu V, Yeerna H, Nohata N, Chiou J, Harismendy O, Raimondi F, Inoue A, Russell RB, Tamayo P, Gutkind JS: Illuminating the Onco-GPCRome: Novel GPCR-driven oncocrine networks and targets for cancer immunotherapy. In: Journal of Biological Chemistry, 2019,
2019Singh G, Inoue A, Gutkind JS, Russell RB, Raimondi F: PRECOG: PREdicting COupling probabilities of G-protein coupled receptors. In: Nucleic Acids Research, 2019,
2019Raimondi F, Inoue A, Kadji FMN, Shuai N, Gonzalez JC, Singh G, Fischer B, Aoki J, Gutkind JS, Russell RB: Rare, functional, somatic variants in gene families linked to cancer genes: GPCR signaling as a paradigm. In: Oncogene, 2019,
2019Wagener R, Seufert J, Raimondi F, Bens S, Kleinheinz K, Nagel I, Altmüller J, Thiele H, Hübschmann D, Kohler CW, Nürnberg P, Au-Yeung R, Burkhardt B, Horn H, Leoncini L, Jaffe ES, Ott G, Rymkiewicz G, Schlesner M, Russell RB, Klapper W, Siebert R: The mutational landscape of Burkitt-like lymphoma with 11q aberration is distinct from that of Burkitt lymphoma. In: Blood, 2019,
2019Kishore A, Sreeelatha AAK, Sturm M, von Zweydorf F, Pihlstrom L, Raimondi F, Russell RB, Lichtner P, Rajan R, Krishan S, Banerjee M, Fiske B, IPDGC, COURAGE-PD, Riess O, Cloeckner CJ, Kruger R, Gasser T, Sharma M: Understanding the role of genetic variability in LRRK2 in an Indian population. In: Movement disorders , 2019,
2018Juan Carlos Gonzalez-Sanchez, Francesco Raimondi, Robert Bruce Russell: Cancer genetics meets biomolecular mechanism—bridging an age-old gulf. In: FEBS Letters, 2018,
2017Francesco Raimondi, Matthew J. Betts, Qianhao Lu, Asuka Inoue, Robert B. Russell: Genetic variants affecting equivalent protein family positions reflect human diversity. In: Scientific Reports, 2017,
2016Francesco Raimondi, Gurdeep Singh, Matthew J. Betts, Gordana Apic, Ranka Vukotic, Pietro Andreone, Lincoln Stein & Robert B. Russell: Insights into cancer severity from biomolecular interaction mechanisms. In: Scientific Reports, 2016,
2016Giambattista Guaitoli, Francesco Raimondi, Bernd K. Gilsbacha, Yacob Gómez-Llorente, Egon Deyaert, Fabiana Renzi, Xianting Li, Adam Schaffnerg, Pravin Kumar Ankush Jagtapk, Karsten Boldt, Felix von Zweydorfa, Katja Gotthardt, Donald D. Lorimer, Zhenyu Yue, Alex Burgin, Nebojsa Janjic, Michael Sattlerk, Wim Versées, Marius Ueffing, Iban Ubarretxena-Belandiag, Arjan Kortholte and Christian Johannes Gloeckner: Structural model of the dimeric Parkinson’s protein LRRK2 reveals a compact architecture involving distant interdomain contacts. In: PNAS, 2016, E4357-–E4366