Search Results - "Zoppe, Monica"

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  1. 1

    Inferring 3D chromatin structure using a multiscale approach based on quaternions by Caudai, Claudia, Salerno, Emanuele, Zoppè, Monica, Tonazzini, Anna

    Published in BMC bioinformatics (29-07-2015)
    “…The knowledge of the spatial organisation of the chromatin fibre in cell nuclei helps researchers to understand the nuclear machinery that regulates DNA…”
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    ChromStruct 4: A Python Code to Estimate the Chromatin Structure from Hi-C Data by Caudai, Claudia, Salerno, Emanuele, Zoppe, Monica, Merelli, Ivan, Tonazzini, Anna

    “…A method and a stand-alone Python code to estimate the 3D chromatin structure from chromosome conformation capture data are presented. The method is based on a…”
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    Step back from the edge by Zoppè, Monica M

    Published in EMBO reports (01-09-2012)
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  5. 5

    Towards a perceptive understanding of size in cellular biology by Zoppè, Monica

    Published in Nature methods (01-07-2017)
    “…This piece tackles the question of how to make biological scale more intuitive to human beings, bringing to bear the author's background in scientific…”
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    Colors in the representation of biological structures by Zoppè, Monica

    Published in Journal of integrative bioinformatics (04-07-2022)
    “…Among the many properties of proteins, sugars, nucleic acids, membranes and other cellular components, color is not present. At the same time, we humans have a…”
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    Potentiation of gene targeting in human cells by expression of Saccharomyces cerevisiae Rad52 by Di Primio, Cristina, Galli, Alvaro, Cervelli, Tiziana, Zoppè, Monica, Rainaldi, Giuseppe

    Published in Nucleic acids research (01-01-2005)
    “…When exogenous DNA is stably introduced in mammalian cells, it is typically integrated in random positions, and only a minor fraction enters a pathway of…”
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    A Factor IX-Deficient Mouse Model for Hemophilia B Gene Therapy by Wang, Lili, Zoppe, Monica, Hackeng, Tilman M., Griffin, John H., Lee, Kuo-Fen, Verma, Inder M.

    “…We have generated a mouse where the clotting factor IX (FIX) gene has been disrupted by homologous recombination. The FIX nullizygous (-/-) mouse was devoid of…”
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    Computational design, fabrication and evaluation of rubber protein models by Alderighi, Thomas, Giorgi, Daniela, Malomo, Luigi, Cignoni, Paolo, Zoppè, Monica

    Published in Computers & graphics (01-08-2021)
    “…•We introduce a complete workflow for the fabrication of soft 3D models of complex proteins.•The workflow enables the fabrication of tangible models of…”
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    Generation of Targeted Retroviral Vectors by Using Single-Chain Variable Fragment: An Approach to in vivo Gene Delivery by Somia, Nikunj V., Zoppe, Monica, Verma, Inder M.

    “…We report the generation of a retroviral vector that infects human cells specifically through recognition of the low density lipoprotein receptor. The…”
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    Integration of Multiple Resolution Data in 3D Chromatin Reconstruction Using ChromStruct by Caudai, Claudia, Zoppè, Monica, Tonazzini, Anna, Merelli, Ivan, Salerno, Emanuele

    Published in Biology (Basel, Switzerland) (16-04-2021)
    “…The three-dimensional structure of chromatin in the cellular nucleus carries important information that is connected to physiological and pathological…”
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  14. 14

    Intuitive representation of surface properties of biomolecules using BioBlender by Andrei, Raluca Mihaela, Callieri, Marco, Zini, Maria Francesca, Loni, Tiziana, Maraziti, Giuseppe, Pan, Mike Chen, Zoppè, Monica

    Published in BMC bioinformatics (28-03-2012)
    “…In living cells, proteins are in continuous motion and interaction with the surrounding medium and/or other proteins and ligands. These interactions are…”
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    Estimation of the Spatial Chromatin Structure Based on a Multiresolution Bead-Chain Model by Caudai, Claudia, Salerno, Emanuele, Zoppe, Monica, Tonazzini, Anna

    “…We present a method to infer 3D chromatin configurations from Chromosome Conformation Capture data. Quite a few methods have been proposed to estimate the…”
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    Myocardial contractility in the stress echo lab: from pathophysiological toy to clinical tool by Bombardini, Tonino, Zoppè, Monica, Ciampi, Quirino, Cortigiani, Lauro, Agricola, Eustachio, Salvadori, Stefano, Loni, Tiziana, Pratali, Lorenza, Picano, Eugenio

    Published in Cardiovascular ultrasound (18-11-2013)
    “…Up-regulation of Ca2+ entry through Ca2+ channels by high rates of beating is involved in the frequency-dependent regulation of contractility: this process is…”
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    Transcellular transfer of active HSV-1 thymidine kinase mediated by an 11-amino-acid peptide from HIV-1 Tat by Tasciotti, Ennio, Zoppè, Monica, Giacca, Mauro

    Published in Cancer Gene Therapy (01-01-2003)
    “…Suicide gene therapy using herpes simplex virus type-1 (HSV-1) thymidine kinase (TK) is a widely exploited approach for gene therapy of cancer and other…”
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    High-level biocontainment laboratories: risks and necessity for society [version 1; peer review: 1 approved, 1 not approved] by Zoppè, Monica

    Published in F1000 research (2022)
    “…Advancements in the biological sciences have made it possible to manipulate life forms in unprecedented ways. Recognizing the possible dangers connected with…”
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    Mannose analog 1-deoxymannojirimycin inhibits the Golgi-mediated processing of bean storage glycoproteins by Vitale, A. (Consiglio Nazionale delle Ricerche, Milano, Italy), Zoppe, M, Bollini, R

    Published in Plant physiology (Bethesda) (01-04-1989)
    “…The asparagine-linked oligosaccharide chains of glycoproteins can be processed to form a wide variety of structures. The Golgi complex is the main compartment…”
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    Synthesis of lectin-like protein in developing cotyledons of normal and phytohemagglutinin-deficient Phaseolus vulgaris by Vitale, A. (Istituto Biosintesi Vegetali, Consiglio Nazionale delle Richerche, Milano, Italy), Zoppe, M, Fabbrini, M.S, Genga, A, Rivas, L, Bollini, R

    Published in Plant physiology (Bethesda) (01-07-1989)
    “…The genome of the common bean Phaseolus vulgaris contains a small gene family that encodes lectin and lectin-like proteins (phytohemagglutinin, arcelin, and…”
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