Publications

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2020
Ribeiro, Diana O., Aldino Viegas, Virgínia M. R. Pires, João Medeiros-Silva, Pedro Bule, Wengang Chai, Filipa Marcelo, Carlos M. G. A. Fontes, Eurico J. Cabrita, Angelina S. Palma, and Ana Luísa Carvalho. "Molecular basis for the preferential recognition of beta 1,3-1,4-glucans by the family 11 carbohydrate-binding module from Clostridium thermocellum." The FEBS journal. 287 (2020): 2723-2743. Abstract

Understanding the specific molecular interactions between proteins and $\beta$1,3-1,4-mixed-linked d-glucans is fundamental to harvest the full biological and biotechnological potential of these carbohydrates and of proteins that specifically recognize them. The family 11 carbohydrate-binding module from Clostridium thermocellum (CtCBM11) is known for its binding preference for $\beta$1,3-1,4-mixed-linked over $\beta$1,4-linked glucans. Despite the growing industrial interest of this protein for the biotransformation of lignocellulosic biomass, the molecular determinants of its ligand specificity are not well defined. In this report, a combined approach of methodologies was used to unravel, at a molecular level, the ligand recognition of CtCBM11. The analysis of the interaction by carbohydrate microarrays and NMR and the crystal structures of CtCBM11 bound to $\beta$1,3-1,4-linked glucose oligosaccharides showed that both the chain length and the position of the $\beta$1,3-linkage are important for recognition, and identified the tetrasaccharide Glc$\beta$1,4Glc$\beta$1,4Glc$\beta$1,3Glc sequence as a minimum epitope required for binding. The structural data, along with site-directed mutagenesis and ITC studies, demonstrated the specificity of CtCBM11 for the twisted conformation of $\beta$1,3-1,4-mixed-linked glucans. This is mediated by a conformation-selection mechanism of the ligand in the binding cleft through CH-$π$ stacking and a hydrogen bonding network, which is dependent not only on ligand chain length, but also on the presence of a $\beta$1,3-linkage at the reducing end and at specific positions along the $\beta$1,4-linked glucan chain. The understanding of the detailed mechanism by which CtCBM11 can distinguish between linear and mixed-linked $\beta$-glucans strengthens its exploitation for the design of new biomolecules with improved capabilities and applications in health and agriculture. DATABASE: Structural data are available in the Protein Data Bank under the accession codes 6R3M and 6R31.

Vendele, Ingrida, Janet A. Willment, Lisete M. Silva, Angelina S. Palma, Wengang Chai, Yan Liu, Ten Feizi, Maria Spyrou, Mark H. T. Stappers, Gordon D. Brown, and Neil A. R. Gow. "{Mannan detecting C-type lectin receptor probes recognise immune epitopes with diverse chemical, spatial and phylogenetic heterogeneity in fungal cell walls.}." PLoS pathogens. 16 (2020): e1007927. Abstract

During the course of fungal infection, pathogen recognition by the innate immune system is critical to initiate efficient protective immune responses. The primary event that triggers immune responses is the binding of Pattern Recognition Receptors (PRRs), which are expressed at the surface of host immune cells, to Pathogen-Associated Molecular Patterns (PAMPs) located predominantly in the fungal cell wall. Most fungi have mannosylated PAMPs in their cell walls and these are recognized by a range of C-type lectin receptors (CTLs). However, the precise spatial distribution of the ligands that induce immune responses within the cell walls of fungi are not well defined. We used recombinant IgG Fc-CTLs fusions of three murine mannan detecting CTLs, including dectin-2, the mannose receptor (MR) carbohydrate recognition domains (CRDs) 4-7 (CRD4-7), and human DC-SIGN (hDC-SIGN) and of the $\beta$-1,3 glucan-binding lectin dectin-1 to map PRR ligands in the fungal cell wall of fungi grown in vitro in rich and minimal media. We show that epitopes of mannan-specific CTL receptors can be clustered or diffuse, superficial or buried in the inner cell wall. We demonstrate that PRR ligands do not correlate well with phylogenetic relationships between fungi, and that Fc-lectin binding discriminated between mannosides expressed on different cell morphologies of the same fungus. We also demonstrate CTL epitope differentiation during different phases of the growth cycle of Candida albicans and that MR and DC-SIGN labelled outer chain N-mannans whilst dectin-2 labelled core N-mannans displayed deeper in the cell wall. These immune receptor maps of fungal walls of in vitro grown cells therefore reveal remarkable spatial, temporal and chemical diversity, indicating that the triggering of immune recognition events originates from multiple physical origins at the fungal cell surface.

2018
Rudkin, Fiona M., Ingrida Raziunaite, Hillary Workman, Sosthene Essono, Rodrigo Belmonte, Donna M. MacCallum, Elizabeth M. Johnson, Lisete M. Silva, Angelina S. Palma, Ten Feizi, Allan Jensen, Lars P. Erwig, and Neil A. R. Gow. "Single human B cell-derived monoclonal anti-Candida antibodies enhance phagocytosis and protect against disseminated candidiasis." Nature communications. 9 (2018): 5288. Abstract

The high global burden of over one million annual lethal fungal infections reflects a lack of protective vaccines, late diagnosis and inadequate chemotherapy. Here, we have generated a unique set of fully human anti-Candida monoclonal antibodies (mAbs) with diagnostic and therapeutic potential by expressing recombinant antibodies from genes cloned from the B cells of patients suffering from candidiasis. Single class switched memory B cells isolated from donors serum-positive for anti-Candida IgG were differentiated in vitro and screened against recombinant Candida albicans Hyr1 cell wall protein and whole fungal cell wall preparations. Antibody genes from Candida-reactive B cell cultures were cloned and expressed in Expi293F human embryonic kidney cells to generate a panel of human recombinant anti-Candida mAbs that demonstrate morphology-specific, high avidity binding to the cell wall. The species-specific and pan-Candida mAbs generated through this technology display favourable properties for diagnostics, strong opsono-phagocytic activity of macrophages in vitro, and protection in a murine model of disseminated candidiasis.

Loureiro, LR, DP Sousa, D. Ferreira, W. Chai, L. Lima, C. Pereira, CB Lopes, VG Correia, LM Silva, C. Li, LL Santos, JA Ferreira, A. Barbas, A. S. Palma, C. Novo, and PA Videira. "Novel Monoclonal Antibody L2A5 Specifically Targeting sialyl-Tn and Short Glycans Terminated by alpha-2-6 Sialic Acids." Sci Rep.. 8.1 (2018): 12196.
2013
Neu, Ursula, Stacy-Ann A. Allen, Barbel S. Blaum, Yan Liu, Martin Frank, Angelina S. Palma, Luisa J. Stroh, Ten Feizi, Thomas Peters, Walter J. Atwood, and Thilo Stehle. "A Structure-Guided Mutation in the Major Capsid Protein Retargets BK Polyomavirus." PLoS pathogens. 9 (2013): e1003688. Abstract
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2012
Graham, Lisa M., Vandana Gupta, Georgia Schafer, Delyth M. Reid, Matti Kimberg, Kevin M. Dennehy, William G. Hornsell, Reto Guler, Maria A. Campanero-Rhodes, Angelina S. Palma, Ten Feizi, Stella K. Kim, Peter Sobieszczuk, Janet A. Willment, and Gordon D. Brown. "The C-type Lectin Receptor CLECSF8 (CLEC4D) Is Expressed by Myeloid Cells and Triggers Cellular Activation through Syk Kinase." Journal of Biological Chemistry. 287 (2012): 25964-25974. Abstract
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Palma, Angelina S., Yan Liu, Yibing Zhang, Hongtao Zhang, Ana S. Luis, Ana Luisa Carvalho, Harry J. Gilbert, Alisdair Boraston, Carlos M. G. A. Fontes, Wengang Chai, and Ten Feizi. "Designer-oligosaccharide microarrays to decipher ligands in mammalian and prokaryotic glucan-recognition systems." Glycobiology. 22 (2012): 1612-1613. Abstract
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2011
Capodicasa, Cristina, Paola Chiani, Carla Bromuro, Flavia De Bernardis, Marcello Catellani, Angelina S. Palma, Yan Liu, Ten Feizi, Antonio Cassone, Eugenio Benvenuto, and Antonella Torosantucci. "Plant production of anti-beta-glucan antibodies for immunotherapy of fungal infections in humans." Plant Biotechnology Journal. 9 (2011): 776-787. Abstract
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Lai, Livia, Janene Bumstead, Yan Liu, James Garnett, Maria A. Campanero-Rhodes, Damer P. Blake, Angelina S. Palma, Wengang Chai, David J. P. Ferguson, Peter Simpson, Ten Feizi, Fiona M. Tomley, and Stephen Matthews. "The Role of Sialyl Glycan Recognition in Host Tissue Tropism of the Avian Parasite Eimeria tenella." Plos Pathogens. 7 (2011). Abstract
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2010
Friedrich, Nikolas, Joana M. Santos, Yan Liu, Angelina S. Palma, Ester Leon, Savvas Saouros, Makoto Kiso, Michael J. Blackman, Stephen Matthews, Ten Feizi, and Dominique Soldati-Favre. "Members of a Novel Protein Family Containing Microneme Adhesive Repeat Domains Act as Sialic Acid-binding Lectins during Host Cell Invasion by Apicomplexan Parasites." Journal of Biological Chemistry. 285 (2010): 2064-2076. Abstract
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Palma, Angelina S., Yan Liu, Claudia Muhle-Goll, Terry D. Butters, Yibing Zhang, Robert Childs, Wengang Chai, Ten Feizi, and M. Fukuda. "MULTIFACETED APPROACHES INCLUDING NEOGLYCOLIPID OLIGOSACCHARIDE MICROARRAYS TO LIGAND DISCOVERY FOR MALECTIN." Methods in Enzymology, Vol 478: Glycomics. 478 (2010): 265-286. Abstract
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Dunlop, Cameron D., Camille Bonomelli, Fatma Mansab, Snezana Vasiljevic, Katie J. Doores, Mark R. Wormald, Angelina S. Palma, Ten Feizi, David J. Harvey, Raymond A. Dwek, Max Crispin, and Christopher N. Scanlan. "Polysaccharide mimicry of the epitope of the broadly neutralizing anti-HIV antibody, 2G12, induces enhanced antibody responses to self oligomannose glycans." Glycobiology. 20 (2010): 812-823. Abstract
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2009
Torosantucci, Antonella, Paola Chiani, Carla Bromuro, Flavia De Bernardis, Angelina S. Palma, Yan Liu, Giuseppina Mignogna, Bruno Maras, Marisa Colone, Annarita Stringaro, Silvia Zamboni, Ten Feizi, and Antonio Cassone. "Protection by Anti-beta-Glucan Antibodies Is Associated with Restricted beta-1,3 Glucan Binding Specificity and Inhibition of Fungal Growth and Adherence." Plos One. 4 (2009). Abstract
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2008
Palma, Angelina S., Mamede De Carvalho, Nicolas Grammel, Susana Pinto, Nuno Barata, Harald S. Conradt, and Julia Costa. "Proteomic analysis of plasma from Portuguese patients with familial amyotrophic lateral sclerosis." Amyotrophic Lateral Sclerosis. 9 (2008): 339-349. Abstract
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2006
Palma, A. S., T. Feizi, YB Zhang, MS Stoll, AM Lawson, E. Diaz-Rodriguez, MA Campanero-Rhodes, J. Costa, S. Gordon, GD Brown, and WG Chai. "Ligands for the beta-glucan receptor, Dectin-1, assigned using "designer" microarrays of oligosaccharide probes (neoglycolipids) generated from glucan polysaccharides." Journal of Biological Chemistry. 281 (2006): 5771-5779. Abstract
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2005
Palma, A., M. De Carvalho, N. Barata, T. Evangelista, P. Chicau, M. REGALLA, and J. Costa. "Biochemical characterization of plasma in amyotrophic lateral sclerosis: Amino acid and protein composition." Amyotrophic Lateral Sclerosis and Other Motor Neuron Disorders. 6 (2005): 104-110. Abstract
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