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Inga M. Höben Rim Hjeij Heike Olbrich Gerard W. Dougherty Tabea Nöthe-Menchen Isabella Aprea Diana Frank Petra Pennekamp Bernd Dworniczak Julia Wallmeier Johanna Raidt Kim G. Nielsen Maria C. Philipsen Francesca Santamaria Laura Venditto Israel Amirav Huda Mussaffi Freerk Prenzel Heymut Omran 《American journal of human genetics》2018,102(5):973-984
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Karl B. Andree Sergio Trigos Nardo Vicente Noelia Carrasco Francesca Carella Patricia Prado 《Hydrobiologia》2018,821(1):235-253
The largest semi-enclosed basin in the world, the Mediterranean Sea, is characterized by high biodiversity and heavy human pressure on the coastal system. The Strait of Sicily (SoS) represents the boundary between western and eastern Mediterranean sub-regions and is an important biodiversity hot spot. Given its ecotonal nature and it being a “crossroad” for the westward expansion of warm-temperate and tropical species from the Levantin basin, the SoS is likely to play a key role in future climate change related biodiversity changes within the Mediterranean. The complexity of the SoS ecosystem, characterized by wider shallow detritic and rocky banks on the continental shelf hosting large biodiverse communities, and peculiar circulation pattern, promotes species diversity and abundance. In addition, the deep-sea is characterized by the occurrence of extremely vulnerable habitats, such as deep-water communities of scleractinian corals, antipatharians, gorgonians, and red coral. We review the current knowledge on the main characteristics of the north sector of the SoS ecosystem. The SoS ecosystem is increasingly threatened by expanding anthropogenic pressures in the area and specific conservation measures should be implemented on a national and international level to protect the relevant and vulnerable habitats. 相似文献
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Epitope mapping of anti‐myelin oligodendrocyte glycoprotein (MOG) antibodies in a mouse model of multiple sclerosis: microwave‐assisted synthesis of the peptide antigens and ELISA screening
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Giulia Pacini Matthaia Ieronymaki Francesca Nuti Giuseppina Sabatino Maud Larregola Rina Aharoni Anna Maria Papini Paolo Rovero 《Journal of peptide science》2016,22(1):52-58
The role of pathologic auto‐antibodies against myelin oligodendrocyte glycoprotein (MOG) in multiple sclerosis is a highly controversial matter. As the use of animal models may enable to unravel the molecular mechanisms of the human disorder, numerous studies on multiple sclerosis are carried out using experimental autoimmune encephalomyelitis (EAE). In particular, the most extensively used EAE model is obtained by immunizing C57BL/6 mice with the immunodominant peptide MOG(35–55). In this scenario, we analyzed the anti‐MOG antibody response in this model using the recombinant refolded extracellular domain of the protein, MOG(1–117). To assess the presence of a B‐cell intramolecular epitope spreading mechanism, we tested also five synthetic peptides mapping the 1–117 sequence of MOG, including MOG(35–55). For this purpose, we cloned, expressed in Escherichia coli and on‐column refolded MOG(1–117), and we applied an optimized microwave‐assisted solid‐phase synthetic strategy to obtain the designed peptide sequences. Subsequently, we set up a solid‐phase immunoenzymatic assay testing both naïve and EAE mice sera and using MOG protein and peptides as antigenic probes. The results obtained disclose an intense IgG antibody response against both the recombinant protein and the immunizing peptide, while no response was observed against the other synthetic fragments, thus excluding the presence of an intramolecular epitope spreading mechanism. Furthermore, as the properly refolded recombinant probe is able to bind antibodies with greater efficiency compared with MOG(35–55), we hypothesize the presence of both linear and conformational epitopes on MOG(35–55) sequence. Copyright © 2015 European Peptide Society and John Wiley & Sons, Ltd. 相似文献
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Francesca Rappa Alessandro Pitruzzella Antonella Marino Gammazza Rosario Barone Emanuele Mocciaro Giovanni Tomasello Francesco Carini Felicia Farina Giovanni Zummo Everly Conway de Macario Alberto JL Macario Francesco Cappello 《Cell stress & chaperones》2016,21(5):927-933
Large bowel carcinogenesis involves accumulation of genetic alterations leading to transformation of normal mucosa into dysplasia and, lastly, adenocarcinoma. It is pertinent to elucidate the molecular changes occurring in the pre-neoplastic lesions to facilitate early diagnosis and treatment. Heat shock proteins (Hsps), many of which are molecular chaperones, are implicated in carcinogenesis, and their variations with tumor progression encourage their study as biomarkers. There are many reports on Hsps and cancer but none to our knowledge on their systematic quantification in pre-neoplastic lesions of the large bowel. We performed immunohistochemical determinations of Hsp10, Hsp60, Hsp70, and Hsp90 in biopsies of large bowel tubular adenomas with moderate grade of dysplasia and compared to normal mucosa and adenocarcinoma with a moderate grade of differentiation (G2). A significant elevation of Hsp10 and Hsp60 only, i.e., in the absence of elevation of Hsp70 or Hsp90, in both epithelium and lamina propria was found in tubular adenoma by comparison with normal mucosa. In contrast, adenocarcinoma was characterized by the highest levels of Hsp10 and Hsp60 in epithelium and lamina propria, accompanied by the highest levels of Hsp70 only in epithelium and of Hsp90 only in lamina propria, by comparison with normal and tubular adenoma counterparts. Hsp10 and Hsp60 are promising biomarkers for early diagnosis of tubular adenoma and for its differentiation from more advanced malignant lesions. Hsp10 and Hsp60 may be implicated in carcinogenesis from its very early steps and, thus, are potentially convenient targets for therapy. 相似文献