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细胞因子BAFF的过表达与自身免疫风险

Overexpression of the Cytokine BAFF and Autoimmunity Risk.

作者信息

Steri Maristella, Orrù Valeria, Idda M Laura, Pitzalis Maristella, Pala Mauro, Zara Ilenia, Sidore Carlo, Faà Valeria, Floris Matteo, Deiana Manila, Asunis Isadora, Porcu Eleonora, Mulas Antonella, Piras Maria G, Lobina Monia, Lai Sandra, Marongiu Mara, Serra Valentina, Marongiu Michele, Sole Gabriella, Busonero Fabio, Maschio Andrea, Cusano Roberto, Cuccuru Gianmauro, Deidda Francesca, Poddie Fausto, Farina Gabriele, Dei Mariano, Virdis Francesca, Olla Stefania, Satta Maria A, Pani Mario, Delitala Alessandro, Cocco Eleonora, Frau Jessica, Coghe Giancarlo, Lorefice Lorena, Fenu Giuseppe, Ferrigno Paola, Ban Maria, Barizzone Nadia, Leone Maurizio, Guerini Franca R, Piga Matteo, Firinu Davide, Kockum Ingrid, Lima Bomfim Izaura, Olsson Tomas, Alfredsson Lars, Suarez Ana, Carreira Patricia E, Castillo-Palma Maria J, Marcus Joseph H, Congia Mauro, Angius Andrea, Melis Maurizio, Gonzalez Antonio, Alarcón Riquelme Marta E, da Silva Berta M, Marchini Maurizio, Danieli Maria G, Del Giacco Stefano, Mathieu Alessandro, Pani Antonello, Montgomery Stephen B, Rosati Giulio, Hillert Jan, Sawcer Stephen, D'Alfonso Sandra, Todd John A, Novembre John, Abecasis Gonçalo R, Whalen Michael B, Marrosu Maria G, Meloni Alessandra, Sanna Serena, Gorospe Myriam, Schlessinger David, Fiorillo Edoardo, Zoledziewska Magdalena, Cucca Francesco

机构信息

From Istituto di Ricerca Genetica e Biomedica, Consiglio Nazionale delle Ricerche Monserrato (M.S., V.O., M.L.I., M. Pitzalis, M. Pala, C.S., V.F., M.F., M. Deiana, I.A., E.P., A. Mulas, M.G.P., M. Lobina, S.L., Mara Marongiu, V.S., Michele Marongiu, G.S., F.B., A. Maschio, F.D., M. Dei, F.V., S.O., A.A., M.B.W., A. Meloni, S. Sanna, E.F., M.Z., F.C.), Center for Advanced Studies, Research, and Development in Sardinia, Parco Scientifico e Tecnologico della Sardegna (I.Z., M.F., R.C., G. Cuccuru), Struttura Complessa Disciplina di Ematologia e Centro Trapianto Cellule Staminali Emopoietiche Wilma Deplano, Ospedale Oncologico di Riferimento Regionale Armando Businco (M. Pani), Dipartimento di Sanità Pubblica, Medicina Clinica e Molecolare, Università di Cagliari (E.C., J.F., G. Coghe, L.L., G. Fenu), Azienda Ospedaliera Brotzu, S.C. Neurologia (P.F., M. Melis), Division of Rheumatology, University and University Hospital of Cagliari (M. Piga, A. Mathieu), Department of Medical Sciences M. Aresu, University of Cagliari (D.F., S.D.G., M.G.M.), Azienda Ospedaliera Brotzu, U.S. Gastroenterologia Pediatrica Ospedale Pediatrico Microcitemico A. Cao (M.C.), and Nephrology, Dialysis, and Transplantation Unit, Giuseppe Brotzu Hospital (A.P.), Cagliari, Dipartimento di Scienze Biomediche, Università degli Studi di Sassari (M.F., F.P., F.C.), Unit of Neurology, Department of Clinical and Experimental Medicine, University of Sassari (G. Farina, G.R.), and Servizio Trasfusionale (M.A.S.) and Clinica Medica (A.D.), Azienda Ospedaliero Universitaria di Sassari, Sassari, Neurology B, Department of Neurological, Biomedical, and Movement Sciences, University of Verona, Verona (G. Farina), Department of Health Sciences, Interdisciplinary Research Center of Autoimmune Diseases, University of Eastern Piedmont, Novara (N.B., S.D.), SC Neurologia, Dipartimento di Scienze Mediche, Istituti di Ricovero e Cura a Carattere Scientifico (IRCCS) Casa Sollievo della Sofferenza, San Giovanni Rotondo (M. Leone), Don C. Gnocchi Foundation IRCCS (F.R.G.), and Referral Center for Systemic Autoimmune Diseases Fondazione IRCCS Cá Granda Ospedale Maggiore Policlinico and University of Milan (M. Marchini), Milan, and Dipartimento di Scienze Cliniche e Molecolari, Università Politecnica delle Marche e Ospedali Riuniti, Ancona (M.G.D.) - all in Italy; Laboratory of Genetics and Genomics, National Institute on Aging, National Institutes of Health, Baltimore (M.L.I., M.G., D.S.); the Department of Clinical Neurosciences (M.B., S. Sawcer) and JDRF-Wellcome Trust Diabetes and Inflammation Laboratory, National Institute for Health Research Cambridge Biomedical Research Centre, Cambridge Institute for Medical Research (J.A.T.), University of Cambridge, Cambridge, United Kingdom; Department of Clinical Neuroscience, Karolinska Institutet at Karolinska University Hospital Solna (I.K., I.L.B., T.O., J.H.), Institute of Environmental Medicine (L.A.) and Institute of Environmental Medicine, Unit of Immunology and Chronic Disease (M.E.A.R.), Karolinska Institute, and Center for Occupational and Environmental Medicine, Stockholm County Council (L.A.), Stockholm; Department of Functional Biology, University of Oviedo, Oviedo (A.S.), Rheumatology Department, Hospital Universitario 12 de Octubre, Madrid (P.E.C.), Department of Internal Medicine, Hospital Universitario Virgen del Rocío, Seville (M.J.C.-P.), Laboratorio de Investigacion 10 and Rheumatology Unit, Instituto de Investigacion Sanitaria-Hospital Clinico Universitario de Santiago, Santiago de Compostela (A.G.), and Centro de Genómica e Investigación Oncológica, Pfizer-Universidad de Granada-Junta de Andalucía, Granada (M.E.A.R.) - all in Spain; Department of Human Genetics, University of Chicago, Chicago (J.H.M., J.N.); Centro Hospitalar do Porto-Hospital Santo Antonio and Unit for Multidisciplinary Research in Biomedicine-Unidade Multidisciplinar de Investigação Biomédica, Porto, Portugal (B.M.S.); Departments of Pathology and Genetics, Stanford University, Stanford, CA (S.B.M.); and Center for Statistical Genetics, University of Michigan, Ann Arbor (G.R.A.).

出版信息

N Engl J Med. 2017 Apr 27;376(17):1615-1626. doi: 10.1056/NEJMoa1610528.

Abstract

BACKGROUND

Genomewide association studies of autoimmune diseases have mapped hundreds of susceptibility regions in the genome. However, only for a few association signals has the causal gene been identified, and for even fewer have the causal variant and underlying mechanism been defined. Coincident associations of DNA variants affecting both the risk of autoimmune disease and quantitative immune variables provide an informative route to explore disease mechanisms and drug-targetable pathways.

METHODS

Using case-control samples from Sardinia, Italy, we performed a genomewide association study in multiple sclerosis followed by TNFSF13B locus-specific association testing in systemic lupus erythematosus (SLE). Extensive phenotyping of quantitative immune variables, sequence-based fine mapping, cross-population and cross-phenotype analyses, and gene-expression studies were used to identify the causal variant and elucidate its mechanism of action. Signatures of positive selection were also investigated.

RESULTS

A variant in TNFSF13B, encoding the cytokine and drug target B-cell activating factor (BAFF), was associated with multiple sclerosis as well as SLE. The disease-risk allele was also associated with up-regulated humoral immunity through increased levels of soluble BAFF, B lymphocytes, and immunoglobulins. The causal variant was identified: an insertion-deletion variant, GCTGT→A (in which A is the risk allele), yielded a shorter transcript that escaped microRNA inhibition and increased production of soluble BAFF, which in turn up-regulated humoral immunity. Population genetic signatures indicated that this autoimmunity variant has been evolutionarily advantageous, most likely by augmenting resistance to malaria.

CONCLUSIONS

A TNFSF13B variant was associated with multiple sclerosis and SLE, and its effects were clarified at the population, cellular, and molecular levels. (Funded by the Italian Foundation for Multiple Sclerosis and others.).

摘要

背景

自身免疫性疾病的全基因组关联研究已在基因组中定位了数百个易感区域。然而,仅少数关联信号的因果基因已被确定,而更少的因果变异和潜在机制得以明确。影响自身免疫性疾病风险和定量免疫变量的DNA变异的巧合关联为探索疾病机制和可药物靶向途径提供了一条信息丰富的途径。

方法

利用来自意大利撒丁岛的病例对照样本,我们对多发性硬化症进行了全基因组关联研究,随后对系统性红斑狼疮(SLE)进行了TNFSF13B基因座特异性关联测试。通过对定量免疫变量进行广泛的表型分析、基于序列的精细定位、跨人群和跨表型分析以及基因表达研究,以确定因果变异并阐明其作用机制。还研究了正选择的特征。

结果

编码细胞因子和药物靶点B细胞激活因子(BAFF)的TNFSF13B中的一个变异与多发性硬化症以及SLE相关。疾病风险等位基因还通过可溶性BAFF、B淋巴细胞和免疫球蛋白水平的升高与体液免疫上调相关。确定了因果变异:一个插入缺失变异GCTGT→A(其中A是风险等位基因)产生了一个较短的转录本,该转录本逃脱了微小RNA的抑制并增加了可溶性BAFF的产生,进而上调了体液免疫。群体遗传特征表明,这种自身免疫变异在进化上具有优势,最有可能是通过增强对疟疾的抵抗力。

结论

一个TNFSF13B变异与多发性硬化症和SLE相关,并且在群体、细胞和分子水平上阐明了其作用。(由意大利多发性硬化症基金会等资助。)

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