Deletion polymorphism of SIGLEC14 and its functional implications
GLYCOBIOLOGY
Authors: Yamanaka, Masahiro; Kato, Yukinari; Angata, Takashi; Narimatsu, Hisashi
Abstract
Human Siglec-14, a member of the Siglec family of sialic acid-binding lectins, shows extensive sequence similarity to human Siglec-5. To analyze respective expression patterns of Siglec-14 and Siglec-5, we developed specific antibodies against each of them. We found that the former was expressed on granulocytes and monocytes, while the latter was on granulocytes and B-cells. Surprisingly, some individuals lacked the expression of Siglec-14, while they all expressed Siglec-5. We found that a fusion between SIGLEC14 and SIGLEC5 genes, resulting in the functional deletion of SIGLEC14, underlies this phenotype. The presence of the "SIGLEC14 null" allele in all human populations we tested implies an ancient origin, while its allelic frequency is higher in Asians compared with Africans and Europeans. The forced expression of Siglec-14 in a monocytic cell line-enhanced TNF-alpha secretion elicited by lipopolysaccharide. These results imply that Siglec-14 may play some role in bacterial infection.
A genome-wide association study identifies nucleotide variants at SIGLEC5 and DEFA1A3 as risk loci for periodontitis
HUMAN MOLECULAR GENETICS
Authors: Munz, Matthias; Willenborg, Christina; Richter, Gesa M.; Jockel-Schneider, Yvonne; Graetz, Christian; Staufenbiel, Ingmar; Wellmann, Juergen; Berger, Klaus; Krone, Bastian; Hoffmann, Per; van der Velde, Nathalie; Uitterlinden, Andre G.; de Groot, Lisette C. P. G. M.; Sawalha, Amr H.; Direskeneli, Haner; Saruhan-Direskeneli, Guher; Guzeldemir-Akcakanat, Esra; Keceli, Gencay; Laudes, Matthias; Noack, Barbara; Teumer, Alexander; Holtfreter, Birte; Kocher, Thomas; Eickholz, Peter; Meyle, Joerg; Doerfer, Christof; Bruckmann, Corinna; Lieb, Wolfgang; Franke, Andre; Schreiber, Stefan; Nohutcu, Rahime M.; Erdmann, Jeanette; Loos, Bruno G.; Jepsen, Soeren; Dommisch, Henrik; Schaefer, Arne S.
Abstract
Periodontitis is one of the most common inflammatory diseases, with a prevalence of 11% worldwide for the severe forms and an estimated heritability of 50%. The disease is characterized by destruction of the alveolar bone due to an aberrant host inflammatory response to a dysbiotic oral microbiome. Previous genome-wide association studies (GWAS) have reported several suggestive susceptibility loci. Here, we conducted a GWAS using a German and Dutch case-control sample of aggressive periodontitis (AgP, 896 cases, 7,104 controls), a rare but highly severe and early-onset form of periodontitis, validated the associations in a German sample of severe forms of the more moderate phenotype chronic periodontitis (CP) (993 cases, 1,419 controls). Positive findings were replicated in a Turkish sample of AgP (223 cases, 564 controls). A locus at SIGLEC5 (sialic acid binding Ig-like lectin 5) and a chromosomal region downstream of the DEFA1A3 locus (defensin alpha 1-3) showed association with both disease phenotypes and were associated with periodontitis at a genome-wide significance level in the pooled samples, with P = 1.09E-08 (rs4284742,-G; OR = 1.34, 95% CI = 1.21-1.48) and P = 5.48E-10 (rs2738058,-T; OR = 1.28, 95% CI = 1.18-1.38), respectively. SIGLEC5 is expressed in various myeloid immune cells and classified as an inhibitory receptor with the potential tomediate tyrosine phosphatases SHP-1/-2 dependent signaling. Alpha defensins are antimicrobial peptides with expression in neutrophils andmucosal surfaces and a role in phagocyte-mediated host defense. This study identifies the first shared genetic risk loci of AgP and CP with genome-wide significance and highlights the role of innate and adaptive immunity in the etiology of periodontitis.