Variants in ELL2 influencing immunoglobulin levels associate with multiple myeloma

Bhairavi Swaminathan(Lund University), Guðmar Þorleifsson(deCODE Genetics (Iceland)), Magnus Jöud(Lund University), Mina Ali(Lund University), Ellinor Johnsson(Lund University), Ram Ajore(Lund University), Patrick Sulem(deCODE Genetics (Iceland)), Britt-Marie Halvarsson(Lund University), Guðmundur I. Eyjólfsson(Innovation Center Iceland), Vilhelmína Haraldsdóttir(National University Hospital of Iceland), Christina M. Hultman(Karolinska Institutet), Erik Ingelsson(Uppsala University), Sigurður Y. Kristinsson(University of Iceland), Anna K. Kähler(Karolinska Institutet), Stig Lenhoff(Skåne University Hospital), Gísli Másson(deCODE Genetics (Iceland)), Ulf‐Henrik Mellqvist(Sahlgrenska University Hospital), Robert Månsson(Karolinska Institutet), Sven Nelander(Uppsala University), Ísleifur Ólafsson(National University Hospital of Iceland), Ólöf Sigurðardóttir(Akureyri Hospital), Hlíf Steingrímsdóttir(National University Hospital of Iceland), Annette Juul Vangsted(Copenhagen University Hospital), Ulla Vogel(National Research Centre for the Working Environment), Anders Waage(Norwegian University of Science and Technology), Hareth Nahi(Karolinska Institutet), Daníel F. Guðbjartsson(deCODE Genetics (Iceland)), Þórunn Rafnar(deCODE Genetics (Iceland)), Ingemar Turesson(Skåne University Hospital), Urban Gullberg(Lund University), Kāri Stefánsson(deCODE Genetics (Iceland)), Markus Hansson(Lund University), Unnur Þorsteinsdóttir(deCODE Genetics (Iceland)), Björn Nilsson(Broad Institute)
Nature Communications
May 26, 2015
Cited by 1,212Open Access
Full Text

Abstract

Multiple myeloma (MM) is characterized by an uninhibited, clonal growth of plasma cells. While first-degree relatives of patients with MM show an increased risk of MM, the genetic basis of inherited MM susceptibility is incompletely understood. Here we report a genome-wide association study in the Nordic region identifying a novel MM risk locus at ELL2 (rs56219066T; odds ratio (OR)=1.25; P=9.6 × 10(-10)). This gene encodes a stoichiometrically limiting component of the super-elongation complex that drives secretory-specific immunoglobulin mRNA production and transcriptional regulation in plasma cells. We find that the MM risk allele harbours a Thr298Ala missense variant in an ELL2 domain required for transcription elongation. Consistent with a hypomorphic effect, we find that the MM risk allele also associates with reduced levels of immunoglobulin A (IgA) and G (IgG) in healthy subjects (P=8.6 × 10(-9) and P=6.4 × 10(-3), respectively) and, potentially, with an increased risk of bacterial meningitis (OR=1.30; P=0.0024).


Related Papers

No related papers found

Powered by citation graph analysis