Immunoglobulin variable domain high-throughput sequencing reveals specific novel mutational patterns in POEMS syndrome

Author:

Bender Sébastien123,Javaugue Vincent124,Saintamand Alexis1,Ayala Maria Victoria1,Alizadeh Mehdi5,Filloux Matthieu3,Pascal Virginie3,Gachard Nathalie16,Lavergne David2,Auroy Fabienne2,Cogné Michel1ORCID,Bridoux Frank124ORCID,Sirac Christophe12ORCID,Jaccard Arnaud127

Affiliation:

1. Centre National de la Recherche Scientifique (CNRS) Unité Mixte de Recherche (UMR) 7276/INSERM U1262, Université de Limoges, Limoges, France;

2. Centre National de Référence de l’Amylose AL et autres Maladies par Dépôts d’Immunoglobulines Monoclonales and

3. Service d’Immunologie et Immunogénétique, Centre Hospitalier Universitaire de Limoges, Limoges, France;

4. Service de Néphrologie et Transplantation, Centre Hospitalier Universitaire de Poitiers, Poitiers, France;

5. Etablissement Français du Sang Bretagne, PlateForme de Biotechnologies Innovantes, Rennes, France; and

6. Laboratoire d’Hématologie Biologique and

7. Service d’Hématologie Clinique, Centre Hospitalier Universitaire de Limoges, Limoges, France

Abstract

Abstract Polyneuropathy, organomegaly, endocrinopathy, monoclonal gammopathy, and skin changes (POEMS) syndrome is a rare multisystem disease resulting from an underlying plasma cell (PC) dyscrasia. The pathophysiology of the disease remains unclear, but the role of the monoclonal immunoglobulin (Ig) light chain (LC) is strongly suspected because of the highly restrictive usage of 2 λ variable (V) domains (IGLV1-40 and IGLV1-44) and the general improvement of clinical manifestations after PC clone-targeted treatment. However, the diagnostic value of Ig LC sequencing, especially in the case of incomplete forms of the disease, remains to be determined. Using a sensitive high-throughput Ig repertoire sequencing on RNA (rapid amplification of cDNA ends-based repertoire sequencing [RACE-RepSeq]), we detected a λ LC monoclonal expansion in the bone marrow (BM) of 83% of patients with POEMS syndrome, including some in whom BM tests routinely performed to diagnose plasma cell dyscrasia failed to detect λ+ monoclonal PCs. Twenty-four (83%) of the 29 LC clonal sequences found were derived from the IGLV1-40 and IGLV1-44 germline genes, as well as 2 from the closely related IGLV1-36 gene, and all were associated with an IGLJ3*02 junction (J) gene, confirming the high restriction of VJ region usage in POEMS syndrome. RACE-RepSeq VJ full-length sequencing additionally revealed original mutational patterns, the strong specificity of which might crucially help establish or eliminate the diagnosis of POEMS syndrome in uncertain cases. Thus, RACE-RepSeq appears as a sensitive, rapid, and specific tool to detect low-abundance PC clones in BM and assign them to POEMS syndrome, with all the consequences for therapeutic options.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

Reference40 articles.

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