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Duodenal-type and nodal follicular lymphomas differ by their immune microenvironment rather than their mutation profiles.

Authors :
Hellmuth JC
Louissaint A Jr
Szczepanowski M
Haebe S
Pastore A
Alig S
Staiger AM
Hartmann S
Kridel R
Ducar MD
Koch P
Dreyling M
Hansmann ML
Ott G
Rosenwald A
Gascoyne RD
Weinstock DM
Hiddemann W
Klapper W
Weigert O
Source :
Blood [Blood] 2018 Oct 18; Vol. 132 (16), pp. 1695-1702. Date of Electronic Publication: 2018 Aug 20.
Publication Year :
2018

Abstract

Duodenal-type follicular lymphoma (DTFL) is a rare and highly indolent follicular lymphoma (FL) variant. It is morphologically and immunophenotypically indistinguishable from typical FL, characterized by restricted involvement of intestinal mucosa, and lacks extraintestinal manifestations. The molecular determinants of this distinct clinical behavior are largely unknown. Thirty-eight diagnostic biopsies from patients with DTFL were evaluated. The 10-year overall survival rate was 100% in clinically evaluable patients (n = 19). We compared the targeted mutation profile of DTFL (n = 31), limited-stage typical FL (LSTFL; n = 17), and advanced-stage typical FL (ASTFL; n = 241). The mutation frequencies of recurrently mutated genes, including CREBBP , TNFRSF14 / HVEM , and EZH2 were not significantly different. However, KMT2D was less commonly mutated in DTFL (52%) and LSTFL (24%) as compared with ASTFL (79%). In ASTFL, 41% of KMT2D- mutated cases harbored multiple mutations in KMT2D , as compared with only 12% in LSTFL ( P = .019) and 0% in DTFL ( P < .0001). Whole exome and targeted sequencing of DTFL revealed high mutation frequencies of EEF1A1 (35%) and HVCN1 (22%). We compared the immune microenvironment gene expression signatures of DTFL (n = 8) and LSTFL (n = 7). DTFL clearly separated from LSTFL by unsupervised, hierarchical clustering of 147 chemokines and cytokines and was enriched for a chronic inflammation signature. In conclusion, the mutational landscape of DTFL is highly related to typical FL. The lower frequency of multiple mutations in KMT2D in DTFL and LSTFL indicates an increasing selection pressure for complete KMT2D loss in ASTFL pathogenesis. The highly dissimilar immune microenvironment of DTFL suggests a central role in the biology of this disease.<br /> (© 2018 by The American Society of Hematology.)

Details

Language :
English
ISSN :
1528-0020
Volume :
132
Issue :
16
Database :
MEDLINE
Journal :
Blood
Publication Type :
Academic Journal
Accession number :
30126979
Full Text :
https://doi.org/10.1182/blood-2018-03-837252