Dysgammaglobulinemia Associated With Glu349del, a Hypomorphic XIAP Mutation

X-linked lymphoproliferative syndrome type 2 is a rare hereditary immunodeficiency caused by mutations in the XIAP gene. This immunodeficiency frequently results in hemophagocytic lymphohistiocytosis, although hypogammaglobulinemia and dysgammaglobulinemia are also common. We identified 17 patients...

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Published inJournal of investigational allergology & clinical immunology Vol. 25; no. 3; pp. 205 - 213
Main Authors Nishida, N, Yang, X, Takasaki, I, Imai, K, Kato, K, Inoue, Y, Imamura, T, Miyashita, R, Kato, F, Yamaide, A, Mori, M, Saito, S, Hara, J, Adachi, Y, Miyawaki, T, Kanegane, H
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LanguageEnglish
Published Spain 01.01.2015
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Abstract X-linked lymphoproliferative syndrome type 2 is a rare hereditary immunodeficiency caused by mutations in the XIAP gene. This immunodeficiency frequently results in hemophagocytic lymphohistiocytosis, although hypogammaglobulinemia and dysgammaglobulinemia are also common. We identified 17 patients from 12 Japanese families with mutations in XIAP. The Glu349del mutation was observed in 3 patients, each from a different family. Interestingly, these patients exhibited dysgammaglobulinemia but not hemophagocytic lymphohistiocytosis. We conducted an immunological study of patients carrying Glu349del and other mutations to elucidate the pathogenic mechanisms of dysgammaglobulinemia in patients with mutations in the XIAP gene. We performed an immunological study of 2 patients carrying the Glu349del mutation and 8 patients with other mutations. Flow cytometry showed that the percentage of memory B cells in patients with a mutation in XIAP was lower than that observed in the healthy controls. The patients with the Glu349del mutation had a lower percentage of memory B cells than those with other mutations. Ig production was reduced in patients with the Glu349del mutation. Increased susceptibility to apoptosis was observed in the patients with other mutations. Susceptibility to apoptosis was normal in patients with Glu349del. Microarray analysis indicated that expression of Ig-related genes was reduced in patients with the Glu349del mutation and that the pattern was different from that observed in the healthy controls or patients with other mutations in XIAP. Patients carrying the Glu349del mutation in the XIAP gene may have a clinically and immunologically distinct phenotype from patients with other XIAP mutations. The Glu349del mutation may be associated with dysgammaglobulinemia.
AbstractList Background: X-linked lymphoproliferative syndrome type 2 is a rare hereditary immunodeficiency caused by mutations in the XIAP gene. This immunodeficiency frequently results in hemophagocytic lymphohistiocytosis, although hypogammaglobulinemia and dysgammaglobulinemia are also common. Objective: We identified 17 patients from 12 Japanese families with mutations in XIAP. The Glu349del mutation was observed in 3 patients, each from a different family. Interestingly, these patients exhibited dysgammaglobulinemia but not hemophagocytic lymphohistiocytosis. We conducted an immunological study of patients carrying Glu349del and other mutations to elucidate the pathogenic mechanisms of dysgammaglobulinemia in patients with mutations in the XIAP gene. Patients and Methods: We performed an immunological study of 2 patients carrying the Glu349del mutation and 8 patients with other mutations. Results: Flow cytometry showed that the percentage of memory B cells in patients with a mutation in XIAP was lower than that observed in the healthy controls. The patients with the Glu349del mutation had a lower percentage of memory B cells than those with other mutations. Ig production was reduced in patients with the Glu349del mutation. Increased susceptibility to apoptosis was observed in the patients with other mutations. Susceptibility to apoptosis was normal in patients with Glu349del. Microarray analysis indicated that expression of Ig-related genes was reduced in patients with the Glu349del mutation and that the pattern was different from that observed in the healthy controls or patients with other mutations in XIAP. Conclusions: Patients carrying the Glu349del mutation in the XIAP gene may have a clinically and immunologically distinct phenotype from patients with other XIAP mutations. The Glu349del mutation may be associated with dysgammaglobulinemia.
BACKGROUNDX-linked lymphoproliferative syndrome type 2 is a rare hereditary immunodeficiency caused by mutations in the XIAP gene. This immunodeficiency frequently results in hemophagocytic lymphohistiocytosis, although hypogammaglobulinemia and dysgammaglobulinemia are also common.OBJECTIVEWe identified 17 patients from 12 Japanese families with mutations in XIAP. The Glu349del mutation was observed in 3 patients, each from a different family. Interestingly, these patients exhibited dysgammaglobulinemia but not hemophagocytic lymphohistiocytosis. We conducted an immunological study of patients carrying Glu349del and other mutations to elucidate the pathogenic mechanisms of dysgammaglobulinemia in patients with mutations in the XIAP gene.PATIENTS AND METHODSWe performed an immunological study of 2 patients carrying the Glu349del mutation and 8 patients with other mutations.RESULTSFlow cytometry showed that the percentage of memory B cells in patients with a mutation in XIAP was lower than that observed in the healthy controls. The patients with the Glu349del mutation had a lower percentage of memory B cells than those with other mutations. Ig production was reduced in patients with the Glu349del mutation. Increased susceptibility to apoptosis was observed in the patients with other mutations. Susceptibility to apoptosis was normal in patients with Glu349del. Microarray analysis indicated that expression of Ig-related genes was reduced in patients with the Glu349del mutation and that the pattern was different from that observed in the healthy controls or patients with other mutations in XIAP.CONCLUSIONSPatients carrying the Glu349del mutation in the XIAP gene may have a clinically and immunologically distinct phenotype from patients with other XIAP mutations. The Glu349del mutation may be associated with dysgammaglobulinemia.
X-linked lymphoproliferative syndrome type 2 is a rare hereditary immunodeficiency caused by mutations in the XIAP gene. This immunodeficiency frequently results in hemophagocytic lymphohistiocytosis, although hypogammaglobulinemia and dysgammaglobulinemia are also common. We identified 17 patients from 12 Japanese families with mutations in XIAP. The Glu349del mutation was observed in 3 patients, each from a different family. Interestingly, these patients exhibited dysgammaglobulinemia but not hemophagocytic lymphohistiocytosis. We conducted an immunological study of patients carrying Glu349del and other mutations to elucidate the pathogenic mechanisms of dysgammaglobulinemia in patients with mutations in the XIAP gene. We performed an immunological study of 2 patients carrying the Glu349del mutation and 8 patients with other mutations. Flow cytometry showed that the percentage of memory B cells in patients with a mutation in XIAP was lower than that observed in the healthy controls. The patients with the Glu349del mutation had a lower percentage of memory B cells than those with other mutations. Ig production was reduced in patients with the Glu349del mutation. Increased susceptibility to apoptosis was observed in the patients with other mutations. Susceptibility to apoptosis was normal in patients with Glu349del. Microarray analysis indicated that expression of Ig-related genes was reduced in patients with the Glu349del mutation and that the pattern was different from that observed in the healthy controls or patients with other mutations in XIAP. Patients carrying the Glu349del mutation in the XIAP gene may have a clinically and immunologically distinct phenotype from patients with other XIAP mutations. The Glu349del mutation may be associated with dysgammaglobulinemia.
Author Mori, M
Kanegane, H
Imai, K
Inoue, Y
Miyawaki, T
Kato, K
Saito, S
Imamura, T
Yang, X
Miyashita, R
Kato, F
Yamaide, A
Adachi, Y
Takasaki, I
Hara, J
Nishida, N
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Snippet X-linked lymphoproliferative syndrome type 2 is a rare hereditary immunodeficiency caused by mutations in the XIAP gene. This immunodeficiency frequently...
BACKGROUNDX-linked lymphoproliferative syndrome type 2 is a rare hereditary immunodeficiency caused by mutations in the XIAP gene. This immunodeficiency...
Background: X-linked lymphoproliferative syndrome type 2 is a rare hereditary immunodeficiency caused by mutations in the XIAP gene. This immunodeficiency...
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StartPage 205
SubjectTerms Adolescent
Apoptosis
Asian Continental Ancestry Group - genetics
B-Lymphocytes - immunology
Case-Control Studies
Cells, Cultured
Child
Child, Preschool
DNA Mutational Analysis
Dysgammaglobulinemia - diagnosis
Dysgammaglobulinemia - ethnology
Dysgammaglobulinemia - genetics
Dysgammaglobulinemia - immunology
Female
Flow Cytometry
Gene Expression Profiling - methods
Genetic Diseases, X-Linked - diagnosis
Genetic Diseases, X-Linked - ethnology
Genetic Diseases, X-Linked - genetics
Genetic Diseases, X-Linked - immunology
Genetic Predisposition to Disease
Humans
Immunologic Memory
Immunophenotyping - methods
Infant
Japan
Lymphoproliferative Disorders - diagnosis
Lymphoproliferative Disorders - ethnology
Lymphoproliferative Disorders - genetics
Lymphoproliferative Disorders - immunology
Male
Mutation
Oligonucleotide Array Sequence Analysis
Pedigree
Phenotype
T-Lymphocytes - immunology
T-Lymphocytes - pathology
X-Linked Inhibitor of Apoptosis Protein - genetics
Title Dysgammaglobulinemia Associated With Glu349del, a Hypomorphic XIAP Mutation
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