TY - JOUR
T1 - Somatic mosaicism underlies X-linked acrogigantism syndrome in sporadic male subjects
AU - Daly, Adrian F.
AU - Yuan, Bo
AU - Fina, Frederic
AU - Caberg, Jean Hubert
AU - Trivellin, Giampaolo
AU - Rostomyan, Liliya
AU - De Herder, Wouter W.
AU - Naves, Luciana A.
AU - Metzger, Daniel
AU - Cuny, Thomas
AU - Rabl, Wolfgang
AU - Shah, Nalini
AU - Jaffrain-Rea, Marie Lise
AU - Chiara Zatelli, Maria
AU - Faucz, Fabio R.
AU - Castermans, Emilie
AU - Nanni-Metellus, Isabelle
AU - Lodish, Maya
AU - Muhammad, Ammar
AU - Palmeira, Leonor
AU - Potorac, Iulia
AU - Mantovani, Giovanna
AU - Neggers, Sebastian J.
AU - Klein, Marc
AU - Barlier, Anne
AU - Liu, Pengfei
AU - Ouafik, L'houcine
AU - Bours, Vincent
AU - Lupski, James R.
AU - Stratakis, Constantine A.
AU - Beckers, Albert
N1 - Publisher Copyright:
© 2016 Society for Endocrinology.
PY - 2016/4
Y1 - 2016/4
N2 - Somatic mosaicism has been implicated as a causative mechanism in a number of genetic and genomic disorders. X-linked acrogigantism (XLAG)syndrome is a recently characterized genomic form of pediatric gigantism due to aggressive pituitary tumors that is caused by submicroscopic chromosome Xq26.3 duplications that include GPR101. We studied XLAG syndrome patients (n = 18)to determine if somatic mosaicism contributed to the genomic pathophysiology. Eighteen subjects with XLAG syndrome caused by Xq26.3 duplications were identified using high-definition array comparative genomic hybridization (HD-aCGH). We noted that males with XLAG had a decreased log2 ratio (LR)compared with expected values, suggesting potential mosaicism, whereas females showed no such decrease. Compared with familial male XLAG cases, sporadic males had more marked evidence for mosaicism, with levels of Xq26.3 duplication between 16.1 and 53.8% These characteristics were replicated using a novel, personalized breakpoint junction-specific quantification droplet digital polymerase chain reaction (ddPCR)technique. Using a separate ddPCR technique, we studied the feasibility of identifying XLAG syndrome cases in a distinct patient population of 64 unrelated subjects with acromegaly/gigantism, and identified one female gigantism patient who had had increased copy number variation (CNV)threshold for GPR101 that was subsequently diagnosed as having XLAG syndrome on HD-aCGH. Employing a combination of HD-aCGH and novel ddPCR approaches, we have demonstrated, for the first time, that XLAG syndrome can be caused by variable degrees of somatic mosaicism for duplications at chromosome Xq26.3. Somatic mosaicism was shown to occur in sporadic males but not in females with XLAG syndrome, although the clinical characteristics of the disease were similarly severe in both sexes.
AB - Somatic mosaicism has been implicated as a causative mechanism in a number of genetic and genomic disorders. X-linked acrogigantism (XLAG)syndrome is a recently characterized genomic form of pediatric gigantism due to aggressive pituitary tumors that is caused by submicroscopic chromosome Xq26.3 duplications that include GPR101. We studied XLAG syndrome patients (n = 18)to determine if somatic mosaicism contributed to the genomic pathophysiology. Eighteen subjects with XLAG syndrome caused by Xq26.3 duplications were identified using high-definition array comparative genomic hybridization (HD-aCGH). We noted that males with XLAG had a decreased log2 ratio (LR)compared with expected values, suggesting potential mosaicism, whereas females showed no such decrease. Compared with familial male XLAG cases, sporadic males had more marked evidence for mosaicism, with levels of Xq26.3 duplication between 16.1 and 53.8% These characteristics were replicated using a novel, personalized breakpoint junction-specific quantification droplet digital polymerase chain reaction (ddPCR)technique. Using a separate ddPCR technique, we studied the feasibility of identifying XLAG syndrome cases in a distinct patient population of 64 unrelated subjects with acromegaly/gigantism, and identified one female gigantism patient who had had increased copy number variation (CNV)threshold for GPR101 that was subsequently diagnosed as having XLAG syndrome on HD-aCGH. Employing a combination of HD-aCGH and novel ddPCR approaches, we have demonstrated, for the first time, that XLAG syndrome can be caused by variable degrees of somatic mosaicism for duplications at chromosome Xq26.3. Somatic mosaicism was shown to occur in sporadic males but not in females with XLAG syndrome, although the clinical characteristics of the disease were similarly severe in both sexes.
KW - Gigantism
KW - Molecular genetics
KW - Mosaicism
KW - Pituitary
KW - X-LAG syndrome
UR - http://www.scopus.com/inward/record.url?scp=84976902872&partnerID=8YFLogxK
U2 - 10.1530/ERC-16-0082
DO - 10.1530/ERC-16-0082
M3 - Article
C2 - 26935837
AN - SCOPUS:84976902872
SN - 1351-0088
VL - 23
SP - 221
EP - 233
JO - Endocrine-Related Cancer
JF - Endocrine-Related Cancer
IS - 4
ER -