TY - JOUR
T1 - A novel loss-of-function mutation in OTX2 in a patient with anophthalmia and isolated growth hormone deficiency
AU - Ashkenazi-Hoffnung, Liat
AU - Lebenthal, Yael
AU - Wyatt, Alexander W.
AU - Ragge, Nicola K.
AU - Dateki, Sumito
AU - Fukami, Maki
AU - Ogata, Tsutomu
AU - Phillip, Moshe
AU - Gat-Yablonski, Galia
PY - 2010/6
Y1 - 2010/6
N2 - Heterozygous mutations of the gene encoding transcription factor OTX2 were recently shown to be responsible for ocular as well as pituitary abnormalities. Here, we describe a patient with unilateral anophthalmia and short stature. Endocrine evaluation of the hypothalamic- pituitary axis revealed isolated growth hormone deficiency (IGHD) with small anterior pituitary gland, invisible stalk, ectopic posterior lobe, and right anophthalmia on brain magnetic resonance imaging. DNA was analyzed for mutations in the HESX1, SOX2, and OTX2 genes. Molecular analysis yielded a novel heterozygous OTX2 mutation (c.270A>T, p.R90S) within the homeodomain. Functional analysis revealed that the mutation inhibited both the DNA binding and transactivation activities of the protein. This novel loss-of-function mutation is associated with anophthalmia and IGHD in a patient of Sephardic Jewish descent. We recommend that patients with GH deficiency and ocular malformation in whom genetic analysis for classic transcription factor genes (PROP1, POU1F1, HESX1, and LHX4) failed to identify alterations should be checked for the presence of mutations in the OTX2 gene.
AB - Heterozygous mutations of the gene encoding transcription factor OTX2 were recently shown to be responsible for ocular as well as pituitary abnormalities. Here, we describe a patient with unilateral anophthalmia and short stature. Endocrine evaluation of the hypothalamic- pituitary axis revealed isolated growth hormone deficiency (IGHD) with small anterior pituitary gland, invisible stalk, ectopic posterior lobe, and right anophthalmia on brain magnetic resonance imaging. DNA was analyzed for mutations in the HESX1, SOX2, and OTX2 genes. Molecular analysis yielded a novel heterozygous OTX2 mutation (c.270A>T, p.R90S) within the homeodomain. Functional analysis revealed that the mutation inhibited both the DNA binding and transactivation activities of the protein. This novel loss-of-function mutation is associated with anophthalmia and IGHD in a patient of Sephardic Jewish descent. We recommend that patients with GH deficiency and ocular malformation in whom genetic analysis for classic transcription factor genes (PROP1, POU1F1, HESX1, and LHX4) failed to identify alterations should be checked for the presence of mutations in the OTX2 gene.
UR - http://www.scopus.com/inward/record.url?scp=77953402842&partnerID=8YFLogxK
U2 - 10.1007/s00439-010-0820-9
DO - 10.1007/s00439-010-0820-9
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C2 - 20396904
AN - SCOPUS:77953402842
SN - 0340-6717
VL - 127
SP - 721
EP - 729
JO - Human Genetics
JF - Human Genetics
IS - 6
ER -