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PMID: 10441342 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Point mutations throughout the GLI3 gene cause Greig cephalopolysyndactyly syndrome.

Human molecular genetics ·Vol. 8 ·No. 9 ·1999-09-00 ·Pages 1769-77

Kalff-Suske M, Wild A, Topp J, Wessling M, Jacobsen EM, Bornholdt D, Engel H, Heuer H, Aalfs CM, Ausems MG, Barone R, Herzog A, Heutink P, Homfray T, Gillessen-Kaesbach G, König R, Kunze J, Meinecke P, Müller D, Rizzo R, Strenge S, Superti-Furga A, Grzeschik KH

Abstract

Greig cephalopolysyndactyly syndrome, characterized by craniofacial and limb anomalies (GCPS; MIM 175700), previously has been demonstrated to be associated with translocations as well as point mutations affecting one allele of the zinc finger gene GLI3. In addition to GCPS, Pallister-Hall syndrome (PHS; MIM 146510) and post-axial polydactyly type A (PAP-A; MIM 174200), two other disorders of human development, are caused by GLI3 mutations. In order to gain more insight into the mutational spectrum associated with a single phenotype, we report here the extension of the GLI3 mutation analysis to 24 new GCPS cases. We report the identification of 15 novel mutations present in one of the patient's GLI3 alleles. The mutations map throughout the coding gene regions. The majority are truncating mutations (nine of 15) that engender prematurely terminated protein products mostly but not exclusively N-terminally to or within the central region encoding the DNA-binding domain. Two missense and two splicing mutations mapping within the zinc finger motifs presumably also interfere with DNA binding. The five mutations identified within the protein regions C-terminal to the zinc fingers putatively affect additional functional properties of GLI3. In cell transfection experiments using fusions of the DNA-binding domain of yeast GAL4 to different segments of GLI3, transactivating capacity was assigned to two adjacent independent domains (TA(1)and TA(2)) in the C-terminal third of GLI3. Since these are the only functional domains affected by three C-terminally truncating mutations, we postulate that GCPS may be due either to haploinsufficiency resulting from the complete loss of one gene copy or to functional haploinsufficiency related to compromised properties of this transcription factor such as DNA binding and transactivation.

MeSH Terms
Animals Craniofacial Abnormalities/genetics DNA Mutational Analysis DNA-Binding Proteins/genetics Drosophila Humans Kruppel-Like Transcription Factors Limb Deformities, Congenital/genetics Mutation Nerve Tissue Proteins Recombinant Fusion Proteins Repressor Proteins Sequence Deletion Syndrome Transcription Factors/genetics Transcriptional Activation Transfection Tumor Cells, Cultured Xenopus Proteins Zinc Finger Protein Gli3 Zinc Fingers/genetics
Chemicals
DNA-Binding Proteins GLI3 protein, Xenopus GLI3 protein, human Gli3 protein, mouse Kruppel-Like Transcription Factors Nerve Tissue Proteins Recombinant Fusion Proteins Repressor Proteins Transcription Factors Xenopus Proteins Zinc Finger Protein Gli3
Authors & Affiliations
23 authors, click to expand affiliations / ORCID
Kalff-Suske M
Medizinisches Zentrum für Humangenetik, Philipps-Universität Marburg, D-35037 Marburg, Germany.
Wild A
Topp J
Wessling M
Jacobsen E M
Bornholdt D
Engel H
Heuer H
Aalfs C M
Ausems M G
Barone R
Herzog A
Heutink P
Homfray T
Gillessen-Kaesbach G
König R
Kunze J
Meinecke P
Müller D
Rizzo R
Strenge S
Superti-Furga A
Grzeschik K H
Article Info
Journal
Human molecular genetics
Abbr.
Hum Mol Genet
ISSN
0964-6906
Published
1999-09-00
Pages
1769-77
Language
English
Region
England
NLM ID
9208958
Subset
IM
Databases
GENBANK
AJ250408
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