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In utero rescue of neurological dysfunction in a mouse model of Wiedemann-Steiner syndrome
Tinna Reynisdottir, Kimberley J. Anderson, Katrin Möller, Stefán Pétursson, Andrew Brinn, Katheryn P. Franklin, Juan Ouyang, Asbjorg O. Snorradottir, Cathleen M. Lutz, Aamir R. Zuberi, Valerie B. DeLeon, Hans T. Bjornsson
Tinna Reynisdottir, Kimberley J. Anderson, Katrin Möller, Stefán Pétursson, Andrew Brinn, Katheryn P. Franklin, Juan Ouyang, Asbjorg O. Snorradottir, Cathleen M. Lutz, Aamir R. Zuberi, Valerie B. DeLeon, Hans T. Bjornsson
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Research Article Genetics Neuroscience

In utero rescue of neurological dysfunction in a mouse model of Wiedemann-Steiner syndrome

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Abstract

Wiedemann-Steiner syndrome (WDSTS) is a rare genetic cause of intellectual disability that is primarily caused by heterozygous loss-of-function variants in the gene encoding the histone lysine methyltransferase 2A (KMT2A). Prior studies have shown successful postnatal amelioration of disease phenotypes for Rett, Rubinstein-Taybi, and Kabuki syndromes, which are related Mendelian disorders of the epigenetic machinery. To explore whether the neurological phenotype in WDSTS is treatable in utero, we created a mouse model carrying a loss-of-function variant placed between 2 loxP sites. Kmt2a+/LSL mice demonstrated core features of WDSTS including growth retardation, craniofacial abnormalities, and hypertrichosis as well as hippocampal memory defects. The neurological phenotypes were rescued upon restoration of KMT2A in utero following breeding to a nestin-Cre. Together, our data provide a mouse model to explore the potential therapeutic window in WDSTS. Our work suggests that WDSTS has a window of opportunity extending at least until the midpoint of in utero development, making WDSTS an ideal candidate for future therapeutic strategies.

Authors

Tinna Reynisdottir, Kimberley J. Anderson, Katrin Möller, Stefán Pétursson, Andrew Brinn, Katheryn P. Franklin, Juan Ouyang, Asbjorg O. Snorradottir, Cathleen M. Lutz, Aamir R. Zuberi, Valerie B. DeLeon, Hans T. Bjornsson

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Figure 2

Behavioral abnormalities observed in the Kmt2a+/LSL mouse model.

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Behavioral abnormalities observed in the Kmt2a+/LSL mouse model.
(A) Sur...
(A) Surface righting time in Kmt2a+/LSL mice compared with their WT littermates (P6, n = 27 Kmt2a+/+ and n = 14 Kmt2a+/LSL). (B) Hindlimb suspension time in hypotonia tests for both genotypes (P6, n = 29 Kmt2a+/+ n = 15, Kmt2a+/LSL). (C) Percentage of isolation-induced USV whistle calls for the Kmt2a+/+ and Kmt2a+/LSL pups (P7, n = 5 Kmt2a+/+, n = 4, Kmt2a+/LSL). (D) Comparison of total arm entries in a Y-maze between adult Kmt2a+/LSL mice and their WT littermates (8- to 10-week-old, n = 24 for Kmt2a+/+, n = 18 for Kmt2a+/LSL). (E) Comparison of the percentage of spontaneous alternations between Kmt2a+/+ and Kmt2a+/LSL mice (8- to 10-week-old, n = 24 for Kmt2a+/+, n = 18 for Kmt2a+/LSL). All significance levels were tested with an unpaired t test. *P < 0.05, **P < 0.01.

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ISSN 2379-3708

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