An in vivo functional assay to characterize human STAT5B genetic variants during zebrafish development

Author:

Landi Estefanía1,Karabatas Liliana1,Rodríguez Gomez Tomás1ORCID,Salatino Lucía2,Scaglia Paula1,Ramírez Laura1,Keselman Ana1,Braslavsky Débora1,Sanguineti Nora1,Pennisi Patricia1,Rey Rodolfo A1ORCID,Bergadá Ignacio1,Jasper Héctor G1,Domené Horacio M1,Plazas Paola V2,Domené Sabina1ORCID

Affiliation:

1. Centro de Investigaciones Endocrinológicas “Dr. César Bergadá” (CEDIE), CONICET–FEI–División de Endocrinología, Hospital de Niños Ricardo Gutiérrez Buenos Aires C1425EFD, Argentina

2. Instituto de Farmacología, Facultad de Medicina, Universidad de Buenos Aires (UBA) , Paraguay 2155, C1121ABG, Buenos Aires , Argentina

Abstract

Abstract Growth hormone (GH) binding to GH receptor activates janus kinase 2 (JAK2)-signal transducer and activator of transcription 5b (STAT5b) pathway, which stimulates transcription of insulin-like growth factor-1 (IGF1), insulin-like growth factor binding protein 3 (IGFBP3) and insulin-like growth factor acid-labile subunit (IGFALS). Although STAT5B deficiency was established as an autosomal recessive disorder, heterozygous dominant-negative STAT5B variants have been reported in patients with less severe growth deficit and milder immune dysfunction. We developed an in vivo functional assay in zebrafish to characterize the pathogenicity of three human STAT5B variants (p.Ala630Pro, p.Gln474Arg and p.Lys632Asn). Overexpression of human wild-type (WT) STAT5B mRNA and its variants led to a significant reduction of body length together with developmental malformations in zebrafish embryos. Overexpression of p.Ala630Pro, p.Gln474Arg or p.Lys632Asn led to an increased number of embryos with pericardial edema, cyclopia and bent spine compared with WT STAT5B. Although co-injection of WT and p.Gln474Arg and WT and p.Lys632Asn STAT5B mRNA in zebrafish embryos partially or fully rescues the length and the developmental malformations in zebrafish embryos, co-injection of WT and p.Ala630Pro STAT5B mRNA leads to a greater number of embryos with developmental malformations and a reduction in body length of these embryos. These results suggest that these variants could interfere with endogenous stat5.1 signaling through different mechanisms. In situ hybridization of zebrafish embryos overexpressing p.Gln474Arg and p.Lys632Asn STAT5B mRNA shows a reduction in igf1 expression. In conclusion, our study reveals the pathogenicity of the STAT5B variants studied.

Funder

Proyecto Unidad Ejecutora

Agencia Nacional de Promoción Científica y Tecnológica

Préstamo BID PICT 2018

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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