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Role of Snord116 in pituitary growth hormone deficiency of Prader-Willi syndrome
Gabriel F. Batzli, Kaiying Guo, Fahrünisa Meryem Betül Erol, Charles A. LeDuc, Lisa C. Burnett, Rudolph L. Leibel, Yiying Zhang
Gabriel F. Batzli, Kaiying Guo, Fahrünisa Meryem Betül Erol, Charles A. LeDuc, Lisa C. Burnett, Rudolph L. Leibel, Yiying Zhang
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Research Article Development Endocrinology Genetics

Role of Snord116 in pituitary growth hormone deficiency of Prader-Willi syndrome

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Abstract

Prader-Willi syndrome (PWS) is a complex genetic disorder resulting from the deficiency of several maternally imprinted genes, including SNORD116, in the 15q11-q13 region. Loss of Snord116 in mice recapitulates some of the most salient clinical features of PWS, including growth hormone (GH) deficiency and hypogonadism. This study explored the impact of Snord116 deficiency on early postnatal pituitary development and growth in Snord116-KO mice. Snord116 was found to be expressed in both the anterior and posterior pituitary. Pituitary transcriptomes of Snord116-KO and WT mice at 2 developmental stages, P0 and 4 weeks of age, were interrogated and related to ex vivo analyses of GH secretion in the pituitaries of 5-week-old mice. Significant differences in pituitary transcriptomes were detected between Snord116-KO and WT mice at 4 weeks of age but not at P0. The differentially expressed genes and affected molecular pathways play important roles in regulating embryonic and postnatal pituitary development. Our results suggested that PWS GH deficiency was mainly due to pituitary hypoplasia and decreased GH production but not to reduced GH secretory function per se, implicating Snord116 in the specific molecular/cellular pathways that account for impaired postnatal pituitary development and GH deficiency in PWS.

Authors

Gabriel F. Batzli, Kaiying Guo, Fahrünisa Meryem Betül Erol, Charles A. LeDuc, Lisa C. Burnett, Rudolph L. Leibel, Yiying Zhang

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Figure 1

Snord116-KO mice present early postnatal growth retardation.

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Snord116-KO mice present early postnatal growth retardation.
(A and B) ...
(A and B) Body weight of male (A) and female (B) cohorts at P5. Genotype effect was significant in both males (P < 0.01) and females (P < 0.001) by 2-way ANOVA with genotype and litter size as grouping variables (A and B). (C and D) Body weight of male (C, n = 11–13) and female (D, n = 8–15) pups pooled from litters shown in A and B, respectively. (E and F) Body weight and naso-anal length (NAL) of 5-week-old male mice (n = 8). (G and H) Body weight and NAL of 5-week-old female mice (n = 6–7). Data are expressed as mean ± SEM; *P < 0.05, **P < 0.01, ***P < 0.001, and ****P < 0.0001; KO versus WT by 2-tailed t test (C–H).

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