De novo variants in FRYL are associated with developmental delay, intellectual disability, and dysmorphic features

单倍率不足 生物 遗传学 错义突变 损失函数 等位基因 智力残疾 孟德尔遗传 突变 基因 表型
作者
Xueyang Pan,Alice Tao,Shenzhao Lu,Mingfang Ma,Shabab B. Hannan,Rachel Slaugh,Sarah Drewes Williams,Lauren O’Grady,Oguz Kanca,Richard Person,Melissa T. Carter,Konrad Platzer,Franziska Schnabel,Rami Abou Jamra,Amy E. Roberts,Jane W. Newburger,Anya Revah‐Politi,Jorge L. Granadillo,Alexander P.A. Stegmann,Margje Sinnema,Andrea Accogli,Karl T. Weber,Valeria Capra,Lina Ghaloul‐Gonzalez,Martina Brueckner,Marleen Simon,David A. Sweetser,Kevin E. Glinton,Susan E. Kirk,Michael F. Wangler,Shinya Yamamoto,Wendy K. Chung,Hugo J. Bellen,Lindsay C. Burrage,Jason D. Heaney,Seon‐Young Kim,Denise G. Lanza,Zhandong Liu,Dongxue Mao,Aleksander Milosavljevic,Sandesh C.S. Nagamani,Jennifer E. Posey,Uma Ramamurthy,Vivek Ramanathan,Jeffrey Rogers,Jill A. Rosenfeld,Matthew E. Roth,Ramin Zahedi Darshoori
出处
期刊:American Journal of Human Genetics [Elsevier BV]
标识
DOI:10.1016/j.ajhg.2024.02.007
摘要

Summary

FRY-like transcription coactivator (FRYL) belongs to a Furry protein family that is evolutionarily conserved from yeast to humans. The functions of FRYL in mammals are largely unknown, and variants in FRYL have not previously been associated with a Mendelian disease. Here, we report fourteen individuals with heterozygous variants in FRYL who present with developmental delay, intellectual disability, dysmorphic features, and other congenital anomalies in multiple systems. The variants are confirmed de novo in all individuals except one. Human genetic data suggest that FRYL is intolerant to loss of function (LoF). We find that the fly FRYL ortholog, furry (fry), is expressed in multiple tissues, including the central nervous system where it is present in neurons but not in glia. Homozygous fry LoF mutation is lethal at various developmental stages, and loss of fry in mutant clones causes defects in wings and compound eyes. We next modeled four out of the five missense variants found in affected individuals using fry knockin alleles. One variant behaves as a severe LoF variant, whereas two others behave as partial LoF variants. One variant does not cause any observable defect in flies, and the corresponding human variant is not confirmed to be de novo, suggesting that this is a variant of uncertain significance. In summary, our findings support that fry is required for proper development in flies and that the LoF variants in FRYL cause a dominant disorder with developmental and neurological symptoms due to haploinsufficiency.
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