4.1 Article

Phelan McDermid Syndrome: From Genetic Discoveries to Animal Models and Treatment

期刊

JOURNAL OF CHILD NEUROLOGY
卷 30, 期 14, 页码 1861-1870

出版社

SAGE PUBLICATIONS INC
DOI: 10.1177/0883073815600872

关键词

Phelan McDermid syndrome; SHANK3; postsynaptic density; autism spectrum disorder; animal models

资金

  1. Seaver Foundation
  2. National Institute of Mental Health [R01 MH101584, R01 MH093725, R34 MH100276]

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Phelan-McDermid syndrome or 22q13.3 deletion syndrome is a rare neurodevelopmental disorder characterized by generalized developmental delay, intellectual disability, absent or delayed speech, seizures, autism spectrum disorder, neonatal hypotonia, physical dysmorphic features, and recurrent medical comorbidities. Individuals with Phelan-McDermid syndrome have terminal deletions of the chromosomal region 22q13.3 encompassing SHANK3, a gene encoding a structural component of excitatory synapses indispensable for proper synaptogenesis and neuronal physiology, or point mutations within the gene. Here, we review the clinical aspects of the syndrome and the genetic findings shedding light onto the underlying etiology. We also provide an overview on the evidence from genetic studies and mouse models that supports SHANK3 haploinsufficiency as a major contributor of the neurobehavioral manifestations of Phelan-McDermid syndrome. Finally, we discuss how all these discoveries are uncovering the pathophysiology of Phelan-McDermid syndrome and are being translated into clinical trials for novel therapeutics ameliorating the core symptoms of the disorder.

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Article Genetics & Heredity

Large 22q13.3 deletions perturb peripheral transcriptomic and metabolomic profiles in Phelan-McDermid syndrome

Michael S. Breen, Xuanjia Fan, Tess Levy, Rebecca M. Pollak, Brett Collins, Aya Osman, Anna S. Tocheva, Mustafa Sahin, Elizabeth Berry-Kravis, Latha Soorya, Audrey Thurm, Craig M. Powell, Jonathan A. Bernstein, Alexander Kolevzon, Joseph D. Buxbaum

Summary: By analyzing the peripheral blood transcriptome and serum metabolome of individuals with Phelan-McDermid syndrome (PMS), researchers discovered gene expression profiles closely related to 22q13.3 deletion size. Additionally, they found underexpressed genes in PMS participants with class II mutations, not linked to 22q13.3, which were associated with glycosphingolipid metabolism, NCAM1 interactions, and cytotoxic natural killer (NK) immune cell signatures. This study provides new insights into the molecular perturbations and potential therapeutic targets for PMS.

HUMAN GENETICS AND GENOMICS ADVANCES (2023)

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