Evidence for common mechanisms of pathology between SHANK3 and other genes of Phelan-McDermid syndrome

被引:7
作者
Mitz, Andrew R. [1 ,4 ]
Boccuto, Luigi [2 ]
Thurm, Audrey [3 ]
机构
[1] NIMH, Lab Neuropsychol, NIH, Bethesda, MD USA
[2] Clemson Univ, Coll Behav Social & Hlth Sci, Sch Nursing, Healthcare Genet & Genom Interdisciplinary Doctora, Clemson, SC USA
[3] NIMH, Neurodev & Behav Phenotyping Serv, NIH, Bethesda, MD USA
[4] NIMH, Lab Neuropsychol, NIH, Bethesda, MD 20892 USA
基金
美国国家卫生研究院;
关键词
gene expression; inflammation; neurodevelopment; Phelan-McDermid syndrome; synaptic function; INTERSTITIAL; 22Q13; DELETIONS; PLANAR POLARITY; HAIR-CELLS; BRD1; GENE; CELSR1; SCHIZOPHRENIA; ABNORMALITIES; MIGRATION; PLEXIN-B2; DEFICITS;
D O I
10.1111/cge.14503
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Chromosome 22q13.3 deletion (Phelan-McDermid) syndrome (PMS, OMIM 606232) is a rare genetic condition that impacts neurodevelopment. PMS most commonly results from heterozygous contiguous gene deletions that include the SHANK3 gene or likely pathogenic variants of SHANK3 (PMS-SHANK3 related). Rarely, chromosomal rearrangements that spare SHANK3 share the same general phenotype (PMS-SHANK3 unrelated). Very recent human and model system studies of genes that likely contribute to the PMS phenotype point to overlap in gene functions associated with neurodevelopment, synaptic formation, stress/inflammation and regulation of gene expression. In this review of recent findings, we describe the functional overlaps between SHANK3 and six partner genes of 22q13.3 (PLXNB2, BRD1, CELSR1, PHF21B, SULT4A1, and TCF20), which suggest a model that explains the commonality between PMS-SHANK3 related and PMS-SHANK3 unrelated classes of PMS. These genes are likely not the only contributors to neurodevelopmental impairments in the region, but they are the best documented to date. The review provides evidence for the overlapping and likely synergistic contributions of these genes to the PMS phenotype.
引用
收藏
页码:459 / 469
页数:11
相关论文
共 94 条
[1]   Phf21b imprints the spatiotemporal epigenetic switch essential for neural stem cell differentiation [J].
Basu, Amitava ;
Mestres, Ivan ;
Sahu, Sanjeeb Kumar ;
Tiwari, Neha ;
Khongwir, Bimola ;
Baumgart, Jan ;
Singh, Aditi ;
Calegari, Federico ;
Tiwari, Vijay K. .
GENES & DEVELOPMENT, 2020, 34 (17-18) :1190-1209
[2]   Subacute Neuropsychiatric Syndrome in Girls With SHANK3 Mutations Responds to Immunomodulation [J].
Bey, Alexandra L. ;
Gorman, Mark P. ;
Gallentine, William ;
Kohlenberg, Teresa M. ;
Frankovich, Jennifer ;
Jiang, Yong-hui ;
Van Haren, Keith .
PEDIATRICS, 2020, 145 (02)
[3]   Disruption of the ProSAP2 gene in a t(12;22)(q24.1;q13.3) is associated with the 22q13.3 deletion syndrome [J].
Bonaglia, MC ;
Giorda, R ;
Borgatti, R ;
Felisari, G ;
Gagliardi, C ;
Selicorni, A ;
Zuffardi, O .
AMERICAN JOURNAL OF HUMAN GENETICS, 2001, 69 (02) :261-268
[4]   Large 22q13.3 deletions perturb peripheral transcriptomic and metabolomic profiles in Phelan-McDermid syndrome [J].
Breen, Michael S. ;
Fan, Xuanjia ;
Levy, Tess ;
Pollak, Rebecca M. ;
Collins, Brett ;
Osman, Aya ;
Tocheva, Anna S. ;
Sahin, Mustafa ;
Berry-Kravis, Elizabeth ;
Soorya, Latha ;
Thurm, Audrey ;
Powell, Craig M. ;
Bernstein, Jonathan A. ;
Kolevzon, Alexander ;
Buxbaum, Joseph D. .
HUMAN GENETICS AND GENOMICS ADVANCES, 2023, 4 (01)
[5]   Planar cell polarity genes Celsr1 and Vangl2 are necessary for kidney growth, differentiation, and rostrocaudal patterning [J].
Brzoska, Hortensja L. ;
d'Esposito, Angela M. ;
Kolatsi-Joannou, Maria ;
Patel, Vishal ;
Igarashi, Peter ;
Lei, Yunping ;
Finnell, Richard H. ;
Lythgoe, Mark F. ;
Woolf, Adrian S. ;
Papakrivopoulou, Eugenia ;
Long, David A. .
KIDNEY INTERNATIONAL, 2016, 90 (06) :1274-1284
[6]   Characterisation of the clinical phenotype in Phelan-McDermid syndrome [J].
Burdeus-Olavarrieta, Monica ;
San Jose-Caceres, Antonia ;
Garcia-Alcon, Alicia ;
Gonzalez-Penas, Javier ;
Hernandez-Jusdado, Patricia ;
Parellada-Redondo, Mara .
JOURNAL OF NEURODEVELOPMENTAL DISORDERS, 2021, 13 (01)
[7]   A genomic mutational constraint map using variation in 76,156 human genomes( vol 625 , pg 92 , 2024) [J].
Chen, Siwei ;
Francioli, Laurent C. ;
Goodrich, Julia K. ;
Collins, Ryan L. ;
Kanai, Masahiro ;
Wang, Qingbo ;
Alfoeldi, Jessica ;
Watts, Nicholas A. ;
Vittal, Christopher ;
Gauthier, Laura D. ;
Poterba, Timothy ;
Wilson, Michael W. ;
Tarasova, Yekaterina ;
Phu, William ;
Grant, Riley ;
Yohannes, Mary T. ;
Koenig, Zan ;
Farjoun, Yossi ;
Banks, Eric ;
Donnelly, Stacey ;
Gabriel, Stacey ;
Gupta, Namrata ;
Ferriera, Steven ;
Tolonen, Charlotte ;
Novod, Sam ;
Bergelson, Louis ;
Roazen, David ;
Ruano-Rubio, Valentin ;
Covarrubias, Miguel ;
Llanwarne, Christopher ;
Petrillo, Nikelle ;
Wade, Gordon ;
Jeandet, Thibault ;
Munshi, Ruchi ;
Tibbetts, Kathleen ;
Abreu, Maria ;
Aguilar Salinas, Carlos A. ;
Ahmad, Tariq ;
Albert, Christine M. ;
Ardissino, Diego ;
Armean, Irina M. ;
Atkinson, Elizabeth G. ;
Atzmon, Gil ;
Barnard, John ;
Baxter, Samantha M. ;
Beaugerie, Laurent ;
Benjamin, Emelia J. ;
Benjamin, David ;
Boehnke, Michael ;
Bonnycastle, Lori L. .
NATURE, 2024, 626 (7997) :E1-E1
[8]   CELSR1 variants are associated with partial epilepsy of childhood [J].
Chen, Zheng ;
Luo, Sheng ;
Liu, Zhi-Gang ;
Deng, Yan-Chun ;
He, Su-Li ;
Liu, Xiao-Rong ;
Yi, Yong-Hong ;
Wang, Jie ;
Gao, Liang-Di ;
Li, Bing-Mei ;
Wu, Zhi-Jun ;
Ye, Zi-Long ;
Liang, De-Hai ;
Bian, Wen-Jun ;
Liao, Wei-Ping .
AMERICAN JOURNAL OF MEDICAL GENETICS PART B-NEUROPSYCHIATRIC GENETICS, 2022, 189 (7-8) :247-256
[9]  
Chin EW., 2022, JCI INSIGHT, V7, P7
[10]   The Schizophrenia and Bipolar Disorder associated BRD1 gene is regulated upon chronic restraint stress [J].
Christensen, Jane H. ;
Elfving, Betina ;
Muller, Heidi K. ;
Fryland, Tue ;
Nyegaard, Mette ;
Corydon, Thomas J. ;
Nielsen, Anders Lade ;
Mors, Ole ;
Wegener, Gregers ;
Borglum, Anders D. .
EUROPEAN NEUROPSYCHOPHARMACOLOGY, 2012, 22 (09) :651-656