Abstract
Purpose: Postsynaptic density protein-95 (PSD-95), encoded by DLG4, regulates excitatory synaptic function in the brain. Here we present the clinical and genetic features of 53 patients (42 previously unpublished) with DLG4 variants. Methods: The clinical and genetic information were collected through GeneMatcher collaboration. All the individuals were investigated by local clinicians and the gene variants were identified by clinical exome/genome sequencing. Results: The clinical picture was predominated by early onset global developmental delay, intellectual disability, autism spectrum disorder, and attention deficit–hyperactivity disorder, all of which point to a brain disorder. Marfanoid habitus, which was previously suggested to be a characteristic feature of DLG4-related phenotypes, was found in only nine individuals and despite some overlapping features, a distinct facial dysmorphism could not be established. Of the 45 different DLG4 variants, 39 were predicted to lead to loss of protein function and the majority occurred de novo (four with unknown origin). The six missense variants identified were suggested to lead to structural or functional changes by protein modeling studies. Conclusion: The present study shows that clinical manifestations associated with DLG4 overlap with those found in other neurodevelopmental disorders of synaptic dysfunction; thus, we designate this group of disorders as DLG4-related synaptopathy. [Figure not available: see fulltext.]
Original language | English |
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Journal | Genetics in Medicine |
Volume | 23 |
Pages (from-to) | 888–899 |
ISSN | 1098-3600 |
DOIs | |
Publication status | Published - 2021 |
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DLG4-related synaptopathy : a new rare brain disorder. / Rodríguez-Palmero, Agustí; Boerrigter, Melissa Maria; Gómez-Andrés, David; Aldinger, Kimberly A.; Marcos-Alcalde, Íñigo; Popp, Bernt; Everman, David B.; Lovgren, Alysia Kern; Arpin, Stephanie; Bahrambeigi, Vahid; Beunders, Gea; Bisgaard, Anne Marie; Bjerregaard, V. A.; Bruel, Ange Line; Challman, Thomas D.; Cogné, Benjamin; Coubes, Christine; de Man, Stella A.; Denommé-Pichon, Anne Sophie; Dye, Thomas J.; Elmslie, Frances; Feuk, Lars; García-Miñaúr, Sixto; Gertler, Tracy; Giorgio, Elisa; Gruchy, Nicolas; Haack, Tobias B.; Haldeman-Englert, Chad R.; Haukanes, Bjørn Ivar; Hoyer, Juliane; Hurst, Anna C.E.; Isidor, Bertrand; Soller, Maria Johansson; Kushary, Sulagna; Kvarnung, Malin; Landau, Yuval E.; Leppig, Kathleen A.; Lindstrand, Anna; Kleinendorst, Lotte; MacKenzie, Alex; Mandrile, Giorgia; Mendelsohn, Bryce A.; Moghadasi, Setareh; Morton, Jenny E.; Moutton, Sebastien; Müller, Amelie J.; O’Leary, Melanie; Pacio-Míguez, Marta; Palomares-Bralo, Maria; Parikh, Sumit; Pfundt, Rolph; Pode-Shakked, Ben; Rauch, Anita; Repnikova, Elena; Revah-Politi, Anya; Ross, Meredith J.; Ruivenkamp, Claudia A.L.; Sarrazin, Elisabeth; Savatt, Juliann M.; Schlüter, Agatha; Schönewolf-Greulich, Bitten; Shad, Zohra; Shaw-Smith, Charles; Shieh, Joseph T.; Shohat, Motti; Spranger, Stephanie; Thiese, Heidi; Mau-Them, Frederic Tran; van Bon, Bregje; van de Burgt, Ineke; van de Laar, Ingrid M.B.H.; van Drie, Esmée; van Haelst, Mieke M.; van Ravenswaaij-Arts, Conny M.; Verdura, Edgard; Vitobello, Antonio; Waldmüller, Stephan; Whiting, Sharon; Zweier, Christiane; Prada, Carlos E.; de Vries, Bert B.A.; Dobyns, William B.; Reiter, Simone F.; Gómez-Puertas, Paulino; Pujol, Aurora; Tümer, Zeynep.
In: Genetics in Medicine, Vol. 23, 2021, p. 888–899.Research output: Contribution to journal › Journal article › Research › peer-review
}
TY - JOUR
T1 - DLG4-related synaptopathy
T2 - a new rare brain disorder
AU - Rodríguez-Palmero, Agustí
AU - Boerrigter, Melissa Maria
AU - Gómez-Andrés, David
AU - Aldinger, Kimberly A.
AU - Marcos-Alcalde, Íñigo
AU - Popp, Bernt
AU - Everman, David B.
AU - Lovgren, Alysia Kern
AU - Arpin, Stephanie
AU - Bahrambeigi, Vahid
AU - Beunders, Gea
AU - Bisgaard, Anne Marie
AU - Bjerregaard, V. A.
AU - Bruel, Ange Line
AU - Challman, Thomas D.
AU - Cogné, Benjamin
AU - Coubes, Christine
AU - de Man, Stella A.
AU - Denommé-Pichon, Anne Sophie
AU - Dye, Thomas J.
AU - Elmslie, Frances
AU - Feuk, Lars
AU - García-Miñaúr, Sixto
AU - Gertler, Tracy
AU - Giorgio, Elisa
AU - Gruchy, Nicolas
AU - Haack, Tobias B.
AU - Haldeman-Englert, Chad R.
AU - Haukanes, Bjørn Ivar
AU - Hoyer, Juliane
AU - Hurst, Anna C.E.
AU - Isidor, Bertrand
AU - Soller, Maria Johansson
AU - Kushary, Sulagna
AU - Kvarnung, Malin
AU - Landau, Yuval E.
AU - Leppig, Kathleen A.
AU - Lindstrand, Anna
AU - Kleinendorst, Lotte
AU - MacKenzie, Alex
AU - Mandrile, Giorgia
AU - Mendelsohn, Bryce A.
AU - Moghadasi, Setareh
AU - Morton, Jenny E.
AU - Moutton, Sebastien
AU - Müller, Amelie J.
AU - O’Leary, Melanie
AU - Pacio-Míguez, Marta
AU - Palomares-Bralo, Maria
AU - Parikh, Sumit
AU - Pfundt, Rolph
AU - Pode-Shakked, Ben
AU - Rauch, Anita
AU - Repnikova, Elena
AU - Revah-Politi, Anya
AU - Ross, Meredith J.
AU - Ruivenkamp, Claudia A.L.
AU - Sarrazin, Elisabeth
AU - Savatt, Juliann M.
AU - Schlüter, Agatha
AU - Schönewolf-Greulich, Bitten
AU - Shad, Zohra
AU - Shaw-Smith, Charles
AU - Shieh, Joseph T.
AU - Shohat, Motti
AU - Spranger, Stephanie
AU - Thiese, Heidi
AU - Mau-Them, Frederic Tran
AU - van Bon, Bregje
AU - van de Burgt, Ineke
AU - van de Laar, Ingrid M.B.H.
AU - van Drie, Esmée
AU - van Haelst, Mieke M.
AU - van Ravenswaaij-Arts, Conny M.
AU - Verdura, Edgard
AU - Vitobello, Antonio
AU - Waldmüller, Stephan
AU - Whiting, Sharon
AU - Zweier, Christiane
AU - Prada, Carlos E.
AU - de Vries, Bert B.A.
AU - Dobyns, William B.
AU - Reiter, Simone F.
AU - Gómez-Puertas, Paulino
AU - Pujol, Aurora
AU - Tümer, Zeynep
PY - 2021
Y1 - 2021
N2 - Purpose: Postsynaptic density protein-95 (PSD-95), encoded by DLG4, regulates excitatory synaptic function in the brain. Here we present the clinical and genetic features of 53 patients (42 previously unpublished) with DLG4 variants. Methods: The clinical and genetic information were collected through GeneMatcher collaboration. All the individuals were investigated by local clinicians and the gene variants were identified by clinical exome/genome sequencing. Results: The clinical picture was predominated by early onset global developmental delay, intellectual disability, autism spectrum disorder, and attention deficit–hyperactivity disorder, all of which point to a brain disorder. Marfanoid habitus, which was previously suggested to be a characteristic feature of DLG4-related phenotypes, was found in only nine individuals and despite some overlapping features, a distinct facial dysmorphism could not be established. Of the 45 different DLG4 variants, 39 were predicted to lead to loss of protein function and the majority occurred de novo (four with unknown origin). The six missense variants identified were suggested to lead to structural or functional changes by protein modeling studies. Conclusion: The present study shows that clinical manifestations associated with DLG4 overlap with those found in other neurodevelopmental disorders of synaptic dysfunction; thus, we designate this group of disorders as DLG4-related synaptopathy. [Figure not available: see fulltext.]
AB - Purpose: Postsynaptic density protein-95 (PSD-95), encoded by DLG4, regulates excitatory synaptic function in the brain. Here we present the clinical and genetic features of 53 patients (42 previously unpublished) with DLG4 variants. Methods: The clinical and genetic information were collected through GeneMatcher collaboration. All the individuals were investigated by local clinicians and the gene variants were identified by clinical exome/genome sequencing. Results: The clinical picture was predominated by early onset global developmental delay, intellectual disability, autism spectrum disorder, and attention deficit–hyperactivity disorder, all of which point to a brain disorder. Marfanoid habitus, which was previously suggested to be a characteristic feature of DLG4-related phenotypes, was found in only nine individuals and despite some overlapping features, a distinct facial dysmorphism could not be established. Of the 45 different DLG4 variants, 39 were predicted to lead to loss of protein function and the majority occurred de novo (four with unknown origin). The six missense variants identified were suggested to lead to structural or functional changes by protein modeling studies. Conclusion: The present study shows that clinical manifestations associated with DLG4 overlap with those found in other neurodevelopmental disorders of synaptic dysfunction; thus, we designate this group of disorders as DLG4-related synaptopathy. [Figure not available: see fulltext.]
U2 - 10.1038/s41436-020-01075-9
DO - 10.1038/s41436-020-01075-9
M3 - Journal article
C2 - 33597769
AN - SCOPUS:85101043691
VL - 23
SP - 888
EP - 899
JO - Genetics in Medicine
JF - Genetics in Medicine
SN - 1098-3600
ER -