Activating RAC1 variants in the switch II region cause a developmental syndrome and alter neuronal morphology

被引:16
作者
Banka, Siddharth [1 ,2 ]
Bennington, Abigail [3 ]
Baker, Martin J. [4 ,5 ]
Rijckmans, Ellen [6 ,7 ]
Clemente, Giuliana D. [3 ,8 ]
Ansor, Nurhuda Mohamad [3 ,9 ]
Sito, Hilary [3 ]
Prasad, Pritha [3 ]
Anyane-Yeboa, Kwame [10 ]
Badalato, Lauren [11 ]
Dimitrov, Boyan [12 ]
Fitzpatrick, David [13 ]
Hurst, Anna C. E. [14 ]
Jansen, Anna C. [7 ,15 ]
Kelly, Melissa A. [16 ]
Krantz, Ian [17 ]
Rieubland, Claudine [18 ]
Ross, Meredith [10 ]
Rudy, Natasha L. [14 ]
Sanz, Javier [18 ]
Stouffs, Katrien [7 ,12 ]
Xu, Zhuo Luan [17 ]
Malliri, Angeliki [5 ]
Kazanietz, Marcelo G. [4 ]
Millard, Tom H. [3 ]
机构
[1] Univ Manchester, Fac Biol Med & Hlth, Sch Biol Sci, Div Evolut Infect & Genom, Manchester M13 9PL, Lancs, England
[2] Univ Manchester, St Marys Hosp, Manchester Acad Hlth Sci Ctr, Manchester Ctr Genom Med, Oxford Rd, Manchester M13 9WL, Lancs, England
[3] Univ Manchester, Fac Biol Med & Hlth, Div Dev Biol & Med, Manchester M13 9PL, Lancs, England
[4] Univ Penn, Perelman Sch Med, Dept Syst Pharmacol & Translat Therapeut, Philadelphia, PA 19104 USA
[5] Univ Manchester, Canc Res UK Manchester Inst, Cell Signalling Grp, Alderley Pk, Macclesfield SK10 4TG, Cheshire, England
[6] UZ Brussel, Dept Pediat, Brussels, Belgium
[7] Vrije Univ Brussel, Neurogenet Res Grp, Brussels, Belgium
[8] Univ Bristol, Sch Biochem, Bristol BS8 1TD, Avon, England
[9] Univ Sains Malaysia, Adv Med & Dent Inst, Kepala Batas 13200, Penang, Malaysia
[10] Columbia Univ, Med Ctr, Div Clin Genet, New York, NY 10032 USA
[11] Queens Univ, Kingston Gen Hosp, Sch Med, Dept Pediat, Kingston, ON, Canada
[12] UZ Brussel, Ctr Med Genet, Brussels, Belgium
[13] Univ Edinburgh, MRC Human Genet Unit, IGMM, Edinburgh, Midlothian, Scotland
[14] Univ Alabama Birmingham, Dept Genet, Birmingham, AL USA
[15] UZ Brussel, Pediat Neurol Unit, Dept Pediat, Brussels, Belgium
[16] HudsonAlpha Clin Serv Lab, Huntsville, AL USA
[17] Childrens Hosp Philadelphia, Roberts Individualized Med Genet Ctr, Philadelphia, PA 19104 USA
[18] Univ Bern, Bern Univ Hosp, Dept Human Genet, Inselspital, Bern, Switzerland
基金
英国惠康基金;
关键词
RAC1; small GTPases; intellectual disability; polymicrogyria; WAVE regulatory complex; CRYSTAL-STRUCTURE; MUTATIONS; GTPASES; BIOCHEMISTRY; MODULATION; DISTINCT; COMPLEX; CDC42; ACTB;
D O I
10.1093/brain/awac049
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
RAC1 is a highly conserved Rho GTPase critical for many cellular and developmental processes. De novo missense RAC1 variants cause a highly variable neurodevelopmental disorder. Some of these variants have previously been shown to have a dominant negative effect. Most previously reported patients with this disorder have either severe microcephaly or severe macrocephaly. Here, we describe eight patients with pathogenic missense RAC1 variants affecting residues between Q61 and R68 within the switch II region of RAC1. These patients display variable combinations of developmental delay, intellectual disability, brain anomalies such as polymicrogyria and cardiovascular defects with normocephaly or relatively milder micro- or macrocephaly. Pulldown assays, NIH3T3 fibroblast spreading assays and staining for activated PAK1/2/3 and WAVE2 suggest that these variants increase RAC1 activity and over-activate downstream signalling targets. Axons of neurons isolated from Drosophila embryos expressing the most common of the activating variants are significantly shorter, with an increased density of filopodial protrusions. In vivo, these embryos exhibit frequent defects in axonal organization. Class IV dendritic arborization neurons expressing this variant exhibit a significant reduction in the total area of the dendritic arbour, increased branching and failure of self-avoidance. RNAi knock down of the WAVE regulatory complex component Cyfip significantly rescues these morphological defects. These results establish that activating substitutions affecting residues Q61-R68 within the switch II region of RAC1 cause a developmental syndrome. Our findings reveal that these variants cause altered downstream signalling, resulting in abnormal neuronal morphology and reveal the WAVE regulatory complex/Arp2/3 pathway as a possible therapeutic target for activating RAC1 variants. These insights also have the potential to inform the mechanism and therapy for other disorders caused by variants in genes encoding other Rho GTPases, their regulators and downstream effectors. RAC1 is a highly conserved Rho GTPase. Banka et al. report that activating substitutions in the switch II region of RAC1 alter downstream signalling, affect neuronal morphology and give rise to a distinct neurodevelopmental disorder, for which the WAVE regulatory complex/Arp2/3 pathway could be a therapeutic target.
引用
收藏
页码:4232 / 4245
页数:14
相关论文
共 41 条
  • [1] Baker MJ, 2021, METHODS MOL BIOL, V2262, P117, DOI 10.1007/978-1-0716-1190-6_7
  • [2] Opposite Modulation of RAC1 by Mutations in TRIO Is Associated with Distinct, Domain-Specific Neurodevelopmental Disorders
    Barbosa, Sonia
    Greville-Heygate, Stephanie
    Bonnet, Maxime
    Godwin, Annie
    Fagotto-Kaufmann, Christine
    Kajava, Andrey, V
    Laouteouet, Damien
    Mawby, Rebecca
    Wai, Htoo Aung
    Dingemans, Alexander J. M.
    Hehir-Kwa, Jayne
    Willems, Marjorlaine
    Capri, Yline
    Mehta, Sarju G.
    Cox, Helen
    Goudie, David
    Vansenne, Fleur
    Turnpenny, Peter
    Vincent, Marie
    Cogne, Benjamin
    Lesca, Gaetan
    Hertecant, Jozef
    Rodriguez, Diana
    Keren, Boris
    Burglen, Lydie
    Gerard, Marion
    Putoux, Audrey
    Cantagrel, Vincent
    Siquier-Pernet, Karine
    Rio, Marlene
    Banka, Siddharth
    Sarkar, Ajoy
    Steeves, Marcie
    Parker, Michael
    Clement, Emma
    Moutton, Sebastien
    Mau-Them, Frederic Tran
    Piton, Amelie
    de Vries, Bert B. A.
    Guille, Matthew
    Debant, Anne
    Schmidt, Susanne
    Baralle, Diana
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2020, 106 (03) : 338 - 355
  • [3] New insights into the clinical and molecular spectrum of the novel CYFIP2-related neurodevelopmental disorder and impairment of the WRC-mediated actin dynamics
    Begemann, Anais
    Sticht, Heinrich
    Begtrup, Amber
    Vitobello, Antonio
    Faivre, Laurence
    Banka, Siddharth
    Alhaddad, Bader
    Asadollahi, Reza
    Becker, Jessica
    Bierhals, Tatjana
    Brown, Kathleen E.
    Bruel, Ange-Line
    Brunet, Theresa
    Carneiro, Maryline
    Cremer, Kirsten
    Day, Robert
    Denomme-Pichon, Anne-Sophie
    Dyment, Dave A.
    Engels, Hartmut
    Fisher, Rachel
    Goh, Elaine S.
    Hajianpour, M. J.
    Machado Haertel, Lucia Ribeiro
    Hauer, Nadine
    Hempel, Maja
    Herget, Theresia
    Johannsen, Jessika
    Kraus, Cornelia
    Le Guyader, Gwenael
    Lesca, Gaetan
    Mau-Them, Frederic Tran
    McDermott, John Henry
    McWalter, Kirsty
    Meyer, Pierre
    Ounap, Katrin
    Popp, Bernt
    Reimand, Tiia
    Riedhammer, Korbinian M.
    Russo, Martina
    Sadleir, Lynette G.
    Saenz, Margarita
    Schiff, Manuel
    Schuler, Elisabeth
    Syrbe, Steffen
    Van der Ven, Amelie Theresa
    Verloes, Alain
    Willems, Marjolaine
    Zweier, Christiane
    Steindl, Katharina
    Zweier, Markus
    [J]. GENETICS IN MEDICINE, 2021, 23 (03) : 543 - 554
  • [4] Identifying recurrent mutations in cancer reveals widespread lineage diversity and mutational specificity
    Chang, Matthew T.
    Asthana, Saurabh
    Gao, Sizhi Paul
    Lee, Byron H.
    Chapman, Jocelyn S.
    Kandoth, Cyriac
    Gao, JianJiong
    Socci, Nicholas D.
    Solit, David B.
    Olshen, Adam B.
    Schultz, Nikolaus
    Taylor, Barry S.
    [J]. NATURE BIOTECHNOLOGY, 2016, 34 (02) : 155 - +
  • [5] De novo missense variants in RAC3 cause a novel neurodevelopmental syndrome
    Costain, Gregory
    Callewaert, Bert
    Gabriel, Heinz
    Tan, Tiong Y.
    Walker, Susan
    Christodoulou, John
    Lazar, Tamas
    Menten, Bjorn
    Orkin, Julia
    Sadedin, Simon
    Snell, Meaghan
    Vanlander, Arnaud
    Vergult, Sarah
    White, Susan M.
    Scherer, Stephen W.
    Hayeems, Robin Z.
    Blaser, Susan
    Wodak, Shoshana J.
    Chitayat, David
    Marshall, Christian R.
    Meyn, M. Stephen
    [J]. GENETICS IN MEDICINE, 2019, 21 (04) : 1021 - 1026
  • [6] ACTB Loss-of-Function Mutations Result in a Pleiotropic Developmental Disorder
    Cuvertino, Sara
    Stuart, Helen M.
    Chandler, Kate E.
    Roberts, Neil A.
    Armstrong, Ruth
    Bernardini, Laura
    Bhaskar, Sanjeev
    Callewaert, Bert
    Clayton-Smith, Jill
    Hernando Davalillo, Cristina
    Deshpande, Charu
    Devriendt, Koenraad
    Digilio, Maria C.
    Dixit, Abhijit
    Edwards, Matthew
    Friedman, Jan M.
    Gonzalez-Meneses, Antonio
    Joss, Shelagh
    Kerr, Bronwyn
    Lampe, Anne Katrin
    Langlois, Sylvie
    Lennon, Rachel
    Loget, Philippe
    Ma, David Y. T.
    McGowan, Ruth
    Des Medt, Maryse
    O'Sullivan, James
    Odent, Sylvie
    Parker, Michael J.
    Pebrel-Richard, Celine
    Petit, Florence
    Stark, Zornitza
    Stockler-Ipsiroglu, Sylvia
    Tinschert, Sigrid
    Vasudevan, Pradeep
    Villa, Olaya
    White, Susan M.
    Zahir, Farah R.
    Woolf, Adrian S.
    Banka, Siddharth
    [J]. AMERICAN JOURNAL OF HUMAN GENETICS, 2017, 101 (06) : 1021 - 1033
  • [7] BIOLOGICAL AND BIOCHEMICAL-PROPERTIES OF HUMAN RASH GENES MUTATED AT CODON-61
    DER, CJ
    FINKEL, T
    COOPER, GM
    [J]. CELL, 1986, 44 (01) : 167 - 176
  • [8] CNF1 exploits the ubiquitin-proteasome machinery to restrict Rho GTPase activation for bacterial host cell invasion
    Doye, A
    Mettouchi, A
    Bossis, G
    Clément, R
    Buisson-Touati, C
    Flatau, G
    Gagnoux, L
    Piechaczyk, M
    Boquet, P
    Lemichez, E
    [J]. CELL, 2002, 111 (04) : 553 - 564
  • [9] Mechanism of regulation of WAVE1-induced actin nucleation by Rac1 and Nck
    Eden, S
    Rohatgi, R
    Podtelejnikov, AV
    Mann, M
    Kirschner, MW
    [J]. NATURE, 2002, 418 (6899) : 790 - 793
  • [10] The crystal structure of human rac1, a member of the rho-family complexed with a GTP analogue
    Hirshberg, M
    Stockley, RW
    Dodson, G
    Webb, MR
    [J]. NATURE STRUCTURAL BIOLOGY, 1997, 4 (02) : 147 - 152