Functional expression of CLIFAHDD and IHPRF pathogenic variants of the NALCN channel in neuronal cells reveals both gain- and loss-of-function properties

被引:25
作者
Bouasse, Malik [1 ]
Impheng, Hathaichanok [1 ]
Servant, Zoe [1 ]
Lory, Philippe [1 ]
Monteil, Arnaud [1 ]
机构
[1] Univ Montpellier, IGF, LabEx Ion Channel Sci & Therapeut, CNRS,INSERM, Montpellier, France
关键词
SODIUM LEAK CHANNEL; SEVERE INTELLECTUAL DISABILITY; CATION CHANNEL; BIALLELIC MUTATIONS; CALCIUM-CHANNELS; UNC80; HYPOTONIA; EXCITABILITY; CHANNELOPATHIES; CONTRIBUTES;
D O I
10.1038/s41598-019-48071-x
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The excitability of neurons is tightly dependent on their ion channel repertoire. Among these channels, the leak sodium channel NALCN plays a crucial role in the maintenance of the resting membrane potential. Importantly, NALCN mutations lead to complex neurodevelopmental syndromes, including infantile hypotonia with psychomotor retardation and characteristic facies (IHPRF) and congenital contractures of limbs and face, hypotonia and developmental delay (CLIFAHDD), which are recessively and dominantly inherited, respectively. Unfortunately, the biophysical properties of NALCN are still largely unknown to date, as well as the functional consequences of both IHPRF and CLIFAHDD mutations on NALCN current. Here we have set-up the heterologous expression of NALCN in the neuronal cell line NG108-15 to investigate the electrophysiological properties of NALCN carrying representative IHPRF and CLIFAHDD mutations. Several original properties of the wild-type (wt) NALCN current were retrieved: mainly carried by external Na+, blocked by Gd3+, insensitive to TTX and potentiated by low external Ca2+ concentration. However, we found that this current displays a time-dependent inactivation in the -80/-40 mV range of membrane potential, and a non linear current-voltage relationship indicative of voltage sensitivity. Importantly, no detectable current was recorded with the IHPRF missense mutation p.Trp1287Leu (W1287L), while the CLIFAHDD mutants, p.Leu509Ser (L509S) and p.Tyr578Ser (Y578S), showed higher current densities and slower inactivation, compared to wt NALCN current. This study reveals that heterologous expression of NALCN channel can be achieved in the neuronal cell line NG108-15 to study the electrophysiological properties of wt and mutants. From our results, we conclude that IHPRF and CLIFAHDD missense mutations are loss- and gain-of-function variants, respectively.
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页数:14
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共 58 条
[1]   Mutations in NALCN Cause an Autosomal-Recessive Syndrome with Severe Hypotonia, Speech Impairment, and Cognitive Delay [J].
Al-Sayed, Moeenaldeen D. ;
Al-Zaidan, Hamad ;
Albakheet, AlBandary ;
Hakami, Hana ;
Kenana, Rosan ;
Al-Yafee, Yusra ;
Al-Dosary, Mazhor ;
Qari, Alya ;
Al-Sheddi, Tarfa ;
Al-Muheiza, Muhammed ;
Al-Qubbaj, Wafa ;
Lakmache, Yamina ;
Al-Hindi, Hindi ;
Ghaziuddin, Muhammad ;
Colak, Dilek ;
Kaya, Namik .
AMERICAN JOURNAL OF HUMAN GENETICS, 2013, 93 (04) :721-726
[2]   Novel NALCN biallelic truncating mutations in siblings with IHPRF1 syndrome [J].
Angius, A. ;
Cossu, S. ;
Uva, P. ;
Oppo, M. ;
Onano, S. ;
Persico, I. ;
Fotia, G. ;
Atzeni, R. ;
Cuccuru, G. ;
Asunis, M. ;
Cucca, F. ;
Pruna, D. ;
Crisponi, L. .
CLINICAL GENETICS, 2018, 93 (06) :1245-1247
[3]   Exome sequencing in Crisponi/cold-induced sweating syndrome-like individuals reveals unpredicted alternative diagnoses [J].
Angius, Andrea ;
Uva, Paolo ;
Oppo, Manuela ;
Buers, Insa ;
Persico, Ivana ;
Onano, Stefano ;
Cuccuru, Gianmauro ;
Van Allen, Margot I. ;
Hulait, Gurdip ;
Aubertin, Gudrun ;
Muntoni, Francesco ;
Fry, Andrew E. ;
Anneren, Goeran ;
Stattin, Eva-Lena ;
Palomares-Bralo, Maria ;
Santos-Simarro, Fernando ;
Cucca, Francesco ;
Crisponi, Giangiorgio ;
Rutsch, Frank ;
Crisponi, Laura .
CLINICAL GENETICS, 2019, 95 (05) :607-614
[4]   A Gain-of-Function Mutation in NALCN in a Child with Intellectual Disability, Ataxia, and Arthrogryposis [J].
Aoyagi, Kyota ;
Rossignol, Elsa ;
Hamdan, Fadi F. ;
Mulcahy, Ben ;
Xie, Lin ;
Nagamatsu, Shinya ;
Rouleau, Guy A. ;
Zhen, Mei ;
Michaud, Jacques L. .
HUMAN MUTATION, 2015, 36 (08) :753-757
[5]   NALCN channelopathies: Distinguishing gain-of-function and loss-of-function mutations [J].
Bend, Eric G. ;
Si, Yue ;
Stevenson, David A. ;
Bayrak-Toydemir, Pinar ;
Newcomb, Tara M. ;
Jorgensen, Erik M. ;
Swoboda, Kathryn J. .
NEUROLOGY, 2016, 87 (11) :1131-1139
[6]   Gd3+ and Calcium Sensitive, Sodium Leak Currents Are Features of Weak Membrane-Glass Seals in Patch Clamp Recordings [J].
Boone, Adrienne N. ;
Senatore, Adriano ;
Chemin, Jean ;
Monteil, Arnaud ;
Spafford, J. David .
PLOS ONE, 2014, 9 (06)
[7]   Periodic breathing in patients with NALCN mutations [J].
Bourque, Danielle K. ;
Dyment, David A. ;
MacLusky, Ian ;
Kernohan, Kristin D. ;
McMillan, Hugh J. .
JOURNAL OF HUMAN GENETICS, 2018, 63 (10) :1093-1096
[8]   Genetic variants in components of the NALCN-UNC80-UNC79 ion channel complex cause a broad clinical phenotype (NALCN channelopathies) [J].
Bramswig, Nuria C. ;
Bertoli-Avella, Aida M. ;
Albrecht, Beate ;
Al Aqeel, Aida I. ;
Alhashem, Amal ;
Al-Sannaa, Nouriya ;
Bah, Maissa ;
Broehl, Katharina ;
Depienne, Christel ;
Dorison, Nathalie ;
Doummar, Diane ;
Ehmke, Nadja ;
Elbendary, Hasnaa M. ;
Gorokhova, Svetlana ;
Heron, Delphine ;
Horn, Denise ;
James, Kiely ;
Keren, Boris ;
Kuechler, Alma ;
Ismail, Samira ;
Issa, Mahmoud Y. ;
Marey, Isabelle ;
Mayer, Michele ;
McEvoy-Venneri, Jennifer ;
Megarbane, Andre ;
Mignot, Cyril ;
Mohamed, Sarar ;
Nava, Caroline ;
Philip, Nicole ;
Ravix, Cecile ;
Rolfs, Arndt ;
Sadek, Abdelrahim Abdrabou ;
Segebrecht, Lara ;
Stanley, Valentina ;
Trautman, Camille ;
Valence, Stephanie ;
Villard, Laurent ;
Wieland, Thomas ;
Engels, Hartmut ;
Strom, Tim M. ;
Zaki, Maha S. ;
Gleeson, Joseph G. ;
Luedecke, Hermann-Josef ;
Bauer, Peter ;
Wieczorek, Dagmar .
HUMAN GENETICS, 2018, 137 (09) :753-768
[9]   NALCN Dysfunction as a Cause of Disordered Respiratory Rhythm With Central Apnea [J].
Campbell, Jamie ;
FitzPatrick, David R. ;
Azam, Tara ;
Gibson, Neil A. ;
Somerville, Laura ;
Joss, Shelagh K. ;
Urquhart, Don S. .
PEDIATRICS, 2018, 141 :S485-S490
[10]   Utility of trio-based exome sequencing in the elucidation of the genetic basis of isolated syndromic intellectual disability: illustrative cases [J].
Carneiro, Thaise N. R. ;
Krepischi, Ana C. V. ;
Costa, Silvia S. ;
da Silva, Israel Tojal ;
Vianna-Morgante, Angela M. ;
Valieris, Renan ;
Ezquina, Suzana A. M. ;
Bertola, Debora R. ;
Otto, Paulo A. ;
Rosenberg, Carla .
APPLICATION OF CLINICAL GENETICS, 2018, 11 :93-98