학술논문

Biallelic variants in HPDL cause pure and complicated hereditary spastic paraplegia.
Document Type
article
Author
Wiessner, ManuelaMaroofian, RezaNi, Meng-YuanPedroni, AndreaMüller, Juliane SStucka, RolfBeetz, ChristianEfthymiou, StephanieSantorelli, Filippo MAlfares, Ahmed AZhu, ChanglianUhrova Meszarosova, AnnaAlehabib, ElhamBakhtiari, SomayehJanecke, Andreas ROtero, Maria GabrielaChen, Jin Yun HelenPeterson, James TStrom, Tim MDe Jonghe, PeterDeconinck, TineDe Ridder, WillemDe Winter, JonathanPasquariello, RossellaRicca, IvanaAlfadhel, Majidvan de Warrenburg, Bart PPortier, RubenBergmann, CarstenGhasemi Firouzabadi, SagharJin, Sheng ChihBilguvar, KayaHamed, SherifaAbdelhameed, MohammedHaridy, Nourelhoda AMaqbool, ShaziaRahman, FatimaAnwar, NajwaCarmichael, JennyPagnamenta, AlistairWood, Nick WTran Mau-Them, FredericHaack, TobiasDi Rocco, MajaCeccherini, IsabellaIacomino, MicheleZara, FedericoSalpietro, VincenzoScala, MarcelloRusmini, MartaXu, YiranWang, YinghongSuzuki, YasuhiroKoh, KishinNan, HaitianIshiura, HiroyukiTsuji, ShojiLambert, LaëtitiaSchmitt, EmmanuelleLacaze, ElodieKüpper, HannaDredge, DavidSkraban, CaraGoldstein, AmyWillis, Mary JHGrand, KatherynGraham, John MLewis, Richard AMillan, FranciscaDuman, ÖzgürDündar, NihalUyanik, GökhanSchöls, LudgerNürnberg, PeterNürnberg, GudrunCatala Bordes, AndreaSeeman, PavelKuchar, MartinDarvish, HosseinRebelo, AdrianaBouçanova, FilipaMedard, Jean-JacquesChrast, RomanAuer-Grumbach, MichaelaAlkuraya, Fowzan SShamseldin, HananAl Tala, SaeedRezazadeh Varaghchi, JamilehNajafi, MaryamDeschner, SelinaGläser, DieterHüttel, WolfgangKruer, Michael CKamsteeg, Erik-JanTakiyama, YoshihisaZüchner, StephanBaets, JonathanSynofzik, MatthisSchüle, RebeccaHorvath, Rita
Source
Brain. 144(5)
Subject
Neurosciences
Neurodegenerative
Genetics
Clinical Research
Aetiology
2.1 Biological and endogenous factors
Neurological
Animals
Female
Humans
Male
Mice
Mutation
Oxygenases
Pedigree
Rats
Spastic Paraplegia
Hereditary
Zebrafish
hereditary spastic paraplegia
HSP
autosomal recessive
mitochondrial disorder
HPDL
Genomics England Research Consortium
PREPARE network
Medical and Health Sciences
Psychology and Cognitive Sciences
Neurology & Neurosurgery
Language
Abstract
Human 4-hydroxyphenylpyruvate dioxygenase-like (HPDL) is a putative iron-containing non-heme oxygenase of unknown specificity and biological significance. We report 25 families containing 34 individuals with neurological disease associated with biallelic HPDL variants. Phenotypes ranged from juvenile-onset pure hereditary spastic paraplegia to infantile-onset spasticity and global developmental delays, sometimes complicated by episodes of neurological and respiratory decompensation. Variants included bona fide pathogenic truncating changes, although most were missense substitutions. Functionality of variants could not be determined directly as the enzymatic specificity of HPDL is unknown; however, when HPDL missense substitutions were introduced into 4-hydroxyphenylpyruvate dioxygenase (HPPD, an HPDL orthologue), they impaired the ability of HPPD to convert 4-hydroxyphenylpyruvate into homogentisate. Moreover, three additional sets of experiments provided evidence for a role of HPDL in the nervous system and further supported its link to neurological disease: (i) HPDL was expressed in the nervous system and expression increased during neural differentiation; (ii) knockdown of zebrafish hpdl led to abnormal motor behaviour, replicating aspects of the human disease; and (iii) HPDL localized to mitochondria, consistent with mitochondrial disease that is often associated with neurological manifestations. Our findings suggest that biallelic HPDL variants cause a syndrome varying from juvenile-onset pure hereditary spastic paraplegia to infantile-onset spastic tetraplegia associated with global developmental delays.