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Tobias B. Haack

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Open access Jul 2026

Abnormal ClC-3/TMEM9-mediated endosomal ion transport in CLCN3-associated neurodevelopmental disease

Endolysosomal abnormalities are particularly detrimental to the nervous system and have been implicated in neuropsychiatric disorders. Key regulators of the lysosomal and endosomal luminal ion homeostasis are CLC chloride/proton exchangers. We report 15 individuals carrying variants in CLCN3, encoding a ubiquitous endosomal 2Cl−/H+ exchanger, and provide updated clinical information for 5 previously reported individuals. Subjects displayed a broad spectrum of neuropsychiatric symptoms, including developmental delay, intellectual disability, and epilepsy. To reveal the pathogenic mechanism, we investigated ClC-3 variants-mediated ion transport and its regulation by the recently discovered inhibitory beta subunit TMEM9. 12/20 missense variants exhibited altered properties and fell into two classes: those affecting the region binding inhibitory TMEM9 carboxy-termini, and those that broaden the voltage range over which ClC-3 conducts ions. Surprisingly, the latter variants also attenuated TMEM9-mediated inhibition. Both classes produced a toxic gain-of-function, as evident from endolysosomal vacuolization by mutant ClC-3/TMEM9 overexpression. Our results expand the genetic and clinical spectrum of CLCN3-related disease, provide a solid basis for genetic counseling, and uncover an unexpected link between gating-associated conformational changes and inhibition by TMEM9. Loss- and gain-of-function variants of the endosomal chloride/proton exchanger ClC-3 are associated with neurodevelopmental disorders. Identification and characterization of novel variants expands the clinical spectrum of CLCN3 disease and provides detailed insights into pathogenic mechanisms. Most heterozygous missense variants result in a gain of function when studied in co-expression with TMEM9 β-subunits. Several variants affect ClC-3 residues close to the binding pocket of the TMEM9 carboxy-terminus that directly blocks the chloride pathway, thereby weakening the block. Several other variants, located far from the binding site, affect voltage-dependent gating when studied without TMEM9, thereby enhancing currents at endosomal voltages. These variants also weaken TMEM9-mediated inhibition, revealing a link between gating-associated conformational changes and TMEM9 binding. Most heterozygous missense variants result in a gain of function when studied in co-expression with TMEM9 β-subunits. Several variants affect ClC-3 residues close to the binding pocket of the TMEM9 carboxy-terminus that directly blocks the chloride pathway, thereby weakening the block. Several other variants, located far from the binding site, affect voltage-dependent gating when studied without TMEM9, thereby enhancing currents at endosomal voltages. These variants also weaken TMEM9-mediated inhibition, revealing a link between gating-associated conformational changes and TMEM9 binding. Loss- and gain-of-function variants of the endosomal chloride/proton exchanger ClC-3 are associated with neurodevelopmental disorders. Identification and characterization of novel variants expands the clinical spectrum of CLCN3 disease and provides detailed insights into pathogenic mechanisms.

Maya M. Polovitskaya, T. Tkemaladze, L. Jensen et al. · 0 citations
Open access Aug 2026

The clinical and molecular spectrum of AGO2-associated Lessel-Kreienkamp neurodevelopmental syndrome

AGO2 is established as a pivotal regulator of neurodevelopment whose structural integrity is essential for precise miRNA-mediated gene regulation and isomiR generation, and occurrence of gonadal mosaicism is reported and revealed.

Debora Tibbe, Christina Kiel, Olena Ielesicheva et al. · 0 citations
#explainable ai Open access Aug 2026

aiDIVA – hybrid AI for rare disease diagnostics using evidence-based, machine learning and language models

aiDIVA is presented, an ensemble-AI combining statistical and machine learning models trained on genomic and phenotypic data to identify causal variants among tens of thousands per patient, and applies a random forest model to classify pathogenicity and generates evidence-based scores for dominant and recessive diseases.

D. Boceck, L. Laugwitz, Marc Sturm et al. · 0 citations
Open access Jul 2026

Further characterization of the BRSK2-associated neurodevelopmental disorder.

Variants in BRSK2, encoding brain specific kinase-2, have recently been associated with an autosomal dominant neurodevelopmental disorder (NDD). We have assembled 52 cases with heterozygous BRSK2 variants and variable neurodevelopmental phenotypes with frequent neuropsychiatric and behavioral symptoms. The variant spectrum included 15 different truncating variants, seven (potential) splice variants, three structural variants, and 12 different missense variants. Of the missense variants, seven were in the kinase domain, and the others in the UBA and the KA1 domain or outside domains. Variants occurred de novo in 19 cases and were inherited in 18. We utilized Drosophila melanogaster as a model and assessed viability and performed climbing and bang sensitivity assays upon knockdown of the fly orthologue sff or upon overexpression of wildtype or mutant human BRSK2. Pan-neuronal knockdown of sff resulted in impaired locomotor behavior and seizure susceptibility. Ubiquitous or pan-neuronal overexpression of human wildtype BRSK2 in Drosophila resulted in lethality or locomotor impairment, respectively, indicating toxicity. Overexpressing mutant BRSK2 did not or incompletely affect viability and locomotor behavior for six of seven tested kinase domain missense variants and one KA1 domain variant, indicating a (partial) loss-of-function effect. Interestingly, overexpressing BRSK2 with the remaining missense variant from the kinase domain and the two most C-terminal missense variants resulted in possible gain of function. Our findings further delineate the clinical and molecular spectrum of BRSK2-associated NDD and provide further insights into the role of BRSK2/sff in nervous system function and dysfunction.

Palak Singhal, Tzung-Chien Hsieh, Nadja Ehmke et al. · 0 citations

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