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1. AMFR dysfunction causes autosomal recessive spastic paraplegia in human that is amenable to statin treatment in a preclinical model

2. Comprehensive multi-omics integration identifies differentially active enhancers during human brain development with clinical relevance

4. Loss of UGP2 in brain leads to a severe epileptic encephalopathy, emphasizing that bi-allelic isoform-specific start-loss mutations of essential genes can cause genetic diseases

5. AMFR dysfunction causes autosomal recessive spastic paraplegia in human that is amenable to statin treatment in a preclinical model

6. BICRA, a SWI/SNF Complex Member, Is Associated with BAF-Disorder Related Phenotypes in Humans and Model Organisms

7. Bi-allelic variants in HOPS complex subunit VPS41 cause cerebellar ataxia and abnormal membrane trafficking

8. Comprehensive multi-omics integration identifies differentially active enhancers during human brain development with clinical relevance

9. Expanding the mutational landscape and clinical phenotype of the YIF1B related brain disorder

10. Expanding the mutational landscape and clinical phenotype of the YIF1B related brain disorder

11. Additional file 1 of Comprehensive multi-omics integration identifies differentially active enhancers during human brain development with clinical relevance

12. Comprehensive multi-omics integration identifies differentially active enhancers during human brain development with clinical relevance

13. Bi-allelic variants in HOPS complex subunit VPS41 cause cerebellar ataxia and abnormal membrane trafficking

14. Loss of UGP2 in brain leads to a severe epileptic encephalopathy, emphasizing that bi-allelic isoform-specific start-loss mutations of essential genes can cause genetic diseases

15. Loss of UGP2 in brain leads to a severe epileptic encephalopathy, emphasizing that bi-allelic isoform specific start-loss mutations of essential genes can cause genetic diseases

16. BICRA, a SWI/SNF Complex Member, Is Associated with BAF-Disorder Related Phenotypes in Humans and Model Organisms

17. Loss of UGP2 in brain leads to a severe epileptic encephalopathy, emphasizing that bi-allelic isoform-specific start-loss mutations of essential genes can cause genetic diseases

18. Expanding the mutational landscape and clinical phenotype of the YIF1B related brain disorder.

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