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1. Variants in ATP6V0A1 cause progressive myoclonus epilepsy and developmental and epileptic encephalopathy

2. Progressive Myoclonus Epilepsy Caused by a Homozygous Splicing Variant of SLC7A6OS

3. Cerebral small vessel disease genomics and its implications across the lifespan

4. A genome-wide cross-phenotype meta-analysis of the association of blood pressure with migraine

5. Novel DSP Spectrin 6 Region Variant Causes Neonatal Erythroderma, Failure to Thrive, Severe Herpes Simplex Infections and Brain Lesions

6. Meta-analysis of 375,000 individuals identifies 38 susceptibility loci for migraine (vol 48, pg 856, 2016)

7. Correction: Meta-analysis of 375,000 individuals identifies 38 susceptibility loci for migraine

8. Myoclonus Epilepsy and Ataxia due to KCNC1 Mutation: Analysis of 20 Cases and K plus Channel Properties

9. Meta-analysis of 375,000 individuals identifies 38 susceptibility loci for migraine

10. PROGRESSIVE MYOCLONUS EPILEPSY ASSOCIATED WITH SACS GENE MUTATIONS

14. A recurrent de novo mutation in KCNC1 causes progressive myoclonus epilepsy (vol 47, pg 39, 2015)

15. Postmortem Genetic Testing Following Sudden Cardiac Death Using a Cardiomyopathy and Arrhythmia Next-Generation Sequencing Panel.

16. A recurrent de novo mutation in KCNC1 causes progressive myoclonus epilepsy

17. Diagnostic yield of genetic testing in a multinational heterogeneous cohort of 2088 DCM patients.

18. Biallelic ADAM22 pathogenic variants cause progressive encephalopathy and infantile-onset refractory epilepsy.

19. Prevalence of RPGR-Mediated Retinal Dystrophy in an Unselected Cohort of Over 5000 Patients.

20. GRINL1A Complex Transcription Unit Containing GCOM1, MYZAP, and POLR2M Genes Associates with Fully Penetrant Recessive Dilated Cardiomyopathy.

21. Variants in ATP6V0A1 cause progressive myoclonus epilepsy and developmental and epileptic encephalopathy.

22. Nucleocytoplasmic transport of the RNA-binding protein CELF2 regulates neural stem cell fates.

23. CDK19-related disorder results from both loss-of-function and gain-of-function de novo missense variants.

24. Progressive myoclonus epilepsies-Residual unsolved cases have marked genetic heterogeneity including dolichol-dependent protein glycosylation pathway genes.

25. Diagnostic yield of genetic testing in a heterogeneous cohort of 1376 HCM patients.

26. Biallelic loss-of-function in NRAP is a cause of recessive dilated cardiomyopathy.

27. Progressive Myoclonus Epilepsy Caused by a Homozygous Splicing Variant of SLC7A6OS.

28. A patient with pontocerebellar hypoplasia type 6: Novel RARS2 mutations, comparison to previously published patients and clinical distinction from PEHO syndrome.

29. Long-term follow-up of two siblings with adult-onset neuronal ceroid lipofuscinosis, Kufs type A.

30. Myoclonus epilepsy and ataxia due to KCNC1 mutation: Analysis of 20 cases and K + channel properties.

31. ZNHIT3 is defective in PEHO syndrome, a severe encephalopathy with cerebellar granule neuron loss.

32. Corrigendum: Meta-analysis of 375,000 individuals identifies 38 susceptibility loci for migraine.

33. Biallelic Variants in UBA5 Link Dysfunctional UFM1 Ubiquitin-like Modifier Pathway to Severe Infantile-Onset Encephalopathy.

34. Meta-analysis of 375,000 individuals identifies 38 susceptibility loci for migraine.

35. Progressive myoclonus epilepsy associated with SACS gene mutations.

36. Dysfunctional ADAM22 implicated in progressive encephalopathy with cortical atrophy and epilepsy.

37. Mutation of the nuclear lamin gene LMNB2 in progressive myoclonus epilepsy with early ataxia.

38. Statins, aspirin and risk of venous thromboembolic events in breast cancer patients.

39. Allele-specific regulation of DISC1 expression by miR-135b-5p.

40. Dravet syndrome: new potential genetic modifiers, imaging abnormalities, and ictal findings.

41. Segmental isotopic labeling of multi-domain and fusion proteins by protein trans-splicing in vivo and in vitro.

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