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1. A novel long non-coding RNA connects obesity to impaired adipocyte functionGene Expression Omnibus GEOFigshare

2. A novel long non-coding RNA connects obesity to impaired adipocyte function

5. Downregulation of hepatic lipopolysaccharide binding protein improves lipogenesis-induced liver lipid accumulation

6. Microbiota alterations in proline metabolism impact depression

7. Targeted sequencing identifies 91 neurodevelopmental-disorder risk genes with autism and developmental-disability biases

8. Potential therapeutic implications of histidine catabolism by the gut microbiota in NAFLD patients with morbid obesity

9. A microRNA Cluster Controls Fat Cell Differentiation and Adipose Tissue Expansion By Regulating SNCG

11. Adipose tissue coregulates cognitive function

12. A homozygous FITM2 mutation causes a deafness-dystonia syndrome with motor regression and signs of ichthyosis and sensory neuropathy

13. Intellectual disability and autism spectrum disorders ‘on the fly’: insights from Drosophila

14. Conserved regulation of neurodevelopmental processes and behavior by FoxP in Drosophila.

15. Downregulation of hepatic lipopolysaccharide binding protein improves lipogenesis-induced liver lipid accumulation

16. Microbiota alterations in proline metabolism impact depression

17. "Indole-gence" for the mind.

18. Caudovirales bacteriophages are associated with improved executive function and memory in flies, mice, and humans

19. Microbiota alterations in proline metabolism impact depression

20. Caudovirales bacteriophages are associated with improved executive function and memory in flies, mice, and humans

21. Caudovirales bacteriophages are associated with improved executive function and memory in flies, mice, and humans

22. BOD1 Is Required for Cognitive Function in Humans and Drosophila.

23. A New Fiji-Based Algorithm That Systematically Quantifies Nine Synaptic Parameters Provides Insights into Drosophila NMJ Morphometry.

24. Contribution of Intellectual Disability–Related Genes to ADHD Risk and to Locomotor Activity in Drosophila

25. Caudovirales bacteriophages are associated with improved executive function and memory in flies, mice, and humans

26. A microRNA cluster controls fat cell differentiation and adipose tissue expansion by regulating SNCG

27. A microRNA Cluster Controls Fat Cell Differentiation and Adipose Tissue Expansion By Regulating SNCG

28. Conditional depletion of intellectual disability and Parkinsonism candidate gene ATP6AP2 in fly and mouse induces cognitive impairment and neurodegeneration

29. Converging evidence does not support GIT1 as an ADHD risk gene

30. Obesity-associated deficits in inhibitory control are phenocopied to mice through gut microbiota changes in one-carbon and aromatic amino acids metabolic pathways

31. Obesity-associated deficits in inhibitory control are phenocopied to mice through gut microbiota changes in one-carbon and aromatic amino acids metabolic pathways

32. Obesity Impairs Short-Term and Working Memory through Gut Microbial Metabolism of Aromatic Amino Acids

33. Human intellectual disability genes form conserved functional modules in Drosophila.

34. Contribution of Intellectual Disability-Related Genes to ADHD Risk and to Locomotor Activity in

35. Contribution of Intellectual Disability-Related Genes to ADHD Risk and to Locomotor Activity in Drosophila

36. Obesity impairs short-term and working memory through gut microbial metabolism of aromatic amino acids

37. Obesity-associated deficits in inhibitory control are phenocopied to mice through gut microbiota changes in one-carbon and aromatic amino acids metabolic pathways

38. GATAD2B loss-of-function mutations cause a recognisable syndrome with intellectual disability and are associated with learning deficits and synaptic undergrowth in Drosophila

39. CEP89 is required for mitochondrial metabolism and neuronal function in man and fly

40. Contribution of Intellectual Disability–Related Genes to ADHD Risk and to Locomotor Activity in Drosophila

41. S.16.02 Intellectual disability-related genes increase ADHD risk and locomotor activity in Drosophila melanogaster

42. A microRNA Cluster Controls Fat Cell Differentiation and Adipose Tissue Expansion By Regulating SNCG.

44. Intellectual Disability-related genes increase ADHD risk and locomotor activity in Drosophila

45. Intellectual disability and autism spectrum disorders 'on the fly': insights from Drosophila

46. Conserved regulation of neurodevelopmental processes and behavior by FoxP in Drosophila

47. Intellectual disability and autism spectrum disorders 'on the fly': insights from Drosophila

48. Conserved regulation of neurodevelopmental processes and behavior by FoxP in Drosophila

49. P.1.12 Intellectual disability-related genes increase ADHD risk and locomotor activity in Drosophila melanogaster

50. INTELLECTUAL DISABILITY-RELATED GENES INCREASE ADHD RISK AND LOCOMOTOR ACTIVITY IN DROSOPHILA MELANOGASTER

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