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135 results on '"Clathrin Heavy Chains genetics"'

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1. A conserved interaction between the effector Sca4 and host clathrin suggests additional contributions for Sca4 during rickettsial infection.

2. Subtleties in Clathrin heavy chain binding boxes provide selectivity among adaptor proteins of budding yeast.

3. Long Non-coding RNA TPRG1-AS1 Interacts With CLTC in Liver Cancer Cells.

4. A novel de novo CLTC variant altering RNA splicing causes fetal developmental abnormalities.

5. Expanding Our Knowledge of Molecular Pathogenesis in Histiocytoses: Solitary Soft Tissue Histiocytomas in Children With a Novel CLTC::SYK Fusion.

6. Generation of tandem alternative splice acceptor sites and CLTC haploinsufficiency: A cause of CLTC-related disorder.

7. Clathrin heavy chain is essential for the development and reproduction of Locusta migratoria.

8. Low complexity RGG-motif containing proteins Scd6 and Psp2 act as suppressors of clathrin heavy chain deficiency.

9. Identification of a novel interaction site between the large hepatitis delta antigen and clathrin that regulates the assembly of genotype III hepatitis delta virus.

10. Combined nanometric and phylogenetic analysis of unique endocytic compartments in Giardia lamblia sheds light on the evolution of endocytosis in Metamonada.

11. Oral RNAi toxicity assay suggests clathrin heavy chain as a promising molecular target for controlling the 28-spotted potato ladybird, Henosepilachna vigintioctopunctata.

12. Molecular investigation of ALK-rearranged epithelioid fibrous histiocytomas identifies CLTC as a novel fusion partner and evidence of fusion-independent transcription activation.

13. Novel CLTC variants cause new brain and kidney phenotypes.

14. Entry of bovine parainfluenza virus type 3 into MDBK cells occurs via clathrin-mediated endocytosis and macropinocytosis in a acid-dependent manner.

15. Deregulation of CLTC interacts with TFG, facilitating osteosarcoma via the TGF-beta and AKT/mTOR signaling pathways.

16. Spatial decoding of endosomal cAMP signals by a metastable cytoplasmic PKA network.

17. A Tale of 2 Morphologies: Diagnostic Pitfalls in TFEB -Associated Renal Cell Carcinomas, Including a Novel NEAT1-TFEB Fusion.

18. Circ_0074027 contributes to the progression of non-small cell lung cancer via microRNA-362-3p/clathrin heavy chain axis.

19. SARS-CoV-2 infects cells after viral entry via clathrin-mediated endocytosis.

20. A novel CLTC-FOSB gene fusion in pseudomyogenic hemangioendothelioma of bone.

21. Pluripotency of embryonic stem cells lacking clathrin-mediated endocytosis cannot be rescued by restoring cellular stiffness.

22. Tatton-Brown-Rahman syndrome: Six individuals with novel features.

23. Clathrin's adaptor interaction sites are repurposed to stabilize microtubules during mitosis.

24. Molecular characterization of clathrin heavy chain (Chc) in Rhipicephalus haemaphysaloides and its effect on vitellogenin (Vg) expression via the clathrin-mediated endocytic pathway.

25. Clathrin switches transforming growth factor-β role to pro-tumorigenic in liver cancer.

26. Epidermal growth factor (EGF) triggers nuclear calcium signaling through the intranuclear phospholipase Cδ-4 (PLCδ4).

27. Clathrin heavy chain phosphorylated at T606 plays a role in proper cell division.

28. Genetic diversity of CHC22 clathrin impacts its function in glucose metabolism.

29. Neurotransmitter trafficking defect in a patient with clathrin (CLTC) variation presenting with intellectual disability and early-onset parkinsonism.

30. Modulation of alternative splicing of trafficking genes by genome editing reveals functional consequences in muscle biology.

31. Spindle Assembly Disruption and Cancer Cell Apoptosis with a CLTC-Binding Compound.

32. Differential proteome of haemocyte subpopulations responded to white spot syndrome virus infection in Chinese shrimp Fenneropenaeus chinensis.

33. Accurate diagnosis of spinal muscular atrophy and 22q11.2 deletion syndrome using limited deoxynucleotide triphosphates and high-resolution melting.

34. LL-37-induced human osteoblast cytotoxicity and permeability occurs independently of cellular LL-37 uptake through clathrin-mediated endocytosis.

35. Clathrin heavy chain 22 contributes to the control of neuropeptide degradation and secretion during neuronal development.

36. CHC22 and CHC17 clathrins have distinct biochemical properties and display differential regulation and function.

37. Clathrin Heavy Chain Subunits Coordinate Endo- and Exocytic Traffic and Affect Stomatal Movement.

38. Reduced expression of miR‑205‑5p promotes apoptosis and inhibits proliferation and invasion in lung cancer A549 cells by upregulation of ZEB2 and downregulation of erbB3.

39. MiR-199a-5p suppresses tumorigenesis by targeting clathrin heavy chain in hepatocellular carcinoma.

40. Clathrin localization and dynamics in Aspergillus nidulans.

41. Sacral agenesis: a pilot whole exome sequencing and copy number study.

42. Quantitative proteome analysis reveals the correlation between endocytosis-associated proteins and hepatocellular carcinoma dedifferentiation.

43. Decreasing the expression of PICALM reduces endocytosis and the activity of β-secretase: implications for Alzheimer's disease.

44. Creating a chimeric clathrin heavy chain that functions independently of yeast clathrin light chain.

45. Caveolin- and clathrin-independent entry of BKPyV into primary human proximal tubule epithelial cells.

46. CLTC as a clinically novel gene associated with multiple malformations and developmental delay.

47. New Mendelian Disorders of Painlessness.

48. The miR-199-dynamin regulatory axis controls receptor-mediated endocytosis.

49. Dysregulation of clathrin promotes thyroid cell growth and contributes to multinodular goiter pathogenesis.

50. A novel disorder reveals clathrin heavy chain-22 is essential for human pain and touch development.

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