47 results on '"Rognoni, Paola"'
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2. Nanobodies counteract the toxicity of an amyloidogenic light chain by stabilizing a partially open dimeric conformation
3. An N-glycosylation hotspot in immunoglobulin κ light chains is associated with AL amyloidosis
4. Helical superstructures between amyloid and collagen VI in heart-derived fibrils from a patient with Light Chain Amyloidosis.
5. Nanobodies counteract the toxicity of an amyloidogenic light chain by stabilizing a partially open dimeric conformation
6. Amyloidogenic light chains impair plasma cell survival
7. The amyloidogenic light chain is a stressor that sensitizes plasma cells to proteasome inhibitor toxicity
8. Cryo-EM structure of cardiac amyloid fibrils from an immunoglobulin light chain AL amyloidosis patient
9. <scp>Single‐molecule real‐time</scp> sequencing of the M protein: Toward personalized medicine in monoclonal gammopathies
10. Single‐molecule real‐time sequencing of the M protein: Toward personalized medicine in monoclonal gammopathies
11. The repertoire of λ light chains causing predominant amyloid heart involvement and identification of a preferentially involved germline gene, IGLV1-44
12. A novel approach for the purification and proteomic analysis of pathogenic immunoglobulin free light chains from serum
13. Single Molecule Real-Time Sequencing of the M Protein (SMaRT M-Seq): Toward Personalized Medicine Approaches in Monoclonal Gammopathies
14. Protease‐sensitive regions in amyloid light chains: what a common pattern of fragmentation across organs suggests about aggregation
15. Stanniocalcin1 is a key mediator of amyloidogenic light chain induced cardiotoxicity
16. Dissecting the Molecular Features of Systemic Light Chain (AL) Amyloidosis: Contributions from Proteomics
17. Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis
18. Inherent Biophysical Properties Modulate the Toxicity of Soluble Amyloidogenic Light Chains
19. Protease‐sensitive regions in amyloid light chains: what a common pattern of fragmentation across organs suggests about aggregation.
20. The concurrency of several biophysical traits links immunoglobulin light chains with toxicity in AL amyloidosis
21. SP-A binds alpha1-antitrypsin in vitro and reduces the association rate constant for neutrophil elastase
22. Cryo-EM structure of cardiac amyloid fibrils from an immunoglobulin light chain (AL) amyloidosis patient
23. Concurrent structural and biophysical traits link with immunoglobulin light chains amyloid propensity
24. Proteotoxicity in cardiac amyloidosis: amyloidogenic light chains affect the levels of intracellular proteins in human heart cells
25. Cardiac Light Chain Amyloidosis: The Role of Metal Ions in Oxidative Stress and Mitochondrial Damage
26. Regulated expression of amyloidogenic immunoglobulin light chains in mice
27. In situ characterization of protein aggregates in human tissues affected by light chain amyloidosis: a FTIR microspectroscopy study
28. Novel mitochondrial protein interactors of immunoglobulin light chains causing heart amyloidosis
29. Investigating heart-specific toxicity of amyloidogenic immunoglobulin light chains: A lesson fromC. elegans
30. A Caenorhabditis elegans–based assay recognizes immunoglobulin light chains causing heart amyloidosis
31. A Strategy for Synthesis of Pathogenic Human Immunoglobulin Free Light Chains in E. coli
32. In Vitro Aggregation Behavior of a Non-Amyloidogenic λ Light Chain Dimer Deriving from U266 Multiple Myeloma Cells
33. Biochemical Signatures of Doppel Protein in Human Astrocytomas to Support Prediction in Tumor Malignancy
34. Molecular Characterization of Three New Mutant Enzymes of Pyrimidine 5′-Nucleotidase Causing Hereditary Hemolytic Anemia.
35. Nuclear mRNA retention and aberrant doppel protein expression in human astrocytic tumor cells
36. SP-A binds alpha1-antitrypsin in vitro and reduces the association rate constant for neutrophil elastase
37. A Strategy for Synthesis of Pathogenic Human Immunoglobulin Free Light Chains in E. coli.
38. A Strategy for Synthesis of Pathogenic Human Immunoglobulin Free Light Chains in E. coli.
39. In Vitro Aggregation Behavior of a Non-Amyloidogenic ƛ Light Chain Dimer Deriving from U266 Multiple Myeloma Cells.
40. SP-A binds alpha1-antitrypsin in vitro and reduces the association rate constant for neutrophil elastase.
41. The repertoire of ? light chains causing predominant amyloid heart involvement and identification of a preferentially involved germline gene, IGLV1-44
42. Proteotoxicity in Cardiac Amyloidosis: Amyloidogenic Light Chains Affect the Levels of Iintracellular Proteins in Human Heart Cells
43. Proteotoxicity in Cardiac Amyloidosis: Amyloidogenic Light Chains Affect the Levels of Iintracellular Proteins in Human Heart Cells
44. Investigating heart-specific toxicity of amyloidogenic immunoglobulin light chains: A lesson from C. elegans.
45. Biochemical Signatures of Doppel Protein in Human Astrocytomas to Support Prediction in Tumor Malignancy
46. The amyloidogenic light chain is a stressor that sensitizes plasma cells to proteasome inhibitor toxicity
47. Novel mitochondrial protein interactors of immunoglobulin light chains causing heart amyloidosis
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