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1. Helical superstructures between amyloid and collagen in cardiac fibrils from a patient with AL amyloidosis

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

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

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

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.

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

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

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

35. Nuclear mRNA retention and aberrant doppel protein expression in human astrocytic tumor cells

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

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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