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2. Abilities of the BRICHOS domain to prevent neurotoxicity and fibril formation are dependent on a highly conserved Asp residue. Issue 11 (23rd September 2022)

4. Back Cover: Diversified Structural Basis of a Conserved Molecular Mechanism for pH‐Dependent Dimerization in Spider Silk N‐Terminal Domains (ChemBioChem 12/2015). Issue 12 (17th August 2015)

6. Degree of Biomimicry of Artificial Spider Silk Spinning Assessed by NMR Spectroscopy. Issue 41 (30th August 2017)

7. Diversified Structural Basis of a Conserved Molecular Mechanism for pH‐Dependent Dimerization in Spider Silk N‐Terminal Domains. Issue 12 (1st July 2015)

8. Engineered Spider Silk Proteins for Biomimetic Spinning of Fibers with Toughness Equal to Dragline Silks (Adv. Funct. Mater. 23/2022). (3rd June 2022)

9. Engineered Spider Silk Proteins for Biomimetic Spinning of Fibers with Toughness Equal to Dragline Silks. (25th March 2022)

10. High intracellular stability of the spidroin N‐terminal domain in spite of abundant amyloidogenic segments revealed by in‐cell hydrogen/deuterium exchange mass spectrometry. (20th December 2019)