The dimerization mechanism of the n-terminal domain of spider silk proteins is conserved despite extensive sequence divergence

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  • who: Mu00e9doune Sarr from the ars4, , , , Jan Johansson, Kristaps Jaudzems2, *, and Alessandro Mantese, Dipen Shah, Michael Landreh, Anna Rising, Nina Kronqvist * From the Division for Neurogeriatrics, Department of Neurobiology, Care Sciences and Society, Karolinska Institutet, Huddinge, Sweden have published the Article: The dimerization mechanism of the N-terminal domain of spider silk proteins is conserved despite extensive sequence divergence, in the Journal: (JOURNAL) of February/15,/2022
  • what: The authors determine the solution and crystal_structures of the flagelliform spidroin NT, which shares only 35% identity with MaSp NT, and investigate the mechanisms of its dimerization . . .

     

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