User:Vinícius M. Neto/Sandbox 1

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[[User:Vinícius M. Neto/Sandbox 1|Fibroin N-terminal domain (FibNT)]] is a critical structural protein domain involved in the assembly of silk fibers produced by Bombyx mori. It forms a homo-tetrameric complex characterized by extensive β-sheet structures that provide mechanical strength and stability to the silk fiber. FibNT’s unique pH-dependent conformational changes regulate fiber formation by transitioning from a disordered state to a stable β-sheet conformation under acidic conditions. This domain plays a key role in the precise biological process of silk spinning, contributing to the remarkable properties of silk as a natural biomaterial.
[[User:Vinícius M. Neto/Sandbox 1|Fibroin N-terminal domain (FibNT)]] is a critical structural protein domain involved in the assembly of silk fibers produced by Bombyx mori. It forms a homo-tetrameric complex characterized by extensive β-sheet structures that provide mechanical strength and stability to the silk fiber. FibNT’s unique pH-dependent conformational changes regulate fiber formation by transitioning from a disordered state to a stable β-sheet conformation under acidic conditions. This domain plays a key role in the precise biological process of silk spinning, contributing to the remarkable properties of silk as a natural biomaterial.
<StructureSection load='3ua0' size='340' side='right' caption='Caption for this structure' scene='10/1082417/Bolota/2'>
<StructureSection load='3ua0' size='340' side='right' caption='Caption for this structure' scene='10/1082417/Bolota/2'>
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== Introduction ==
== Introduction ==

Revision as of 17:55, 19 June 2025

FibNT (3UA0)

Fibroin N-terminal domain (FibNT) is a critical structural protein domain involved in the assembly of silk fibers produced by Bombyx mori. It forms a homo-tetrameric complex characterized by extensive β-sheet structures that provide mechanical strength and stability to the silk fiber. FibNT’s unique pH-dependent conformational changes regulate fiber formation by transitioning from a disordered state to a stable β-sheet conformation under acidic conditions. This domain plays a key role in the precise biological process of silk spinning, contributing to the remarkable properties of silk as a natural biomaterial.

Caption for this structure

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References

  1. doi: https://dx.doi.org/10.1201/9781420015270
  2. doi: https://dx.doi.org/10.1038/nprot.2011.379
  3. 3.0 3.1 3.2 3.3 He YX, Zhang NN, Li WF, Jia N, Chen BY, Zhou K, Zhang J, Chen Y, Zhou CZ. N-Terminal Domain of Bombyx mori Fibroin Mediates the Assembly of Silk in Response to pH Decrease. J Mol Biol. 2012 Mar 1. PMID:22387468 doi:10.1016/j.jmb.2012.02.040

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Vinícius M. Neto

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