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Article title matches

  1. Category:Fiber-forming protein (52 bytes)
    1: List of pages with the keyword Fiber-forming protein
  2. Category:A fiber attachment protein (57 bytes)
    1: List of pages with the keyword A fiber attachment protein
  3. Category:Fiber (36 bytes)
    1: List of pages with the keyword Fiber
  4. Category:Pilus fiber assembly (51 bytes)
    1: List of pages with the keyword Pilus fiber assembly
  5. Category:Fiber forming protein (52 bytes)
    1: List of pages with the keyword Fiber forming protein
  6. Category:Protein fiber (44 bytes)
    1: List of pages with the keyword Protein fiber
  7. Category:Fiber protein (44 bytes)
    1: List of pages with the keyword Fiber protein
  8. Category:Native minimal fiber (51 bytes)
    1: List of pages with the keyword Native minimal fiber
  9. Category:Chromatin fiber (46 bytes)
    1: List of pages with the keyword Chromatin fiber
  10. Category:Fiber head (41 bytes)
    1: List of pages with the keyword Fiber head
  11. Category:Fiber fibre (42 bytes)
    1: List of pages with the keyword Fiber fibre
  12. Category:Fiber knob (41 bytes)
    1: List of pages with the keyword Fiber knob
  13. Category:Adenovirus fiber knob (52 bytes)
    1: List of pages with the keyword Adenovirus fiber knob
  14. Category:Tail fiber (41 bytes)
    1: List of pages with the keyword Tail fiber
  15. Category:Fiber-forming (44 bytes)
    1: List of pages with the keyword Fiber-forming
  16. Category:Human adenovirus fiber tail (58 bytes)
    1: List of pages with the keyword Human adenovirus fiber tail
  17. Category:Trimeric fiber (45 bytes)
    1: List of pages with the keyword Trimeric fiber
  18. Category:Lens fiber cell (46 bytes)
    1: List of pages with the keyword Lens fiber cell
  19. Category:Amyloid fiber (44 bytes)
    1: List of pages with the keyword Amyloid fiber
  20. Category:Engineered protein fiber (55 bytes)
    1: List of pages with the keyword Engineered protein fiber

Page text matches

  1. 2bgl (5,231 bytes)
    24: ...ne, formed in the gut following ingestion of high fiber dietary foodstuffs, for example. Additionally, se...
  2. 2bgm (5,284 bytes)
    24: ...ne, formed in the gut following ingestion of high fiber dietary foodstuffs, for example. Additionally, se...
  3. 2jem (5,030 bytes)
    23: ...the utility of modified xyloglucans for cellulose fiber modification. Here we present the enzymatic chara...
  4. 2jeq (5,319 bytes)
    24: ...the utility of modified xyloglucans for cellulose fiber modification. Here we present the enzymatic chara...
  5. 2jen (5,494 bytes)
    24: ...the utility of modified xyloglucans for cellulose fiber modification. Here we present the enzymatic chara...
  6. 2jep (5,241 bytes)
    24: ...the utility of modified xyloglucans for cellulose fiber modification. Here we present the enzymatic chara...
  7. 9iti (3,995 bytes)
    11: ...rythromelalgia;Sodium channelopathy-related small fiber neuropathy;Generalized epilepsy with febrile seiz...
  8. 2j12 (4,255 bytes)
    24: ...to CAR D1 of wild type and mutant CAV-2 and HAd37 fiber heads. We found that CAV-2 has the highest affini...
    26: ...al analysis of human Ad37 and canine adenovirus 2 fiber heads in complex with the D1 domain of coxsackie ...
  9. 2j51 (4,662 bytes)
    11: ...AN SLK_HUMAN] Mediates apoptosis and actin stress fiber dissolution.
  10. 2jfl (4,823 bytes)
    11: ...AN SLK_HUMAN] Mediates apoptosis and actin stress fiber dissolution.
  11. 2uy7 (4,302 bytes)
    24: ...embly, subunits are incorporated into the growing fiber via the donor-strand exchange (DSE) mechanism, wh...
  12. 2c3f (4,718 bytes)
    24: ...copies of the active center on the triple-helical fiber itself without the need for an accessory catalyti...
  13. 3zco (3,611 bytes)
    10: ...n structure. Involves the compaction of chromatin fiber into a more condensed form.
  14. 1un1 (5,379 bytes)
    11: ...n bending of the wood stems. May play a role in G fiber shrinking by repairing broken xyloglucan cross-li...
  15. 2uv2 (4,935 bytes)
    11: ...AN SLK_HUMAN] Mediates apoptosis and actin stress fiber dissolution.
  16. 4il1 (7,022 bytes)
    11: ...y similarity). May play a role in skeletal muscle fiber type specification, potentially via NFATC1 signal...
  17. 8bog (4,280 bytes)
    13: ...d by the ligand ephrin-A5/EFNA5 may regulate lens fiber cells shape and interactions and be important for...
  18. 1uxb (4,631 bytes)
    24: ...hrough receptor binding of the knob domain of the fiber protein. The knobs of Ad37 and Ad19p differ at on...
    26: Crystal structure of species D adenovirus fiber knobs and their sialic acid binding sites.,Burmei...
  19. 1uxa (4,632 bytes)
    24: ...hrough receptor binding of the knob domain of the fiber protein. The knobs of Ad37 and Ad19p differ at on...
    26: Crystal structure of species D adenovirus fiber knobs and their sialic acid binding sites.,Burmei...
  20. 1uxe (4,486 bytes)
    24: ...hrough receptor binding of the knob domain of the fiber protein. The knobs of Ad37 and Ad19p differ at on...
    26: Crystal structure of species D adenovirus fiber knobs and their sialic acid binding sites.,Burmei...

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