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31 - 40 of 48 search results for KA :PC53 |u:www2.mrc-lmb.cam.ac.uk where 0 match all words and 48 match some words.
  1. Results that match 1 of 2 words

  2. The EMBO Journal Vol.17 No.18 pp.5273–5285, 1998 Crystal structure ...

    https://www2.mrc-lmb.cam.ac.uk/groups/hmm/publica/Owen_McMahon1998.pdf
    9 Sep 1998: Thecurves were fitted to a single exponential equationa exp(–kt) 1 c, from which the apparent initial rates(–ka) were extracted.
  3. The structural basis of novel endosome anchoringactivity of KIF16B ...

    https://www2.mrc-lmb.cam.ac.uk/groups/rlw/download/publications/17641687.pdf
    23 Jul 2007: The structural basis of novel endosome anchoringactivity of KIF16B kinesin. Nichole R Blatner1, Michael I Wilson2,Cai Lei3, Wanjin Hong3, Diana Murray4,Roger L Williams2 and Wonhwa Cho 1,1Department of Chemistry, University of Illinois at Chicago,
  4. 2077 741..748

    https://www2.mrc-lmb.cam.ac.uk/groups/hegde/download/21_Lingappa_VR_BioEssays_2002.pdf
    5 Jul 2002: Dill KA, Chan HS. From Levinthal to pathways to funnels. Nat Struc Biol.
  5. pnas201210899 16522..16527

    https://www2.mrc-lmb.cam.ac.uk/groups/JYL/PDF/PNAS-2012-Aylett-16522-7.pdf
    12 Oct 2012: Proc Natl Acad Sci USA 107:11763–11768. 14. Aylett CHS, Wang Q, Michie KA, Amos LA, Löwe J (2010) Filament structure of bac-terial tubulin homologue TubZ.
  6. Dynamic Filaments of the Bacterial Cytoskeleton

    https://www2.mrc-lmb.cam.ac.uk/groups/JYL/PDF/annrev2006.pdf
    19 Apr 2006: ANRV277-BI75-21 ARI 24 February 2006 2:50. RE V. I E W. S. IN. A D V A. NC. E. Dynamic Filaments of theBacterial CytoskeletonKatharine A. Michie and Jan LöweMedical Research Council Laboratory of Molecular Biology, Cambridge CB2 2QH,UK; email:
  7. Cryo‐EM structure of the MinCD copolymeric filament from Pseudomonas…

    https://www2.mrc-lmb.cam.ac.uk/groups/JYL/PDF/Szewczak-Harris_et_al-2019-FEBS_Letters.pdf
    22 Jul 2019: EDITOR’S CHOICE. Cryo-EM structure of the MinCD copolymeric filamentfrom Pseudomonas aeruginosa at 3.1 A resolutionAndrzej Szewczak-Harris , James Wagstaff and Jan Lowe. MRC Laboratory of Molecular Biology, Cambridge, UK. Correspondence. J. Lowe,
  8. 9780470015902.a0029223

    https://www2.mrc-lmb.cam.ac.uk/groups/greger/wp-content/uploads/sites/32/eLS-review_Greger.pdf
    1 Mar 2022: Neuron 93 (2):409–424. DOI: 10.1016/j.neuron.2016.11.046. Han W, Li J, Pelkey KA et al.
  9. A Polymerization-Associated Structural Switch in FtsZ That Enables…

    https://www2.mrc-lmb.cam.ac.uk/groups/JYL/PDF/mBio-2017-Wagstaff-.pdf
    3 May 2017: A Polymerization-Associated StructuralSwitch in FtsZ That Enables Treadmillingof Model Filaments. James M. Wagstaff,a Matthew Tsim,a María A. Oliva,b Alba García-Sanchez,b. Danguole Kureisaite-Ciziene,a José Manuel Andreu,b Jan Löwea. MRC
  10. PHAGOCYTES, GRANULOCYTES, AND MYELOPOIESIS PSTPIP2 deficiency in mice …

    https://www2.mrc-lmb.cam.ac.uk/groups/hmm/publica/Papers/Blood-2012-Chitu-3126-35.pdf
    12 Oct 2012: PHAGOCYTES, GRANULOCYTES, AND MYELOPOIESIS. PSTPIP2 deficiency in mice causes osteopenia and increased differentiation ofmultipotent myeloid precursors into osteoclastsVioleta Chitu,1 Viorel Nacu,1 Julia F. Charles,2,3 William M. Henne,4 Harvey T.
  11. 15211199233993 1..45

    https://www2.mrc-lmb.cam.ac.uk/groups/JYL/PDF/MreBHussain2018.pdf
    15 Mar 2018: For correspondence:. egarner@g.harvard.edu. †These authors contributed. equally to this work. Competing interests: The. authors declare that no. competing interests exist. Funding: See page 32. Received: 03 October 2017. Accepted: 21 February

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