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   The Common Structural Architecture of Shigella flexneri and Salmonella typhimurium Type Three Secretion Needles  
   
نویسنده demers j.-p. ,sgourakis n.g. ,gupta r. ,loquet a. ,giller k. ,riedel d. ,laube b. ,kolbe m. ,baker d. ,becker s. ,lange a.
منبع plos pathogens - 2013 - دوره : 9 - شماره : 3
چکیده    The type three secretion system (t3ss),or injectisome,is a macromolecular infection machinery present in many pathogenic gram-negative bacteria. it consists of a basal body,anchored in both bacterial membranes,and a hollow needle through which effector proteins are delivered into the target host cell. two different architectures of the t3ss needle have been previously proposed. first,an atomic model of the salmonella typhimurium needle was generated from solid-state nmr data. the needle subunit protein,prgi,comprises a rigid-extended n-terminal segment and a helix-loop-helix motif with the n-terminus located on the outside face of the needle. second,a model of the shigella flexneri needle was generated from a high-resolution 7.7-å cryo-electron microscopy density map. the subunit protein,mxih,contains an n-terminal α-helix,a loop,another α-helix,a 14-residue-long β-hairpin (q51-q64) and a c-terminal α-helix,with the n-terminus facing inward to the lumen of the needle. in the current study,we carried out solid-state nmr measurements of wild-type shigella flexneri needles polymerized in vitro and identified the following secondary structure elements for mxih: a rigid-extended n-terminal segment (s2-t11),an α-helix (l12-a38),a loop (e39-p44) and a c-terminal α-helix (q45-r83). using immunogold labeling in vitro and in vivo on functional needles,we located the n-terminus of mxih subunits on the exterior of the assembly,consistent with evolutionary sequence conservation patterns and mutagenesis data. we generated a homology model of shigella flexneri needles compatible with both experimental data: the mxih solid-state nmr chemical shifts and the state-of-the-art cryoem density map. these results corroborate the solid-state nmr structure previously solved for salmonella typhimurium prgi needles and establish that shigella flexneri and salmonella typhimurium subunit proteins adopt a conserved structure and orientation in their assembled state. our study reveals a common structural architecture of t3ss needles,essential to understand t3ss-mediated infection and develop treatments.
آدرس department of nmr-based structural biology,max planck institute for biophysical chemistry,göttingen, Germany, laboratory of chemical physics,national institute of diabetes and digestive and kidney diseases,national institutes of health,bethesda,md, United States, department for cellular microbiology,max planck institute for infection biology,berlin, Germany, department of nmr-based structural biology,max planck institute for biophysical chemistry,göttingen, Germany, department of nmr-based structural biology,max planck institute for biophysical chemistry,göttingen, Germany, laboratory for electron microscopy,max planck institute for biophysical chemistry,göttingen, Germany, core facility microscopy,max planck institute for infection biology,berlin, Germany, department for cellular microbiology,max planck institute for infection biology,berlin, Germany, department of biochemistry,university of washington,seattle,wa, United States, department of nmr-based structural biology,max planck institute for biophysical chemistry,göttingen, Germany, department of nmr-based structural biology,max planck institute for biophysical chemistry,göttingen, Germany
 
     
   
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