Journal:Acta Cryst D:S2059798318015322

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<StructureSection load='' size='450' side='right' scene='80/800124/Cv/1' caption=''>
<StructureSection load='' size='450' side='right' scene='80/800124/Cv/1' caption=''>
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=== Structure of ISG15 from the bat species Myotis davidii and the impact of interdomain ISG15 interactions on viral protein engagement ===
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=== Structure of ISG15 from the bat species ''Myotis davidii'' and the impact of interdomain ISG15 interactions on viral protein engagement ===
<big>Caroline Langley, Octavia Goodwin, John V. Dzimianski, Courtney M. Daczkowski and Scott D. Pegan</big> <ref>doi 10.1107/S2059798318015322</ref>
<big>Caroline Langley, Octavia Goodwin, John V. Dzimianski, Courtney M. Daczkowski and Scott D. Pegan</big> <ref>doi 10.1107/S2059798318015322</ref>
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Recently, the structure of the first non-human ISG15 originating from mouse suggested that human structures of ISG15s may not be reflective of other species. Here, the structure of ISG15 from the bat species ''Myotis davidii'' solved to 1.37 Å is reported ([[6mdh]]). Comparison of this ISG15 structure with those of human and mouse not only underscores the structural impact of ISG15 species-species differences, but also highlights a conserved hydrophobic motif formed between the two domains of ISG15. Using papain-like deISGylase from the severe acute respiratory coronavirus as a probe, the biochemical importance of this interface and its species-species variances on ISG15-protein engagements was illuminated.
Recently, the structure of the first non-human ISG15 originating from mouse suggested that human structures of ISG15s may not be reflective of other species. Here, the structure of ISG15 from the bat species ''Myotis davidii'' solved to 1.37 Å is reported ([[6mdh]]). Comparison of this ISG15 structure with those of human and mouse not only underscores the structural impact of ISG15 species-species differences, but also highlights a conserved hydrophobic motif formed between the two domains of ISG15. Using papain-like deISGylase from the severe acute respiratory coronavirus as a probe, the biochemical importance of this interface and its species-species variances on ISG15-protein engagements was illuminated.
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<scene name='80/800124/Cv/5'>Overlay of ISG15s from bat, mouse, and human</scene>. Structures of <span style="color:lime;background-color:black;font-weight:bold;">hISG15 (green;</span> [[1z2m]]), <font color='magenta'><b>mISG15 (magenta;</b></font> [[5chf]]), and <span style="color:deepskyblue;background-color:black;font-weight:bold;">bISG15 (blue</span> [[6mdh]]) are superimposed using the least squared fit of residues comprising the C-terminal domain on each respective protein. <scene name='80/800124/Cv/6'>Click here to see animation of this scene</scene>. <jmol><jmolButton>
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<scene name='80/800124/Cv/16'>Overlay of ISG15s from bat, mouse, and human</scene>. Structures of <span style="color:lime;background-color:black;font-weight:bold;">hISG15 (green;</span> [[1z2m]]), <font color='magenta'><b>mISG15 (magenta;</b></font> [[5chf]]), and <span style="color:deepskyblue;background-color:black;font-weight:bold;">bISG15 (blue</span> [[6mdh]]) are superimposed using the least squared fit of residues comprising the C-terminal domain on each respective protein. <scene name='80/800124/Cv/6'>Click here to see animation of this scene</scene>. <jmol><jmolButton>
<script>if (_animating); anim pause;set echo bottom left; color echo white; font echo 20 sansserif;echo Animation Paused; else; anim resume; set echo off;endif;</script>
<script>if (_animating); anim pause;set echo bottom left; color echo white; font echo 20 sansserif;echo Animation Paused; else; anim resume; set echo off;endif;</script>
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*<scene name='80/800124/Cv/14'>Lack of reverse turn in mISG15</scene>.
*<scene name='80/800124/Cv/14'>Lack of reverse turn in mISG15</scene>.
*<scene name='80/800124/Cv/15'>Lack of reverse turn in hISG15</scene>.
*<scene name='80/800124/Cv/15'>Lack of reverse turn in hISG15</scene>.
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However, other mammal ISG15s, such as that of the white tooth shrew, do have the biochemical ability to form the turn. This suggests that this motif is not just solely restricted to bat ISG15s, but could be present in other species ISG15s.
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However, other mammal ISG15s, such as that of the [https://en.wikipedia.org/wiki/White-toothed_shrew white tooth shrew], do have the biochemical ability to form the turn. This suggests that this motif is not just solely restricted to bat ISG15s, but could be present in other species ISG15s.
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'''PDB reference:''' X-ray crystal structure of ISG15 from ''Myotis davidii'', [[6mdh]].
<b>References</b><br>
<b>References</b><br>

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