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Showing 1 - 50 of 458 items for (author: ge & jp)

EMDB-17295:
Stabilised BA.1 SARS-CoV-2 spike with H6 nanobodies in '3 up' RBD conformation
Method: single particle / : Weckener M, Naismith JH, Owens RJ

EMDB-50358:
In vitro-induced genome-releasing intermediate of Rhodobacter microvirus Ebor computed with C5 symmetry
Method: single particle / : Bardy P, MacDonald CIW, Jenkins HT, Chechik M, Hart SJ, Turkenburg JP, Blaza JN, Fogg PCM, Antson AA

EMDB-42981:
Prefusion-stabilized Respirovirus type 3 Fusion protein
Method: single particle / : Johnson NV, McLellan JS

EMDB-50356:
Empty capsid of Rhodobacter microvirus Ebor computed with I4 symmetry
Method: single particle / : Bardy P, MacDonald CIW, Jenkins HT, Byrom L, Chechik M, Hart SJ, Turkenburg JP, Blaza JN, Fogg PCM, Antson AA

EMDB-50357:
Native capsid of Rhodobacter microvirus Ebor computed with I4 symmetry
Method: single particle / : Bardy P, MacDonald CIW, Jenkins HT, Chechik M, Hart SJ, Turkenburg JP, Blaza JN, Fogg PCM, Antson AA

EMDB-50359:
Rhodobacter microvirus Ebor attached to B10 host cell reconstructed by single particle analysis with applied C5 symmetry
Method: single particle / : Bardy P, MacDonald CIW, Jenkins HT, Chechik M, Hart SJ, Turkenburg JP, Blaza JN, Fogg PCM, Antson AA

EMDB-50360:
Rhodobacter microvirus Ebor attached to the outer membrane vesicle
Method: subtomogram averaging / : Bardy P, Blaza JN, Jenkins HT, Nicholas TR, Konig HC, Alim NTB, Hart SJ, Turkenburg JP, Fogg PCM, Beatty JT, Antson AA

EMDB-50361:
Rhodobacter microvirus Ebor attached to the host cell reconstructed by subtomogram averaging
Method: subtomogram averaging / : Bardy P, Traore DAK, Blaza JN, Jenkins HT, Nicholas TR, Hart SJ, Turkenburg JP, Fogg PCM, Antson AA

EMDB-42983:
Structure of the Human Respirovirus 3 Fusion Protein Bound to Camelid Nanobodies 4C03 and 4C06
Method: single particle / : Johnson NV, Ramamohan AR, McLellan JS

EMDB-42987:
Structure of the Human Respirovirus 3 Fusion Protein Bound to Camelid Nanobodies 1D10 and 4C06
Method: single particle / : Johnson NJ, Ramamohan AR, McLellan JS

EMDB-40815:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies C3V5, V1V3, N611 and base from participant 017
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-40816:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies gp41-N611/FP and base from participant 03
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-40817:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies gp41-N611/FP and base from participant 07
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-40818:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies gp120-GH and base from participant 09
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-40819:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies C3V5, V1V3, gp41-GH/FP and base from participant 11
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-36376:
membrane proteins
Method: single particle / : Yu J, Ge JP, Ruisheng X

EMDB-36386:
membrane proteins
Method: single particle / : Yu J, Ge JP, Xu RS

EMDB-36387:
membrane proteins
Method: single particle / : Yu J, Ge JP, Xu RS

EMDB-36388:
membrane proteins
Method: single particle / : Yu J, Ge JP, Xu RS

EMDB-17296:
Stabilised BA.1 SARS-CoV-2 spike with H6 nanobodies in '2 up 1 down' RBD conformation
Method: single particle / : Weckener M, Naismith JH, Owens RJ

EMDB-19136:
Thinner is not always better: Optimising cryo lamellae for subtomogram averaging
Method: subtomogram averaging / : Tuijtel MW, Cruz-Leon S, Kreysing JP, Welsch S, Hummer G, Beck M, Turonova B

EMDB-19160:
Thinner is not always better: Optimising cryo lamellae for subtomogram averaging - Lamella thickness analysis
Method: subtomogram averaging / : Tuijtel MW, Cruz-Leon S, Kreysing JP, Welsch S, Hummer G, Beck M, Turonova B

EMDB-19161:
Thinner is not always better: Optimising cryo lamellae for subtomogram averaging - Ion-damage layer analysis
Method: subtomogram averaging / : Tuijtel MW, Cruz-Leon S, Kreysing JP, Welsch S, Hummer G, Beck M, Turonova B

EMDB-41088:
SpRY-Cas9:gRNA complex bound to non-target DNA with 10 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-40681:
SpRY-Cas9:gRNA complex targeting TGG PAM DNA
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-40705:
SpRY-Cas9:gRNA complex targeting TTC PAM DNA
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-40740:
SpRY-Cas9:gRNA complex targeting TAC PAM DNA
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41073:
SpRY-Cas9:gRNA complex targeting TAC PAM DNA with 0 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41074:
SpRY-Cas9:gRNA complex targeting TAC PAM DNA with 2 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41079:
SpRY-Cas9:gRNA complex targeting TAC PAM DNA with 10 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41080:
SpRY-Cas9:gRNA complex targeting TAC PAM DNA with 13 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41083:
SpRY-Cas9:gRNA complex targeting TAC PAM DNA with 18 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41084:
SpRY-Cas9:gRNA complex bound to non-target DNA with 1 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41085:
SpRY-Cas9:gRNA complex targeting TAC PAM DNA with 3 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41086:
SpRY-Cas9:gRNA complex bound to non-target DNA with 6 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41087:
SpRY-Cas9:gRNA complex bound to non-target DNA with 8 bp R-loop
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41093:
SpRYmer bound to NAC PAM DNA
Method: single particle / : Hibshman GN, Bravo JPK, Taylor DW

EMDB-41775:
SpG Cas9 with NGC PAM DNA target
Method: single particle / : Bravo JPK, Hibshman GN, Taylor DW

EMDB-41867:
SpG Cas9 with NGG PAM DNA target
Method: single particle / : Bravo JPK, Hibshman GN, Taylor DW

EMDB-43017:
60S ribosome biogenesis intermediate (Dbp10 pre-catalytic structure - Overall map)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43018:
60S ribosome biogenesis intermediate (Dbp10 pre-catalytic structure - PTC Local map)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43019:
60S ribosome biogenesis intermediate (Dbp10 pre-catalytic structure - Local map L1 region)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43020:
60S ribosome biogenesis intermediate (Dbp10 pre-catalytic structure - Local map Rrp14/Rrp15/Ssf1 region)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43021:
60S ribosome biogenesis intermediate (Dbp10 catalytic structure - Overall map)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43022:
60S ribosome biogenesis intermediate (Dbp10 catalytic structure - Dbp10 Local map)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43023:
60S ribosome biogenesis intermediate (Dbp10 catalytic structure - Low-pass filtered locally refined map)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43024:
60S ribosome biogenesis intermediate (Dbp10 catalytic structure - L1 local map
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43026:
60S ribosome biogenesis intermediate (Dbp10 catalytic intermediate - Rrp14/Rrp15/Ssf1 local map)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43027:
60S ribosome biogenesis intermediate (Dbp10 post-catalytic structure - Overall map)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

EMDB-43028:
60S ribosome biogenesis intermediate (Dbp10 post-catalytic structure - Dbp10 Local map)
Method: single particle / : Cruz VE, Weirich CS, Peddada N, Erzberger JP

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External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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