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Showing 1 - 50 of 78 items for (author: cao & ly)

EMDB-18387:
FtsH1 protease from P.aeruginosa clone C in negative stain
Method: single particle / : Mawla GD, Mansour Kamal S, Cao LY, Purhonen P, Hebert H, Sauer RT, Baker TA, Romling U

EMDB-18388:
FtsH2 protease from P.aeruginosa clone C in negative stain
Method: single particle / : Mawla GD, Mansour Kamal S, Cao LY, Purhonen P, Hebert H, Sauer RT, Baker TA, Romling U

EMDB-18389:
P.aeruginosa clone C construct PaFtsH2-H1-link32 in negative stain
Method: single particle / : Mawla GD, Mansour Kamal S, Cao LY, Purhonen P, Hebert H, Sauer RT, Baker TA, Romling U

EMDB-17557:
Cryo-EM structure of cortactin-stabilized Arp2/3-complex nucleated actin branches-Local refined map on mother filament
Method: single particle / : Liu T, Moores CA

EMDB-17553:
Cryo-EM structure of cortactin-stabilized Arp2/3 complex nucleated actin branches-Daughter filament consensus map
Method: single particle / : Liu T, Moores CA

EMDB-17554:
Cryo-EM structure of cortactin-stabilized Arp2/3 nucleated actin branches-Local refined map on Arp2/3 complex
Method: single particle / : Liu T, Moores CA

EMDB-17555:
Cryo-EM structure of cortactin-stabilized Arp2/3-complex nucleated actin branches-Local refined map on the daughter filament and cortactin density
Method: single particle / : Liu T, Moores CA

EMDB-17556:
Cryo-EM structure of cortactin-stabilized Arp2/3-complex nucleated actin branches-Local refined map on capping protein
Method: single particle / : Liu T, Moores CA

EMDB-17558:
Cryo-EM structure of cortactin stabilized Arp2/3-complex nucleated actin branches
Method: single particle / : Liu T, Moores CA

PDB-8p94:
Cryo-EM structure of cortactin stabilized Arp2/3-complex nucleated actin branches
Method: single particle / : Liu T, Moores CA

EMDB-40983:
Negative stain EM assembly of MYC, JAZ, and NINJA complex
Method: single particle / : Zhou XE, Zhang Y, Zhou Y, He Q, Cao X, Kariapper L, Suino-Powell K, Zhu Y, Zhang F, Karsten M

PDB-8t2i:
Negative stain EM assembly of MYC, JAZ, and NINJA complex
Method: single particle / : Zhou XE, Zhang Y, Zhou Y, He Q, Cao X, Kariapper L, Suino-Powell K, Zhu Y, Zhang F, Karsten M

EMDB-34833:
Cryo-EM structure of Gq-coupled MRGPRX1 bound with Compound-16
Method: single particle / : Gan B, Yu LY, Ren RB

EMDB-15947:
Direct observation of the open conformational state of formin mDia1 at actin filament barbed end
Method: single particle / : Maufront J, Guichard B, Cao L, Di Cicco A, Jegou A, Romet-Lemonne G, Bertin A

EMDB-15950:
Direct observation of the closed conformational state of formin mDia1 at actin filament barbed end
Method: single particle / : Maufront J, Guichard B, Cao L, Di Cicco A, Jegou A, Romet-Lemonne G, Bertin A

EMDB-15957:
Direct observation of the conformational state of formin mDia1 dimer along the actin filament
Method: single particle / : Maufront J, Guichard B, Cao L, Di Cicco A, Jegou A, Romet-Lemonne G, Bertin A

EMDB-26507:
SARS-CoV-2 spike in complex with Multivalent miniprotein inhibitor FUS231-P24 (2RBDs open)
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-26508:
SARS-CoV-2 spike in complex with multivalent miniprotein inhibitor FUS231-P24 (3RBDs open)
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-26509:
SARS-CoV-2 spike in complex with multivalent miniprotein inhibitor FUS31-G10 (2RBDs open)
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-26510:
SARS-CoV-2 spike in complex with multivalent miniprotein inhibitor FUS31-G10 (3RBDs open)
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-26511:
SARS-CoV-2 spike in complex with AHB2-2GS-SB175 (local refinement of the RBD and AHB2)
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-26512:
SARS-CoV-2 spike in complex with AHB2-2GS-SB175
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

PDB-7uhb:
SARS-CoV-2 spike in complex with AHB2-2GS-SB175 (local refinement of the RBD and AHB2)
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

PDB-7uhc:
SARS-CoV-2 spike in complex with AHB2-2GS-SB175
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-26180:
Calcitonin Receptor in complex with Gs and rat amylin peptide, CT-like state
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26188:
Calcitonin Receptor in complex with Gs and salmon calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26197:
Human Amylin2 Receptor in complex with Gs and rat amylin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyi:
Calcitonin Receptor in complex with Gs and rat amylin peptide, CT-like state
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyn:
Calcitonin Receptor in complex with Gs and salmon calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyx:
Human Amylin2 Receptor in complex with Gs and rat amylin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26178:
Human Amylin1 Receptor in complex with Gs and rat amylin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26179:
Human Amylin2 Receptor in complex with Gs and human calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26184:
Calcitonin Receptor in complex with Gs and rat amylin peptide, bypass motif
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26190:
Calcitonin receptor in complex with Gs and human calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26196:
Human Amylin1 Receptor in complex with Gs and salmon calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26199:
Human Amylin2 Receptor in complex with Gs and salmon calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-26208:
Human Amylin3 Receptor in complex with Gs and rat amylin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyf:
Human Amylin1 Receptor in complex with Gs and rat amylin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyh:
Human Amylin2 Receptor in complex with Gs and human calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyl:
Calcitonin Receptor in complex with Gs and rat amylin peptide, bypass motif
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyo:
Calcitonin receptor in complex with Gs and human calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyw:
Human Amylin1 Receptor in complex with Gs and salmon calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tyy:
Human Amylin2 Receptor in complex with Gs and salmon calcitonin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

PDB-7tzf:
Human Amylin3 Receptor in complex with Gs and rat amylin peptide
Method: single particle / : Cao J, Belousoff MJ, Johnson RM, Wootten DL, Sexton PM

EMDB-25143:
Structure of positive allosteric modulator-bound active human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

EMDB-25144:
Structure of positive allosteric modulator-free active human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

EMDB-25145:
Structure of negative allosteric modulator-bound inactive human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

PDB-7sil:
Structure of positive allosteric modulator-bound active human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

PDB-7sim:
Structure of positive allosteric modulator-free active human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

PDB-7sin:
Structure of negative allosteric modulator-bound inactive human calcium-sensing receptor
Method: single particle / : Park J, Zuo H, Frangaj A, Fu Z, Yen LY, Zhang Z, Mosyak L, Slavkovich VN, Liu J, Ray KM, Cao B, Vallese F, Geng Y, Chen S, Grassucci R, Dandey VP, Tan YZ, Eng E, Lee Y, Kloss B, Liu Z, Hendrickson WA, Potter CS, Carragher B, Graziano J, Conigrave AD, Frank J, Clarke OB, Fan QR

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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

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