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Showing 1 - 50 of 10,759 items for (author: yi & f)

EMDB-80306:
Cryo-EM Structure of PLPP3
Method: single particle / : Long T, Wu Y

EMDB-81156:
Structure of PLPP3 prepared in the presence of EDTA
Method: single particle / : Long T

PDB-25qp:
Cryo-EM Structure of PLPP3
Method: single particle / : Long T, Wu Y

EMDB-64756:
Apo SLC36A1
Method: single particle / : Zhang SS

EMDB-64757:
SLC36A1 bound to D-cycloserine
Method: single particle / : Zhang SS

EMDB-64759:
SLC36A1 bound to D-serine
Method: single particle / : Zhang SS

EMDB-64762:
SLC36A1 bound to D-NPA
Method: single particle / : Zhang SS

PDB-9v3t:
Apo SLC36A1
Method: single particle / : Zhang SS

PDB-9v3v:
SLC36A1 bound to D-cycloserine
Method: single particle / : Zhang SS

PDB-9v3x:
SLC36A1 bound to D-serine
Method: single particle / : Zhang SS

PDB-9v3z:
SLC36A1 bound to D-NPA
Method: single particle / : Zhang SS

EMDB-56552:
CLASS-1_APE_CRYO-EM CONSENSUS MAP OF LD32CS1C1 EDITED RIBOSOMES IN COMPLEX WITH MRNA AND TRNA
Method: single particle / : Rajan KS, Yonath A

EMDB-56554:
CLASS-2_EP_CRYO-EM CONSENSUS MAP OF LD32CS1C1 EDITED RIBOSOMES IN COMPLEX WITH MRNA AND TRNA
Method: single particle / : Rajan KS, Yonath A

EMDB-56555:
CLASS-5_APE_CRYO-EM CONSENSUS MAP OF LD32CS1C1 EDITED RIBOSOMES IN COMPLEX WITH MRNA AND TRNA
Method: single particle / : Rajan KS, Yonath A

EMDB-56556:
CLASS-6_APE_CRYO-EM CONSENSUS MAP OF LD32CS1C1 EDITED RIBOSOMES IN COMPLEX WITH MRNA AND TRNA
Method: single particle / : Rajan KS, Yonath A

EMDB-56557:
CLASS-7_EP_CRYO-EM CONSENSUS MAP OF LD32CS1C1 EDITED RIBOSOMES IN COMPLEX WITH MRNA AND TRNA
Method: single particle / : Rajan KS, Yonath A

EMDB-57250:
Cryo-EM consensus map of lm32cs1c1 m6 overexpression : class 10
Method: single particle / : Rajan KS, Yoanth A

EMDB-66504:
Phage T4 neck in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66505:
Phage T4 sheath in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66506:
Phage T4 inner baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66507:
Phage T4 peripheral baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66508:
Phage T4 tip of the tail tube in post-tail-contraction state (genome-empty particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66675:
Phage T4 protruding part of the tail tube in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3o:
Phage T4 neck in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3p:
Phage T4 sheath in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3q:
Phage T4 inner baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3r:
Phage T4 peripheral baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3s:
Phage T4 tip of the tail tube in post-tail-contraction state (genome-empty particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9xa3:
Phage T4 protruding part of the tail tube in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-68177:
C5a-desArg bound C5aR2 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68262:
C5a bound C5aR2 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68263:
C5a bound C5aR1 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68264:
C5a bound C5aR1 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68516:
C5a bound C5aR2 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68517:
C5a bound C5aR2 in complex with beta-arrestin1(focused on Receptor)
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68520:
C5a bound C5aR1(V2R C tail) in complex with beta-arrestin1 (Focus on Receptor)
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68524:
C5a bound C5aR1(V2R C tail) in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68525:
C5a bound C5aR1(V2R C tail) in complex with beta-arrestin1 (Focus on Arrestin)
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68529:
C5a-desArg bound C5aR2 in complex with beta-arrestin1(focus on receptor)
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68531:
C5a-desArg bound C5aR2 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-68534:
C5a-desArg bound C5aR2 in complex with beta-arrestin1 (Focus on Arrestin)
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-77405:
C5a bound C5aR2 in complex with beta-arrestin1 (focused on barr1-Fab30 complex)
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

PDB-22cr:
C5a-desArg bound C5aR2 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

PDB-22gk:
C5a bound C5aR2 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

PDB-22gl:
C5a bound C5aR1 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

PDB-22gm:
C5a bound C5aR1 in complex with beta-arrestin1
Method: single particle / : Qin J, Cai C, Shan M, Zhang Y

EMDB-67393:
Hemoglobin amyloid fibril - PM2
Method: helical / : Li S, Cao Q, Cao Y

PDB-20yj:
Hemoglobin amyloid fibril - PM2
Method: helical / : Li S, Cao Q, Cao Y

EMDB-69827:
horse myoglobin amyloid fibril - PM3
Method: helical / : Li S, Cao Q, Cao Y

EMDB-81514:
horse myoglobin amyloid fibril - PM2
Method: helical / : Li S, Cao Q, Cao Y

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

Related info.:EMDB header

External links:wwPDB to switch to version 3 of the EMDB data model

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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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • EM Navigator can help to find cryo-EM structure data by both pioneers.

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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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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