Kaiming Zhang

Kaiming Zhang

Stanford University

H-index: 27

North America-United States

About Kaiming Zhang

Kaiming Zhang, With an exceptional h-index of 27 and a recent h-index of 27 (since 2020), a distinguished researcher at Stanford University, specializes in the field of Cryo-EM, RNA structures, Structure-guided drug discovery.

His recent articles reflect a diverse array of research interests and contributions to the field:

Mechanism of Ψ-Pro/C-degron recognition by the CRL2FEM1B ubiquitin ligase

Bifurcated assembly pathway and dual function of a Lon-like protease revealed by cryo-EM Analysis

Potent human neutralizing antibodies against Nipah virus derived from two ancestral antibody heavy chains

Tertiary folds of the SL5 RNA from the 5′ proximal region of SARS-CoV-2 and related coronaviruses

Structural and mechanistic insights into ribosomal ITS2 RNA processing by nuclease-kinase machinery

Molecular mechanism of antihistamines recognition and regulation of the histamine H1 receptor

RNA target highlights in CASP15: Evaluation of predicted models by structure providers

A 5+1 assemble-to-activate mechanism of the Lon proteolytic machine

Kaiming Zhang Information

University

Position

___

Citations(all)

2720

Citations(since 2020)

2426

Cited By

957

hIndex(all)

27

hIndex(since 2020)

27

i10Index(all)

34

i10Index(since 2020)

34

Email

University Profile Page

Google Scholar

Kaiming Zhang Skills & Research Interests

Cryo-EM

RNA structures

Structure-guided drug discovery

Top articles of Kaiming Zhang

Mechanism of Ψ-Pro/C-degron recognition by the CRL2FEM1B ubiquitin ligase

Nature Communications

2024/4/26

Bifurcated assembly pathway and dual function of a Lon-like protease revealed by cryo-EM Analysis

Fundamental Research

2024/4/19

Potent human neutralizing antibodies against Nipah virus derived from two ancestral antibody heavy chains

Nature Communications

2024/4/6

Tertiary folds of the SL5 RNA from the 5′ proximal region of SARS-CoV-2 and related coronaviruses

Proceedings of the National Academy of Sciences

2024/3/5

Structural and mechanistic insights into ribosomal ITS2 RNA processing by nuclease-kinase machinery

Elife

2024/1/5

Molecular mechanism of antihistamines recognition and regulation of the histamine H1 receptor

Nature Communications

2024/1/2

RNA target highlights in CASP15: Evaluation of predicted models by structure providers

Proteins: Structure, Function, and Bioinformatics

2023/12

A 5+1 assemble-to-activate mechanism of the Lon proteolytic machine

Nature Communications

2023/11/13

Protein double-shell nanostructures and their use

2023/11/9

Molecular basis for C-degron recognition by CRL2APPBP2 ubiquitin ligase

Proceedings of the National Academy of Sciences

2023/10/24

Snapshots of the second-step self-splicing of Tetrahymena ribozyme revealed by cryo-EM

Nature Communications

2023/3/16

Structural basis of vitamin C recognition and transport by mammalian SVCT1 transporter

Nature Communications

2023/3/13

Snapshots of the first-step self-splicing of Tetrahymena ribozyme revealed by cryo-EM

Nucleic Acids Research

2023/2/22

Cryo-EM structure of the plant nitrate transporter AtCLCa reveals characteristics of the anion-binding site and the ATP-binding pocket

Journal of Biological Chemistry

2023/2/1

Tertiary folds of the SL5 RNA from the 5'proximal region of SARS-CoV-2 and related coronaviruses (preprint)

2023

Cryo-EM advances in RNA structure determination

2022/2/23

Kaiming Zhang
Kaiming Zhang

H-Index: 17

Zhaoming Su
Zhaoming Su

H-Index: 15

Cryo-EM, protein engineering, and simulation enable the development of peptide therapeutics against acute myeloid leukemia

ACS Central Science

2022/2/7

A prototype protein nanocage minimized from carboxysomes with gated oxygen permeability

Proceedings of the National Academy of Sciences

2022/2/1

See List of Professors in Kaiming Zhang University(Stanford University)

Co-Authors

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