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Microbiology

D-Index
77
Citations
16729
World Ranking
1375
National Ranking
600

Overview

C. Cheng Kao is affiliated with Indiana University in the United States. Their research primarily focuses on Medicine with a specific interest in Pulmonary and Respiratory Medicine. This specialization aligns closely with their study of infection control and ventilation systems.

They have contributed to the scientific community through publications centered on respiratory health and airflow dynamics. Their recent work includes a paper titled Investigating Airflow Transmission Pathways of Respiratory Viruses in High-Rise Residential Buildings Based on CFD Model, published in 2025 by the journal Indoor Air. This publication examines how respiratory viruses may be transmitted through airflow mechanisms in residential environments, highlighting the application of computational fluid dynamics (CFD) modeling.

Their research topics cover the detailed investigation of infection control and ventilation aspects related to respiratory viruses, which is reflected in the topics they have addressed:

  • Infection Control and Ventilation

C. Cheng Kao has collaborated with several co-authors throughout their research career. Notable frequent collaborators include:

  • Hua-Yueh Liu
  • Yu-Chieh Chu
  • Ziping Chiang

Their work is predominantly published in the journal Indoor Air, indicating a focus on environmental factors impacting respiratory health and indoor air quality.

Best Publications

  • Cyclic GMP-AMP Synthase is Activated by Double-stranded DNA-Induced Oligomerization

    Xin Li;Chang Shu;Guanghui Yi;Catherine T. Chaton

  • Adenovirus E1A activation domain binds the basic repeat in the TATA box transcription factor

    Wes S. Lee;C. Cheng Kao;Gene O. Bryant;Xuan Liu

  • An oligomeric signaling platform formed by the Toll-like receptor signal transducers MyD88 and IRAK-4.

    Precious G. Motshwene;Martin C. Moncrieffe;Jorg Gunter Grossmann;Cheng C. Kao

  • A simple and efficient method to reduce nontemplated nucleotide addition at the 3 terminus of RNAs transcribed by T7 RNA polymerase.

    C Kao;M Zheng;S Rüdisser

  • Cloning of a transcriptionally active human TATA binding factor.

    C. Cheng Kao;Paul M. Lieberman;Martin C. Schmidt;Qiang Zhou

  • Analysis of RNA-dependent RNA polymerase structure and function as guided by known polymerase structures and computer predictions of secondary structure.

    Erin K. O'Reilly;C.Cheng Kao

  • Coronavirus nonstructural protein 15 mediates evasion of dsRNA sensors and limits apoptosis in macrophages.

    Xufang Deng;Matthew Hackbart;Robert C. Mettelman;Amornrat O'Brien

  • Structure of STING bound to cyclic di-GMP reveals the mechanism of cyclic dinucleotide recognition by the immune system.

    Chang Shu;Guanghui Yi;Tylan Watts;C Cheng Kao

  • Core-controlled polymorphism in virus-like particles

    Jingchuan Sun;Chris DuFort;Marie-Christine Daniel;Ayaluru Murali

  • Single Nucleotide Polymorphisms of Human STING Can Affect Innate Immune Response to Cyclic Dinucleotides

    Guanghui Yi;Volker P. Brendel;Chang Shu;Pingwei Li

  • Domains required for in vitro association between the cellular p53 and the adenovirus 2 E1B 55K proteins.

    C.Cheng Kao;P.Renee Yew;Arnold J. Berk

  • Nanoparticle-templated assembly of viral protein cages.

    Chao Chen;Marie-Christine Daniel;Zachary T. Quinkert;Mrinmoy De

  • The Severe Acute Respiratory Syndrome Coronavirus Nsp15 Protein Is an Endoribonuclease That Prefers Manganese as a Cofactor

    Kanchan Bhardwaj;Linda Guarino;C. Cheng Kao

  • The structural basis of 5' triphosphate double-stranded RNA recognition by RIG-I C-terminal domain.

    Cheng Lu;Hengyu Xu;C.T. Ranjith-Kumar;Monica T. Brooks

  • Quantum dot encapsulation in viral capsids.

    Suraj K. Dixit;Nancy L. Goicochea;Marie-Christine Daniel;Ayaluru Murali

  • De novo initiation of viral RNA-dependent RNA synthesis.

    C.Cheng Kao;Paul Singh;David J. Ecker

  • Yeast TATA-box transcription factor gene.

    Martin C. Schmidt;C. Cheng Kao;Rui Pei;Arnold J. Berk

  • Structure and Function of the Zika Virus Full-Length NS5 Protein

    Baoyu Zhao;Guanghui Yi;Fenglei Du;Yin Chih Chuang

  • Self-Assembled Virus-like Particles with Magnetic Cores

    Xinlei Huang;Lyudmila M. Bronstein;John Retrum;Chris Dufort

  • The RIG-I-like Receptor LGP2 Recognizes the Termini of Double-stranded RNA

    Xiaojun Li;C.T. Ranjith-Kumar;Monica T Brooks;Srisathiyanarayanan Dharmaiah

  • Gold nanoparticles as spectroscopic enhancers for in vitro studies on single viruses.

    Bogdan Dragnea;Chao Chen;Eun-Soo Kwak;Barry Stein

Frequent Co-Authors

Ian Goodfellow
Ian Goodfellow University of Cambridge
Vincent M. Rotello
Vincent M. Rotello University of Massachusetts Amherst
Arnold J. Berk
Arnold J. Berk University of California, Los Angeles
Chang Shu
Chang Shu National University of Singapore
Paul Ahlquist
Paul Ahlquist University of Wisconsin–Madison
Barry E. Stein
Barry E. Stein Wake Forest University
Linda A. Guarino
Linda A. Guarino Texas A&M University
Hiroaki Matsunami
Hiroaki Matsunami Duke University
Marilyn J. Roossinck
Marilyn J. Roossinck Pennsylvania State University
James C. Sacchettini
James C. Sacchettini Texas A&M University

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