• HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
Tuesday, August 12, 2025
BIOENGINEER.ORG
No Result
View All Result
  • Login
  • HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
        • Lecturer
        • PhD Studentship
        • Postdoc
        • Research Assistant
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
  • HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
        • Lecturer
        • PhD Studentship
        • Postdoc
        • Research Assistant
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
No Result
View All Result
Bioengineer.org
No Result
View All Result
Home NEWS Science News Science

Molecular structure in Zika virus leads to potentially disease-causing RNAs

Bioengineer by Bioengineer
November 11, 2016
in Science
Reading Time: 3 mins read
1
Share on FacebookShare on TwitterShare on LinkedinShare on RedditShare on Telegram

AURORA, Colo. (Nov. 10, 2016) – – Researchers, led by scientists at the University of Colorado School of Medicine, have found basic molecular processes used by the Zika virus to "hijack" the cells that it infects and potentially how it makes molecules that are directly linked to disease.

The discovery, published in the journal Science, shows that a part of the Zika virus's RNA genome folds up into a complex structure and that this structure leads to the production of smaller RNAs that in related viruses are directly linked to disease.

Viruses cannot reproduce on their own, they must infect cells and "hijack" the cell's biological machinery in order to make more copies of themselves. To do this, viruses use many molecular strategies.

Zika is an example of a virus that does not store its genome in DNA, rather it uses a related molecule called the viral genomic RNA. Viruses related to Zika, such as West Nile and Dengue, are known to produce a set of smaller RNAs during infection (in addition to the long genomic RNA) that have been directly linked to disease. This process had not been explored with Zika virus until this study.

The findings of this study show that Zika infection leads to the production of these smaller RNAs in several types of cells. The researchers show that part of the Zika genomic RNA "folds up" into a complex structure that interacts with and blocks a powerful cellular enzyme that normally destroys RNA, and the researchers used an advanced technique called x-ray crystallography to solve the structure of this folded-up RNA segment. By altering the Zika virus genomic RNA, the team was able to disrupt this structure and eliminate the production of the potentially disease-causing small RNAs.

Jeffrey Kieft, PhD, professor of biochemistry and molecular genetics, led a team that consisted of scientists at the University of Colorado School of Medicine (Aurora, CO), the Advanced Light Source at the Lawrence Berkeley National Laboratory (Berkeley, CA), and the University of Texas Medical Branch (Galveston, TX). He is the corresponding author of the article, published in the journal Science. Benjamin Akiyama, PhD, a member of Dr. Kieft's Lab, was the lead author on the study.

"The first step is stopping any process that causes disease is to understand that process in detail, preferably at the molecular level." said Dr. Kieft, who is also a member of the University of Colorado RNA BioScience Initiative. "Based on what we knew about related viruses, there was reason to suspect that Zika virus infection would result in potentially disease-causing RNAs, but we couldn't be sure. Now, having observed them and the molecular structures involved, we can ask new questions about the fundamental molecular processes Zika uses to take over a cell and cause disease."

The findings could also inform ongoing efforts to develop a vaccine or other anti-Zika therapeutics. Also, because Zika is closely related to other dangerous viruses such as Dengue, West Nile, Japanese Encephalitis and Yellow Fever, the discoveries may be broadly applicable to understanding these viruses and may help in efforts to stop them.

###

About the University of Colorado School of Medicine

Faculty at the University of Colorado School of Medicine work to advance science and improve care. These faculty members include physicians, educators and scientists at University of Colorado Health, Children's Hospital Colorado, Denver Health, National Jewish Health, and the Denver Veterans Affairs Medical Center. The school is located on the Anschutz Medical Campus, one of four campuses in the University of Colorado system.

Media Contact

Mark Couch
[email protected]
303-724-5377
@CUAnschutz

http://www.ucdenver.edu

Share12Tweet8Share2ShareShareShare2

Related Posts

Five or more hours of smartphone usage per day may increase obesity

July 25, 2019
IMAGE

NASA’s terra satellite finds tropical storm 07W’s strength on the side

July 25, 2019

NASA finds one burst of energy in weakening Depression Dalila

July 25, 2019

Researcher’s innovative flood mapping helps water and emergency management officials

July 25, 2019
Please login to join discussion

POPULAR NEWS

  • blank

    Molecules in Focus: Capturing the Timeless Dance of Particles

    140 shares
    Share 56 Tweet 35
  • Neuropsychiatric Risks Linked to COVID-19 Revealed

    78 shares
    Share 31 Tweet 20
  • Modified DASH Diet Reduces Blood Sugar Levels in Adults with Type 2 Diabetes, Clinical Trial Finds

    57 shares
    Share 23 Tweet 14
  • Overlooked Dangers: Debunking Common Myths About Skin Cancer Risk in the U.S.

    61 shares
    Share 24 Tweet 15

About

We bring you the latest biotechnology news from best research centers and universities around the world. Check our website.

Follow us

Recent News

How Sputtering Is Accelerating the Adoption of High-Performance ScAlN-Based Transistors

Ready-Made Cancer Vaccine Triggers Robust Immune Response in Pancreatic and Colorectal Cancer Patients

Novel Approach Enhances Immunotherapy Effectiveness Against the Most Aggressive Lung Cancer

  • Contact Us

Bioengineer.org © Copyright 2023 All Rights Reserved.

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In
No Result
View All Result
  • Homepages
    • Home Page 1
    • Home Page 2
  • News
  • National
  • Business
  • Health
  • Lifestyle
  • Science

Bioengineer.org © Copyright 2023 All Rights Reserved.