Thursday, September 25, 2025
Science
No Result
View All Result
  • Login
  • HOME
  • SCIENCE NEWS
  • CONTACT US
  • HOME
  • SCIENCE NEWS
  • CONTACT US
No Result
View All Result
Scienmag
No Result
View All Result
Home Science News Marine

Marine algae use massive enzymes of unprecedented size to biosynthesize fish-killing toxins

August 8, 2024
in Marine
Reading Time: 3 mins read
0
Marine algae use massive enzymes of unprecedented size to biosynthesize fish-killing toxins
66
SHARES
599
VIEWS
Share on FacebookShare on Twitter
ADVERTISEMENT

Marine algae Prymnesium parvum use massive enzymes dubbed PKZILLAs – some of the largest proteins ever to be identified in nature – to make large and complex prymnesin neurotoxins responsible for mass fish kills during harmful algal blooms worldwide, researchers report. “The discovery and initial characterization of the prymnesin PKZILLA gigasynthases now elucidates the long-standing question about how microalgae biosynthesize their giant polyketide polyether molecules,” write the authors. It also expands expectations of genetic and enzymatic size limits in biology. Many marine microbes produce exotic organic molecules with varied biological functions. Some microalgae, like P.  parvum, are known for producing some of the largest nonpolymeric carbon chain molecules in nature, including polyketide polyether biotoxins. During harmful algal blooms, neurotoxic prymnesins compounds are notorious for causing environmental damage, including massive environmental fish kills. However, despite decades of extensive research, how these microalgae produce such large and complex compounds is poorly understood. Using a customized gene annotation strategy, Timothy Fallon and colleagues discovered genes in P. parvum, which they named PKZILLAs (PKZILLA-1 and PKZILLA-2), that are involved in the production of polyketide synthase (PKS) enzymes. Notably, Fallon et al. found that these enzymes were massive, with PKZILLA-1 being one of the largest proteins ever identified at 4.7 megadaltons and containing 140 enzyme domains. Although slightly smaller, PKZILLA-2 is 3.2 megadaltons with 99 enzyme domains. According to the findings, these massive PKS gigasynthases are responsible for the biosynthesis of the 90-carbon backbone of prymnesin toxins. The authors also characterized a variant, PKZILLA-B1, which produces a shorter version of these toxins.

Marine algae Prymnesium parvum use massive enzymes dubbed PKZILLAs – some of the largest proteins ever to be identified in nature – to make large and complex prymnesin neurotoxins responsible for mass fish kills during harmful algal blooms worldwide, researchers report. “The discovery and initial characterization of the prymnesin PKZILLA gigasynthases now elucidates the long-standing question about how microalgae biosynthesize their giant polyketide polyether molecules,” write the authors. It also expands expectations of genetic and enzymatic size limits in biology. Many marine microbes produce exotic organic molecules with varied biological functions. Some microalgae, like P.  parvum, are known for producing some of the largest nonpolymeric carbon chain molecules in nature, including polyketide polyether biotoxins. During harmful algal blooms, neurotoxic prymnesins compounds are notorious for causing environmental damage, including massive environmental fish kills. However, despite decades of extensive research, how these microalgae produce such large and complex compounds is poorly understood. Using a customized gene annotation strategy, Timothy Fallon and colleagues discovered genes in P. parvum, which they named PKZILLAs (PKZILLA-1 and PKZILLA-2), that are involved in the production of polyketide synthase (PKS) enzymes. Notably, Fallon et al. found that these enzymes were massive, with PKZILLA-1 being one of the largest proteins ever identified at 4.7 megadaltons and containing 140 enzyme domains. Although slightly smaller, PKZILLA-2 is 3.2 megadaltons with 99 enzyme domains. According to the findings, these massive PKS gigasynthases are responsible for the biosynthesis of the 90-carbon backbone of prymnesin toxins. The authors also characterized a variant, PKZILLA-B1, which produces a shorter version of these toxins.

 

For reporters interested in other research that challenges prevailing views of the size limits of biological entities, a 2022 Science Research Article reported discovering discovering a bacterium so large that it can be seen by the naked eye.



Journal

Science

DOI

10.1126/science.ado3290

Article Title

Giant polyketide synthase enzymes in the biosynthesis of giant marine polyether toxins

Article Publication Date

9-Aug-2024

Share26Tweet17
Previous Post

Money trees: WVU researchers looking at local benefits from climate fighting ability in Appalachian forests

Next Post

Type 2 diabetes cases more than doubled seven decades after exposure to famine

Related Posts

blank
Marine

Servicing Boosts Quality of Life in Container Sanitation

September 25, 2025
blank
Marine

World War Artifacts Beneath the Waves: Creating New Habitats for Marine Life

September 25, 2025
blank
Marine

Breakthrough Unmanned Submersible Created to Gather Typhoon Data and Enhance Forecast Accuracy

September 25, 2025
blank
Marine

FAU Receives US EPA Grant to Advance Genetic Integration in Florida Bay Sponge Restoration

September 25, 2025
blank
Marine

Ultrasensitive Reversible Sensors Detect Perfluorooctane Sulfonic Acid

September 25, 2025
blank
Marine

Endangered Indus River Dolphins Found Contaminated with Microplastics in First-Ever Discovery

September 24, 2025
Next Post
Type 2 diabetes cases more than doubled seven decades after exposure to famine

Type 2 diabetes cases more than doubled seven decades after exposure to famine

  • Mothers who receive childcare support from maternal grandparents show more parental warmth, finds NTU Singapore study

    Mothers who receive childcare support from maternal grandparents show more parental warmth, finds NTU Singapore study

    27554 shares
    Share 11018 Tweet 6887
  • University of Seville Breaks 120-Year-Old Mystery, Revises a Key Einstein Concept

    968 shares
    Share 387 Tweet 242
  • Bee body mass, pathogens and local climate influence heat tolerance

    645 shares
    Share 258 Tweet 161
  • Researchers record first-ever images and data of a shark experiencing a boat strike

    512 shares
    Share 205 Tweet 128
  • Groundbreaking Clinical Trial Reveals Lubiprostone Enhances Kidney Function

    464 shares
    Share 186 Tweet 116
Science

Embark on a thrilling journey of discovery with Scienmag.com—your ultimate source for cutting-edge breakthroughs. Immerse yourself in a world where curiosity knows no limits and tomorrow’s possibilities become today’s reality!

RECENT NEWS

  • QT Interval Prolongation in Hospitalized Geriatric Patients
  • Robot-Assisted Bronchoscopy Enables Diagnosis of Smallest, Hard-to-Reach Lung Tumors
  • The Pros and Cons of AI in Forestry Management
  • MD Anderson Experts Reveal Key Trends to Watch Ahead of the 2025 ASTRO Meeting

Categories

  • Agriculture
  • Anthropology
  • Archaeology
  • Athmospheric
  • Biology
  • Blog
  • Bussines
  • Cancer
  • Chemistry
  • Climate
  • Earth Science
  • Marine
  • Mathematics
  • Medicine
  • Pediatry
  • Policy
  • Psychology & Psychiatry
  • Science Education
  • Social Science
  • Space
  • Technology and Engineering

Subscribe to Blog via Email

Enter your email address to subscribe to this blog and receive notifications of new posts by email.

Join 5,184 other subscribers

© 2025 Scienmag - Science Magazine

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
  • HOME
  • SCIENCE NEWS
  • CONTACT US

© 2025 Scienmag - Science Magazine

Discover more from Science

Subscribe now to keep reading and get access to the full archive.

Continue reading