Skip to content
Tagged COVID-19 Biotechnology SARS-CoV-2 Life Science cancer CORONAVIRUS pandemic
BioXone

BioXone

rethinking future

June 7, 2025
  • About
  • BiotechTodayNews
    • IndiaWeekly Biotech News of India
    • WorldWeekly Biotech News of The World
  • DNA-TalesArticles
    • BiotechnopediaInteresting articles written by BioXone members and associates.
    • Scientists’ CornerArticles from the pioneers of Biotechnology.
    • Cellular CommunicationInterview of greatest researchers’ in the field.
  • Myth-LysisFact Check
  • Signalling PathwayCareer related updates
    • ExaminationsExamination related articles.
    • Job and InternshipJobs and Internship related articles.
  • Courses
  • Contact

Most Viewed This Week

October 17, 2023October 16, 2023

The Corrosion Prediction from the Corrosion Product Performance

1
October 1, 2023September 30, 2023

Nitrogen Resilience in Waterlogged Soybean plants

2
September 28, 2023September 28, 2023

Cell Senescence in Type II Diabetes: Therapeutic Potential

3
September 26, 2023September 25, 2023

Transgene-Free Canker-Resistant Citrus sinensis with Cas12/RNP

4
September 25, 2023September 25, 2023

AI Literacy in Early Childhood Education: Challenges and Opportunities

5
September 22, 2023October 1, 2023

Sustainable Methanol Vapor Sensor Made with Molecularly Imprinted Polymer

6

Search Field

Subscribe Now

  • Home
  • BiotechToday
  • A potential entry point in autophagosomes regulation

The curious case of Covid-19 Re-infection

Transcriptomic analysis of etiology behind fatality in HIV patients

A potential entry point in autophagosomes regulation
  • BiotechToday
  • World

A potential entry point in autophagosomes regulation

BioTech Today June 22, 2021June 21, 2021

Akash Singh, Banaras Hindu University

Autophagy, often blamed for senescence, is a conserved process that promotes cellular homeostasis by degrading cytosolic components (sometimes referred to as cargo). This cargo sequestered into autophagosomes, which are double-membrane vesicles that are primarily carried in the retrograde direction to the perinuclear area, where they combine with lysosomes, ensuring cargo destruction. Hansen lab’s research that focuses on the relationship between ageing and autophagy has made the discovery of a potential entry point in the regulation of autophagosomes. This discovery opens up many prospects for investigating the declined autophagic functions in ageing cells. 

Autophagy and ageing:

Autophagy is a key protein turnover mechanism that transports cellular components to lysosomes for destruction and recycling. Under stress, this intracellular activity is capable of maintaining cellular homeostasis, and its disruption could result in physiological changes. Autophagic activity has been reported to diminish with age, which may contribute to the accumulation of damaged macromolecules and organelles as people age.

Discovery of a potential entry point:

According to Jose Luis Nieto-Torres, a postdoc in the Hansen lab and the study’s first author, “Movement of these autophagosomes in a cell is like moving garbage trucks along a highway.” They studied the process in nerve cells since the nerve cells are long and flat. This nature of the cells allowed them to visualize the directional aspects of transport. These aspects help in recycling cellular waste via the process of autophagy.

The recent findings from Hansen’s lab shed light on the significance of phosphorylation of the protein LCB3, which aids in bidirectional autophagosome transport. The results, which were published in Current Biology, detail how autophagosomes are marked to direct their travel to waste-processing cellular “recycling plants”. They previously discovered that autophagy requires the tagging of LCB3, a protein present on the surface of autophagosomes. In their latest research, they describe how tagging occurs and how critical it is for autophagosome migration.

They revealed that the Hippo kinase STK4/MST1 initiated phosphorylation of Threonine-50 on the LC3B/ATG8 complex inhibits the binding of adaptor transport protein FYCO1 to the LCB3/ATG8 complex. FYCO 1 aids in the anterograde transport of autophagosomes to the cell periphery; hence, lowering FYCO1 binding results in a decrease in anterograde autophagosome transport. They also demonstrated that inhibiting LC3B phosphorylation reduced autophagosome retrograde transport, reducing the autophagosome-lysosome interaction. They conclude that the STK4-LC3B-FYCO1 axis is nutrient-sensitive and that post-translational modification of LC3B aids in the regulation of directional transport of autophagosomes, a vital stage in the autophagy process.

Future Prospects:

Now that scientists understand how phosphorylation influences autophagosome mobility, they can investigate the link between autophagy and age-related diseases like cancer and neurological problems. It will also assist in determining how waste products are chosen for recycling and how a cell chooses when to begin transferring waste.

Discovering the likely initial entrance site that controls recycling activity in cells would also help researchers better understand why autophagy functions decline as cells age, as well as lead to the development of new therapeutic targets and diagnostic markers to measure autophagy.

Also read: SETD2 in histone and tubulin methylation

References:

  1. Nieto-Torres, J. L., Shanahan, S. L., Chassefeyre, R., Chaiamarit, T., Zaretski, S., Landeras-Bueno, S., Verhelle, A., Encalada, S. E., & Hansen, M. (2021). LC3B phosphorylation regulates FYCO1 binding and directional transport of autophagosomes. Current biology : CB, S0960-9822(21)00750-8. Advance online publication. https://doi.org/10.1016/j.cub.2021.05.052
  2. Todde, V., Veenhuis, M., & van der Klei, I. J. (2009). Autophagy: principles and significance in health and disease. Biochimica et biophysica acta, 1792(1), 3–13. https://doi.org/10.1016/j.bbadis.2008.10.016
  • The Corrosion Prediction from the Corrosion Product Performance
  • Nitrogen Resilience in Waterlogged Soybean plants
  • Cell Senescence in Type II Diabetes: Therapeutic Potential
  • Transgene-Free Canker-Resistant Citrus sinensis with Cas12/RNP
  • AI Literacy in Early Childhood Education: Challenges and Opportunities

About the author:

Akash Singh is a first-year master’s student of Biochemistry at Banaras Hindu University. He plans to pursue a Ph.D. in the future and also teach the young minds of the country. He is generally inclined to the field of scientific writing. Some of his writings are:

  1. https://vidwaanforever.com/2021/06/a-new-period-invention-a-novel-thread-device-for-uti-detection/
  2. https://vidwaanforever.com/2021/06/the-fall-of-insecta-apocalyptic-consequences-for-humanitys-survival/
  3. https://vidwaanforever.com/2021/06/covaxin-vs-covishield-the-corona-vaccines-in-india/

Share this:

  • Click to share on Facebook (Opens in new window) Facebook
  • Click to share on X (Opens in new window) X

Related

Tagged ageing ATG8 autophagosomes Autophagy cellular waste diagnostic markers discovery FYCO1 LCB3 transport

2 thoughts on “A potential entry point in autophagosomes regulation”

  1. Pingback: Enhancing diversity and inclusion within the genetics community - BioXone
  2. Pingback: Covid Vaccine Safety for Pregnant and Lactating Women - BioXone

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

Next Post
  • BiotechToday
  • World

Transcriptomic analysis of etiology behind fatality in HIV patients

BioTech Today June 22, 2021

Kanikah Mehndiratta Transcriptomic analysis has been a recent approach to identify biomarkers associated with normal or diseased physiology in patients. An obvious approach to targeting any infection or disease through treatment strategies or prophylaxis requires a proper understanding of the mechanisms of its pathogenesis. Researching on better and more effective treatment approaches towards a deadly […]

Related Post

  • BiotechToday
  • World

ConCysFind – Easing the identification of preserved AA based on phylogenetic occurrence

bioxone November 3, 2020November 3, 2020

Shrestha Dutta, Amity University Kolkata ConCysFind is a Java-based pipeline instrument that uses BioJava as a web-based tool to recognize preserved Amino acids such as cysteine, tryptophan, serine, threonine, tyrosine, and methionine, etc.  ConCysFind assesses numerous arrangements considering the proteome of 21 plant species. This model investigation aimed at Cy’s as an evolutionarily preserved target […]

Share this:

  • Click to share on Facebook (Opens in new window) Facebook
  • Click to share on X (Opens in new window) X
  • BiotechToday
  • World

GATA6+ macrophages: not just phagocytes but also wound healers!!!

bioxone March 15, 2021March 15, 2021

Camelia Bhattacharyya, Amity University Kolkata Knowledge is a huge thing wrapped up in a single word. As the world is changing on a daily basis, so is the knowledge about a topic. There are still several questions to be answered and that’s exactly what brings scientists and researchers in the framework to search for unanswered […]

Share this:

  • Click to share on Facebook (Opens in new window) Facebook
  • Click to share on X (Opens in new window) X
  • BiotechToday
  • World

Data Analysis – An Important Tool in the Pandemic

BioTech Today July 29, 2021July 29, 2021

Agrima Bhatt, Rajasthan University The progression of an epidemic comes at a rapid pace for us to be able to understand it. What is more devastating than this progression is the ability of a pathogen to evolve and spread. The reality of it is already heart-breaking as we can see in the current pandemic of […]

Share this:

  • Click to share on Facebook (Opens in new window) Facebook
  • Click to share on X (Opens in new window) X

Breaking News

The Corrosion Prediction from the Corrosion Product Performance

Nitrogen Resilience in Waterlogged Soybean plants

Cell Senescence in Type II Diabetes: Therapeutic Potential

Transgene-Free Canker-Resistant Citrus sinensis with Cas12/RNP

AI Literacy in Early Childhood Education: Challenges and Opportunities

Sustainable Methanol Vapor Sensor Made with Molecularly Imprinted Polymer

Exogenous Klotho as a Cognition Booster in Aging Primates

Terms and Conditions
Shipping and Delivery Policy
Cancellation and Refund Policy
Contact Us
Privacy Policy