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

BioXone

rethinking future

August 7, 2026
  • 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

July 13, 2026July 13, 2026

Why Do We Age? The Biology Of Ageing Explained

1
October 17, 2023October 16, 2023

The Corrosion Prediction from the Corrosion Product Performance

2
October 1, 2023September 30, 2023

Nitrogen Resilience in Waterlogged Soybean plants

3
September 28, 2023September 28, 2023

Cell Senescence in Type II Diabetes: Therapeutic Potential

4
September 26, 2023September 25, 2023

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

5
September 25, 2023September 25, 2023

AI Literacy in Early Childhood Education: Challenges and Opportunities

6

Search Field

Subscribe Now

  • Home
  • BiotechToday
  • Relationship between PDI gene family and ER stress

The ABCs of ADHD

Venomous humans: An intriguing concept

Relationship between PDI gene family and ER stress
  • BiotechToday
  • World

Relationship between PDI gene family and ER stress

bioxone June 9, 2021June 9, 2021

Camelia Bhattacharyya, Amity University Kolkata

Protein folding and misfolding is widely studied about different diseases and symptoms due to their ability to trigger a stress response in our body, leading to several diseases, even neurodegeneration. When speaking of stress, the endoplasmic reticulum (ER) stress is something on which maximum focus should be given since ER stress signifies that the capability of the ER to fold proteins has reached the level of saturation. This is the major factor behind Alzheimer’s disease and other neurodegenerative diseases. Now ER stress again has several biomolecular definitions and pathways and links several other mechanisms in it. Protein disulfide isomerases (PDI) is one such catalyst that triggers pivotal protein folding in the body. Recent research has shown the exact role of PDIs and how they work during ER stress. 

We know that the unfolded and misfolded proteins accumulating in the ER are the reasons behind ER stress. This again is due to environmental trigger or growth stage of the body which demands greater folded protein thus reaching saturation level where the improper proteins are not drained out in a balanced manner. Though this is a matter of concern, very little is known about the family of the PDI gene and its exact mechanism of work during ER stress. Everything that is known about it is that it is a chaperone that is induced during ER stress and plays an important role during the formation of disulfide bonds in proteins thus destabilizing the unfolded form of the protein and reducing ER stress. The research team we are speaking of today is based in China and they have recently studied 17 putative PDI genes in Medicago truncatula. The protein structures and other biochemical characteristics like the phylogenetic relationships, chromosomal distribution, etc. have been recorded in the paper published by the team. These characteristics have been analyzed and compared with the orthologs in other species as well. The expression patterns shown by Medicago truncatula were distinct in characterization.

The study opens a door towards new findings and challenges future researchers towards taking the research further and finding new biochemical routes in tracing the pathways of ER stress and the ways to control it. This might further help to focus studies on these pathways to control the mechanism and stop disorders related to ER stress. Though the study has been done on plants, that does not close the expectations of future research and miracles in the field of science.

Also read: The ABCs of ADHD

Source: Meng Z, Zhao Y, Liu L, & Du X. (2020) Genome-wide characterization of the PDI gene family in Medicago truncatula and their roles in response to endoplasmic reticulum stress. Canadian Science Publishing. 64(6), 2021. doi:http://10.1139/gen-2020-0064

  • Why Do We Age? The Biology Of Ageing Explained
  • 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

Share this:

  • Share on Facebook (Opens in new window) Facebook
  • Share on X (Opens in new window) X

Related

Tagged chaperone Environmental trigger ER stress family of PDI gene Medicago truncatula misfolding neurodegeneration PDIs phylogenetic relationships protein folding stress

One thought on “Relationship between PDI gene family and ER stress”

  1. Pingback: Venomous humans: An intriguing concept - BioXone

Leave a Reply Cancel reply

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

Next Post
  • Biotechnopedia
  • DNA-Tales

Venomous humans: An intriguing concept

bioxone June 9, 2021

Diya Adhikary, Amity University Kolkata The etymology of “venom” is associated with polytheistic cults that highlighted the accomplishment of desires sometimes aided by “love potions”. This was later interpolated with the word “poison”. Venom is defined as a mixture of toxic enzymes and various other proteins. It is produced in certain specific glands in the […]

Venomous humans

Related Post

  • BiotechToday
  • World

Type 2 Diabetes can be triggered by Prolonged Use of Common Acid Reflux Drugs

bioxone September 30, 2020September 30, 2020

-Team bioXone Research by an international team of scientists suggested that regular use of proton pump inhibitors (PPIs), commonly used to treat acid reflux, are related to a heightened risk of developing type 2 diabetes. The results also indicated that with the duration of PPI use, this risk of type 2 diabetes increases; prompting the […]

Share this:

  • Share on Facebook (Opens in new window) Facebook
  • Share on X (Opens in new window) X
  • BiotechToday
  • World

Insulin resistance: A new approach to tackle the condition

BioTech Today September 18, 2021September 17, 2021

Husna, Amity University Kolkata A resistance to the hormone insulin is known as insulin resistance. It is present in one-quarter of the general population, not just in people with diabetes or obesity. These individuals are at high risk for developing metabolic disorders and a wide-range of diseases. Due to insulin resistance, the body’s cells don’t […]

Share this:

  • Share on Facebook (Opens in new window) Facebook
  • Share on X (Opens in new window) X
  • BiotechToday
  • World

Facilitated Diffusion of Proline across Membranes of Liposomes and Living Cells by a Calix[4]pyrrole Cavitand

bioxone October 7, 2020October 7, 2020

Parnad Basu, Amity University Kolkata The metabolism of cells, transporting amino acids across the cell’s membrane is an integral part of the process. Many pieces of research suggest that serious diseases like cancer (abnormal cell division), cystic fibrosis (a hereditary disease affecting the lungs and digestive system), aminoaciduria (urine contains a high number of amino […]

Share this:

  • Share on Facebook (Opens in new window) Facebook
  • Share on X (Opens in new window) X

Breaking News

Why Do We Age? The Biology Of Ageing Explained

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

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