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
  • Human Gene in Fruit Fly Helps in MGS Study

COVID-19 Research Consortium SRF Recruitment at MKU

NIPGR JRF & PA Jobs | Short-Term Research Fellowships Recruitment

Human Gene in Fruit Fly Helps in MGS Study
  • BiotechToday
  • World

Human Gene in Fruit Fly Helps in MGS Study

bioxone December 20, 2020December 19, 2020

Thota Kanishka Rao, Amity University Kolkata

Meier-Gorlin syndrome, or MGS, is a genetic disorder that causes dwarfism, small ears, a small brain, missing patella and other skeletal abnormalities. In severe cases, MGS results in miscarriages and stillbirths.

Researchers tried to study this recessive, autosomal disorder in a unique way, i.e, by placing mutant human genes into fruit flies. Specifically, they looked at one of the genes involved in MGS called Orc6. In 2017, it was reported that researchers used this animal model to probe the function of one human Orc6 mutation—a Lysine 23 to Glutamic acid (K23E) substitution. In people with MGS, the K23E causes a similar disorder as the Orc6 mutation. 

These two changes are intriguing to contrast, in light of the fact that position 23 is close to the front, or the N-terminal domain, of the long chain of associated amino acids that folds to frame the Orc6 protein. Position 225 is close to the end, or the C-terminal domain, of the Orc6 protein strand.

Orc6 is part of the Origin Recognition Complex, or ORC. This complex of proteins is fundamental to start DNA replication in a cell, regardless of whether yeast, natural product fly, human or some other eukaryotic organism.  Without DNA division, a cell cannot divide and an organism cannot grow. Poor division will result in stunted growth as seen in MGS.

The two mutations have distinctive fundamental molecular mechanisms, the two of them cause deficient pre-replicative complex arrangement and decreased DNA replication, and they produce a similar phenotype in MGS patients. 

An important part of the research was creating chimeric Orc6 genes that are part human gene and part fruit fly gene. It is necessary as putting human Orc6 genes into fruit flies is not able to replace the function of the fruit fly Orc6, due to the difference in Orc6 interactions with the core ORC in the two organisms. 

This refined fly model has the unique advantage of having the option to differentially test fly, human, and chimeric Orc6 proteins to uncover rationed and dissimilar highlights of the protein and its function in the cells of metazoan living beings.

Also read: Designing Special RBCs for the delivery of Therapeutic Proteins

Source:
Maxim Balasov et al, Humanized Drosophila Model of the Meier-Gorlin Syndrome Reveals Conserved and Divergent Features of the Orc6 Protein, Genetics (2020). DOI: http://10.1534/genetics.120.303698

  • 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 autosomal disorder dwarfism fruit flies Genetic Disorder Glutamic acid K23E Meier-Gorlin Syndrome MGS mutant human genes Mutation Orc6 Orc6 mutation recessive recombination

One thought on “Human Gene in Fruit Fly Helps in MGS Study”

  1. Pingback: Discovery of new prodrugs by new 3D culture platform assures treatment of Type 1 diabetes - BioXone

Leave a Reply Cancel reply

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

Next Post
  • Job and Internship
  • Signaling Pathway

NIPGR JRF & PA Jobs | Short-Term Research Fellowships Recruitment

bioxone December 20, 2020

-Shristi Sharma, Team bioXone NIPGR JRF & PA Jobs – Short-Term Research Fellowships Recruitment. Life Science/ Biochemistry/Biotechnology/Molecular Biology/Botany Jobs. NIPGR MSc/MTech Jobs. NIPGR Latest Jobs. Interested and eligible candidates can check out all of the details below:  NIPGR Vacancy Details Name of Position: Junior Research Fellow (JRF)/Project Associate-I (PA-I) No. of Posts: (1 post) Name […]

Related Post

  • BiotechToday
  • World

Germline dosage compensation in drosophila pre-meiotic germ cells

BioTech Today August 20, 2021August 19, 2021

Vaishnavi Kardale, Bioinformatics Centre, Savitribai Phule Pune University Every sexually reproducing organism has some autosomes and sex chromosomes. The sex chromosomes determine the sex of the organism. In the pair of sex chromosomes, one chromosome comes from the father while the other chromosome comes from the mother. While the number of autosomes remains the same, […]

Share this:

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

Easy-Prime – A genome editing program

bioxone August 22, 2021August 22, 2021

Madhavi Bhatia, National Pharmaceutical Education and Research, Guwahati Genome-editing technologies have made genetic studies transform from traditional interventions to precise manipulations of the DNA sequences thus resulting in both simplicity and robust outcomes. There are various genome-editing technologies, the clustered regularly interspaced short palindromic repeats (CRISPR) systems are widely used. The standard CRISPR-Cas9 method introduces […]

Share this:

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

Impact of Tiny Plastic Particles on the planet

bioxone April 24, 2021April 24, 2021

Ayooshi Mitra, Amity University Kolkata One of the most pressing environmental and social issues of the twenty-first century is plastic pollution. The role of the atmosphere in transporting microplastics to remote locations has recently been highlighted in the research. A new study published in PNAS, claims that our plastic pollution problem has gotten so bad […]

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