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

BioXone

rethinking future

June 5, 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

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
  • Protein Kinase CK2 : The drug target for diverse human disorders

Hif1a gene in Microglia: A hope for Alzheimer’s patients

TERATOMA: A RARE TYPE OF TUMOUR

Protein Kinase CK2 : The drug target for diverse human disorders
  • BiotechToday
  • World

Protein Kinase CK2 : The drug target for diverse human disorders

bioxone May 28, 2021May 28, 2021

Rohit Bhattacharjee, Amity University, Kolkata

CK2 is a constitutively active Ser/Thr protein kinase, which phosphorylates many substrates, controls signaling pathways, implicates plenty of human sicknesses. Its best-recorded job is in cancer, where it manages every single hallmark of malignancy. Other notable functions of CK2 are in human diseases; specifically, viruses in viral infections misuse host cell CK2 for their life cycle. CK2 is likewise viewed as an emerging objective for neurological sicknesses, irritation and autoimmune problems, different ophthalmic pathologies, diabetes, and obesity. Furthermore, CK2 activity has been related to cardiovascular disorders, as heart ischemia-reperfusion injury, atherosclerosis, and cardiovascular hypertrophy. The theory of considering CK2 inhibition for cystic fibrosis treatments has been likewise engaged for a long time. Besides, mental disorders and conditions because of CK2 changes have been as of late recognized. On these bases, CK2 is arising as an undeniably alluring target in different fields of human medication, with the benefit that several quite certain and effective inhibitors are now accessible. As of late, additionally, SARS-CoV-2, the virus causing the COVID-19 pandemic, has been found to improve CK2 activity and initiate the phosphorylation of other CK2 substrates.

CK2 (formerly called casein kinase 2 or CK-II) is one of the first recognized protein kinases. It phosphorylates many physiological substrates and is one of the significant contributors in the age of the human phospho-proteome. Mammalian CK2 is a tetrameric protein, made out of two catalytic and two regulatory subunits. The catalytic ones may be addressed either by α or α′, basically the same however encoded by two unique genes, CSNK2A1 and CSNK2A2, separately, while only one human CK2 regulatory subunit exists, β, encoded by the CSNK2B gene. The regulatory roles of β are restricted to safeguarding the enzyme steadiness and driving the determination of substrates. Long story short, CK2 is constitutively dynamic and chemically competent in its monomeric structure. 

Given its activity in a few dysregulated pathways in human pathologies, CK2 is viewed as a medication target. A benefit is addressed by the wide range of inhibitors effectively accessible and possibly in the possession of clinicians. The particularity is additionally expanded on account of the alleged bi-substrate inhibitors. Additional information on CK2 capacities in human disorders is central either to design its focusing as conceivable therapy or, regardless, to all the more likely comprehend the atomic components underlying the pathogenic cycles and to design the right intercessions for better-customized treatment. For certain disorders, Protein Kinase CK2 can be unquestionably perceived as a drug target.

Specifically, promising anticancer impacts have been gotten with Protein Kinase CK2 inhibitors in countless studies, in cell and animal models, and clinical trials are continuous with the CK2 inhibitors. Be that as it may, little is known on the bioavailability and pharmacokinetics of CK2 inhibitors; just preliminary studies are published. For different pathologies, like cardiovascular disorders, the real attainability of treatments dependent on CK2 focusing is less obvious, frequently because of dubious reports. A few reports recommend a valuable impact of CK2 inhibition, however conclusions are ambiguous, yet, and proof of CK2 physiological and fundamental activities ought to be additionally thought of. In the eye, CK2 inhibition forestalls obsessive retina angiogenesis, yet, on the opposite side, a few CK2-dependant phosphorylations are vital for the appropriate eye improvement. Thus, it must be resolved whether CK2 hindrance is fitting to forestall the high multiplying rate needed for abnormal angiogenesis, without harming typical retinal functions. In a few mental problems, the ramifications of Protein Kinase CK2 is undoubted, be that as it may, its movement may be either instrumental to the pathology (concerning depression), or rather fundamental for permitting the right physiological functions and forestalling the sickness (autism, ADHD, and schizophrenia) and ought to be protected or even elevate to forestall the psychological disorder. Future investigations will unveil whether various methodologies for CK2 focusing will be conceivable, including genetic engineering.

Also read: Hif1a gene in Microglia: A hope for Alzheimer’s patients

Source:- Borgo, C., D’Amore, C., Sarno, S. et al. Protein kinase CK2: a potential therapeutic target for diverse human diseases. Sig Transduct Target Ther 6, 183 (2021). https://doi.org/10.1038/s41392-021-00567-https://www.nature.com/articles/s41392-021-00567-7

  • 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

Share this:

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

Related

Tagged angiogenesis bioavailability cancer CK2 COVID-19 kinase pharmacokinetics Phosphorylation proteome SARS-CoV-2

One thought on “Protein Kinase CK2 : The drug target for diverse human disorders”

  1. Pingback: TERATOMA: A RARE TYPE OF TUMOUR - BioXone

Leave a Reply Cancel reply

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

Next Post
  • Biotechnopedia
  • DNA-Tales

TERATOMA: A RARE TYPE OF TUMOUR

bioxone May 29, 2021

Diya Adhikary, Amity University Kolkata “Teratomas arise from primordial germ cells” – Stevens in 1961.  In the year 1964, embryologist Barry Pierce discovered that within each tumor, only one cell continued to divide and give rise to more cells while the rest of the cells differentiated and died. Clay tablets from 600-900 BC were believed […]

TERATOMA

Related Post

  • BiotechToday
  • World

Do lncRNA MCM3AP-AS1 develop lung cancer?

bioxone July 20, 2021July 19, 2021

Monika Raman, PSG College of Technology, Coimbatore Lung cancer, one of the most common and deadliest cancers, affected 2.2 million people and caused 1.79 million deaths worldwide in 2020. Most of the primary lung cancers are carcinomas. Small-cell lung carcinoma (SCLC) and non-small-cell lung carcinoma (NSCLC) are their two main types.  About 15% of lung […]

Share this:

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

Should you trust ePCR over conventional PCR?

bioxone October 25, 2020October 25, 2020

Parnad Basu, Amity University Kolkata PCR (Polymerase Chain Reaction) is a technique used to amplify small segments of any DNA. In conventional PCR, DNA libraries suffer from template mispairing. This ultimately leads to the obvious loss of unique sequences. To be more efficient, ePCR (emulsion Polymerase Chain Reaction) can be used as it has a […]

Share this:

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

Diversity & Stress Response in Aromatic Short-Grain Rice Landraces

DNA tales May 30, 2023May 30, 2023

Megha Saha, Amity University Kolkata Brief Highlighted in this writeup is a paper that discusses the physiological responses and genetic diversity found among various aromatic short-grain rice varieties in the Northern Eastern Ghats region of India (Behera et al., 2023). The ever-expanding population’s consumption demands necessitated a substantial increase in rice production. However, adverse changes […]

Share this:

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