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Study reveals information about risk genes in schizophrenia


Study reveals information about risk genes in schizophrenia
Dr. Felix-Martin Werner, working at the Euro Academy Pößneck in Germany and Prof. Rafael Coveñas, working at the Institute of Neurosciences of Castilla and León, Salamanca in Spain, have been working on neurological and psychiatric disease for over ten years.
In their most recent review, published in
Current Pharmaceutical Design (Bentham Science Publishers) Werner and Coveñas cover information about the risk genes in schizophrenia and explain the importance of examining their single nucleotide polymorphisms (SNP s). In schizophrenia, 260 risk genes have been discovered, and an association between single SNPs and the clinical efficacy of a specific antipsychotic drug has been established. ....

Castillay Leóp , Rafael Cove , Felix Martin Werner , Emily Henderson , Institute Of Neurosciences Castilla , Euro Academy , Current Pharmaceutical Design , Bentham Science Publishers , Single Nucleotide Polymorphisms , ரஃபேல் கோவ் , ஃபெலிக்ஸ் மார்டின் வெர்னர் , எமிலி ஹென்டர்சன் , நிறுவனம் ஆஃப் நரம்பியல் காஸ்டில்லா , யூரோ கலைக்கழகம் , தற்போதைய மருந்து வடிவமைப்பு , பெந்தம் அறிவியல் வெளியீட்டாளர்கள் ,

Proteins play crucial role in muscle growth


Proteins play crucial role in muscle growth
When a muscle grows, because its owner is still growing too or has started exercising regularly, some of the stem cells in this muscle develop into new muscle cells.
The same thing happens when an injured muscle starts to heal. At the same time, however, the muscle stem cells must produce further stem cells - i.e., renew themselves - as their supply would otherwise be depleted very quickly. This requires that the cells involved in muscle growth communicate with each other.
Muscle growth is regulated by the Notch signaling pathway
Two years ago, a team of researchers led by Professor Carmen Birchmeier, head of the Developmental Biology/Signal Transduction Lab at the Berlin-based Max Delbrück Center for Molecular Medicine in the Helmholtz Association (MDC), showed that the development of stem cells into muscle cells is regulated with the help of two proteins, Hes1 and MyoD, which are produced in the progenitor cells in an ....

Max Delbr , Jana Wolf , Carmen Birchmeier , Ines Lahmann , Yao Zhang , Katharina Baum , Emily Henderson , Nature Communications , Developmental Biology Signal Transduction Lab , Helmholtz Association , Professor Carmen Birchmeier , Signal Transduction Lab , Berlin Based Max Delbr , Molecular Medicine , Professor Jana Wolf , Developmental Biology , Notch Signaling , Progenitor Cells , Signaling Pathway , Stem Cells , ஜன ஓநாய் , கார்மென் பிர்ச்மியர் , யாவ் ஜாங் , காதரின பாம் , எமிலி ஹென்டர்சன் , இயற்கை தகவல்தொடர்புகள் ,

New method helps study the effects of receptor clustering in living cells

Our body consists of 100 trillion cells that communicate with each other, receive signals from the outside world and react to them. ....

Emily Henderson , Cell Membrane , எமிலி ஹென்டர்சன் , செல் சவ்வு ,