Target Name: PSPN
NCBI ID: G5623
Review Report on PSPN Target / Biomarker Content of Review Report on PSPN Target / Biomarker
PSPN
Other Name(s): persephin | PSPN_HUMAN | OTTHUMP00000237858 | Persephin | PSP

PSPN: Protein Expression and Signaling

PSPN (Persephin) is a protein that is expressed in various tissues throughout the body, including the brain, lungs, heart, kidneys, and liver. It is a member of the integral protein family, which includes proteins that play critical roles in cell signaling and survival. PSPN is known for its role in the regulation of cellular processes that are critical for brain development, function, and survival.

PSPN is a protein that is expressed in the brain and is involved in the development and maintenance of neural stem cells. Neural stem cells are a type of cell that have the ability to develop into any type of cell in the nervous system, including neurons. PSPN plays a critical role in the regulation of neural stem cell proliferation and differentiation, as well as the regulation of the nervous system development and function.

PSPN is also involved in the regulation of the blood-brain barrier, which is a barrier that separates the brain from the bloodstream. The blood-brain barrier is designed to protect the brain from harmful substances that could cause damage, but it also makes it difficult for drugs to reach the brain. PSPN is known for its role in the regulation of the blood-brain barrier, which allows drugs to penetrate the brain and treat conditions such as Alzheimer's disease and Parkinson's disease.

PSPN is also involved in the regulation of the immune system, which is a critical part of the body's defense against infection and disease. PSPN plays a critical role in the regulation of the immune response, as it is known to interact with the protein PD- L1. PD-L1 is a protein that is expressed in many types of cancer cells and helps to protect those cells from the immune system. PSPN is thought to interact with PD-L1 in a way that may help to regulate the immune response and promote the growth and survival of cancer cells.

PSPN is also involved in the regulation of the cell cycle, which is the process by which cells grow and divide. PSPN plays a critical role in the regulation of the cell cycle, as it is known to interact with the protein CDK4. CDK4 is a protein that is involved in the regulation of cell growth and differentiation, and PSPN is thought to interact with it in a way that helps to regulate the cell cycle.

PSPN is also involved in the regulation of the angiogenesis, which is the process by which new blood vessels are formed. PSPN is known for its role in the regulation of angiogenesis, as it is thought to interact with the protein PDGFR-尾. 尾 is a protein that is involved in the regulation of angiogenesis, and PSPN is thought to interact with it in a way that helps to regulate the angiogenesis.

PSPN is also involved in the regulation of theNotch signaling pathway, which is a critical part of cellular signaling. PSPN is known for its role in the regulation of theNotch signaling pathway, as it is thought to interact with the protein JAG1. JAG1 is a protein that is involved in the regulation of theNotch signaling pathway, and PSPN is thought to interact with it in a way that helps to regulate the signaling pathway.

PSPN is also involved in the regulation of the transforming growth factor-尾 (TGF-β) signaling pathway, which is a critical part of cellular signaling. PSPN is known for its role in the regulation of the TGF-β signaling pathway, as it is thought to interact with the protein SFP. SFP is a protein that is involved in the regulation of theTGF-β signaling pathway, and PSPN is thought to interact with it in a way that helps to regulate the signaling pathway.

In conclusion, PSP

Protein Name: Persephin

Functions: Exhibits neurotrophic activity on mesencephalic dopaminergic and motor neurons

The "PSPN Target / Biomarker Review Report" is a customizable review of hundreds up to thousends of related scientific research literature by AI technology, covering specific information about PSPN comprehensively, including but not limited to:
•   general information;
•   protein structure and compound binding;
•   protein biological mechanisms;
•   its importance;
•   the target screening and validation;
•   expression level;
•   disease relevance;
•   drug resistance;
•   related combination drugs;
•   pharmacochemistry experiments;
•   related patent analysis;
•   advantages and risks of development, etc.
The report is helpful for project application, drug molecule design, research progress updates, publication of research papers, patent applications, etc. If you are interested to get a full version of this report, please feel free to contact us at BD@silexon.ai

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