Target Name: TSPAN3
NCBI ID: G10099
Review Report on TSPAN3 Target / Biomarker Content of Review Report on TSPAN3 Target / Biomarker
TSPAN3
Other Name(s): tetraspanin 3 | TM4-A | Tetraspanin-3 | Tspan-3 | Tetraspan TM4SF | TSN3_HUMAN | Tetraspanin TM4-A | TSPAN-3 | tetraspan 3 | TM4SF8 | Transmembrane 4 superfamily member 8 | Tetraspan 3 | Tetraspanin-3 (isoform 1) | tetraspan TM4SF | TSPAN3 variant 1 | tetraspanin TM4-A | Tetraspanin 3, transcript variant 1 | transmembrane 4 superfamily member 8

TSPAN3: A Drug Target / Disease Biomarker

TSPAN3 (Triceraptorin-Spinal), also known as TSPAN3A, is a protein that is expressed in various tissues throughout the body, including the brain, spinal cord, and peripheral nerves. It is a member of the TSPAN family of transmembrane proteins, which are known for their ability to span the cell membrane and interact with various intracellular signaling pathways. One of the most interesting aspects of TSPAN3 is its potential as a drug target or biomarker.

The discovery of TSPAN3

TSPAN3 was first identified in the late 1990s as a gene that was expressed in various tissues, including the brain, spinal cord, and peripheral nerves. The gene was mapped to the X chromosome and has since been cloned and sequenced. Several studies have since demonstrated that TSPAN3 is a highly conserved protein that is expressed in a wide variety of organisms, including humans.

The biology of TSPAN3

TSPAN3 is a transmembrane protein that is involved in various signaling pathways. It is a member of the TSPAN family of proteins, which are known for their ability to span the cell membrane and interact with various intracellular signaling pathways. TSPAN3 is involved in several of these signaling pathways, including the TGF-β pathway, the Wnt pathway, and theNotch pathway.

In addition to its involvement in signaling pathways, TSPAN3 is also known for its role in cell-cell adhesion. TSPAN3 is expressed in the basal membrane of neurons and has been shown to play a role in the formation of tight junctions, which are a type of cell-cell adhesion structure.

The potential as a drug target

TSPAN3's potential as a drug target is one of the most exciting aspects of its research. Due to its involvement in various signaling pathways, TSPAN3 has the potential to be a useful target for a variety of diseases.

One of the key advantages of TSPAN3 as a drug target is its widespread expression in various tissues. This makes it a promising target for drugs that can affect a wide range of diseases. Additionally, TSPAN3's role in cell-cell adhesion also suggests that it may be a useful target for drugs that are aimed at modulating cell-cell interactions.

Another potential advantage of TSPAN3 as a drug target is its involvement in several key signaling pathways. This suggests that drugs that can affect these pathways may be effective in treating diseases that are caused by the disruption of these pathways.

The development of TSPAN3-targeted drugs

Despite the potential benefits of TSPAN3 as a drug target, the development of drugs that can effectively target this protein remains a challenge. There are several reasons for this.

One of the main challenges is the complexity of TSPAN3's biology. TSPAN3 is involved in many different signaling pathways and has a wide range of functions. This makes it difficult to identify small molecules that can effectively target TSPAN3 without also affecting other proteins.

Another challenge is the difficulty of predicting the efficacy of TSPAN3-targeted drugs. The effects of drugs on TSPAN3 can be difficult to predict, as the biology of TSPAN3 is so complex. This makes it difficult to determine the optimal conditions for drug testing and to identify drugs that are likely to be effective.

In addition to these challenges, another challenge is the lack of resources for the development of TSPAN3-targeted drugs. The development of new drugs can be expensive and time-consuming, and there are currently few resources available for the development of TSPAN3-targeted drugs.

Conclusion

TSPAN3 is a protein that is expressed in various tissues throughout the body and is involved in various signaling pathways. Its potential as a drug target or biomarker is based on its widespread expression, its involvement in multiple signaling pathways, and its role in cell-cell adhesion. The development of TSPAN3-targeted drugs remains a challenge, but with continued research and the development of new resources, it is possible that TSPAN3 will become a valuable tool for the treatment of a wide range of diseases.

Protein Name: Tetraspanin 3

Functions: Regulates the proliferation and migration of oligodendrocytes, a process essential for normal myelination and repair

The "TSPAN3 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 TSPAN3 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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