Unlocking the Potential of FAM87A as a Drug Target and Biomarker
Unlocking the Potential of FAM87A as a Drug Target and Biomarker
FAM87A is a gene located on chromosome 6p12.3, which encodes a protein with sequence similarity 87 (SS87) members. This protein plays a crucial role in various cellular processes, including cell adhesion, migration, and invasion. FAM87A has also been implicated in the development and progression of several diseases, including cancer. As a result, it has become an attractive target for drug research and development. In this article, we will explore the potential of FAM87A as a drug target and biomarker.
FAM87A as a Drug Target
FAM87A has been identified as a potential drug target due to its involvement in several cellular processes that are crucial for disease progression. One of the most significant functions of FAM87A is its role in cell adhesion and migration. FAM87A is known to be involved in the formation of tight junctions, which are critical for maintaining tissue structure and function. Its involvement in this process makes it an attractive target for drugs that can modulate cell adhesion and migration.
FAM87A has also been shown to be involved in the regulation of the Wnt signaling pathway, which is a critical pathway for cell growth and development. The Wnt pathway plays a crucial role in the development and progression of several diseases, including cancer. As a result, its involvement in this pathway makes FAM87A an attractive target for drugs that can inhibit its activity.
FAM87A as a Biomarker
FAM87A has also been identified as a potential biomarker for several diseases. Its involvement in the regulation of cell adhesion and migration makes it an attractive target for biomarkers that can be used to diagnose and monitor these diseases. For example, FAM87A has been shown to be involved in the development of cancer, including breast cancer. As a result, its levels have been used as a biomarker for cancer diagnosis and monitoring.
FAM87A has also been shown to be involved in the regulation of the immune response, which is critical for maintaining overall health and preventing disease. Its involvement in this process makes it an attractive target for biomarkers that can be used to diagnose and monitor autoimmune diseases.
Conclusion
In conclusion, FAM87A is an attractive target for drug research and development due to its involvement in several cellular processes that are crucial for disease progression. Its involvement in cell adhesion, migration, and the regulation of the Wnt and immune response make it an attractive target for drugs that can modulate its activity. As a result, FAM87A has the potential to revolutionize our understanding of disease and improve our ability to diagnose and treat them.
Protein Name: Family With Sequence Similarity 87 Member A
More Common Targets
FAM87B | FAM88C | FAM88D | FAM88E | FAM88F | FAM89A | FAM89B | FAM8A1 | FAM90A1 | FAM90A10 | FAM90A11P | FAM90A13P | FAM90A14 | FAM90A18 | FAM90A19 | FAM90A20P | FAM90A25P | FAM90A26 | FAM90A27P | FAM90A2P | FAM90A5P | FAM90A6P | FAM90A7 | FAM91A1 | FAM95A | FAM95B1 | FAM95C | FAM98A | FAM98B | FAM98C | FAM99A | FAM99B | FAM9A | FAM9B | FAM9C | FAN1 | FANCA | FANCB | FANCC | FANCD2 | FANCD2OS | FANCE | FANCF | FANCG | FANCI | FANCL | FANCM | Fanconi anemia complex | FANK1 | FAP | FAR1 | FAR2 | FAR2P1 | FAR2P2 | FARP1 | FARP2 | FARS2 | FARS2-AS1 | FARSA | FARSB | FAS | FAS-AS1 | FASLG | FASN | FASTK | FASTKD1 | FASTKD2 | FASTKD3 | FASTKD5 | FAT1 | FAT2 | FAT3 | FAT4 | FATE1 | Fatty Acid Binding Protein | Fatty acid desaturase | FAU | FAUP1 | FAUP4 | FAXC | FAXDC2 | FBF1 | FBH1 | FBL | FBLIM1 | FBLL1 | FBLN1 | FBLN2 | FBLN5 | FBLN7 | FBN1 | FBN2 | FBN3 | FBP1 | FBP2 | FBRS | FBRSL1 | FBXL12 | FBXL13 | FBXL14