What does PTPD mean in HUMAN GENOME
Protein Tyrosine Phosphatase binding Domain (PTPD) is a protein domain found in eukaryotic proteins. It serves as a binding site for the enzyme Protein Tyrosine Phosphatases (PTPs), which are involved in regulating various cellular activities such as growth, differentiation, and apoptosis. This domain interacts with PTPs to mediate their effects on various substrates.
PTPD meaning in Human Genome in Medical
PTPD mostly used in an acronym Human Genome in Category Medical that means Protein Tyrosine Phosphatase binding Domain
Shorthand: PTPD,
Full Form: Protein Tyrosine Phosphatase binding Domain
For more information of "Protein Tyrosine Phosphatase binding Domain", see the section below.
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Essential Questions and Answers on Protein Tyrosine Phosphatase binding Domain in "MEDICAL»GENOME"
What does the abbreviation PTPD stand for?
PTPD stands for Protein Tyrosine Phosphatase binding Domain.
What is the function of PTPD?
The function of PTPD is to serve as a binding site for the enzyme Protein Tyrosine Phosohtases (PTPs). This binding allows PTPs to regulate various cellular activities through interactions with different substrates.
How is PTPD found in proteins?
PTPD is found in eukaryotic proteins, where it typically functions as an independent domain or part of larger domains such as SH2 Domains or Protein-Tyrosine Kinase Domains.
What type of activities do PTPs regulate?
PTPs regulate various cellular activities such as growth, differentiation, and apoptosis by interacting with different substrates through the PTPD binding site.
How can understanding PTPD be useful?
Understanding how PTPD binds to PTPs can provide insight into how different processes are regulated within cells. This can be useful for better diagnosis and treatment of diseases caused by abnormal regulation of these processes.
Final Words:
In conclusion, Protein Tyrosine Phosphatase Binding Domain (PTPD) is a protein domain found in eukaryotic proteins that binds to enzymes called Protein Tyrosine Phosphateases (PTPs). These enzymes regulate various cellular activities such as growth, differentiation, and apoptosis by interacting with different substrates through the PTPD binding site. Knowing more about how this domain functions can provide valuable insight into how diseases caused by abnormal regulation of these processes can be treated or prevented in the future.
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