Target Name: THUMPD2
NCBI ID: G80745
Review Report on THUMPD2 Target / Biomarker Content of Review Report on THUMPD2 Target / Biomarker
THUMPD2
Other Name(s): THUM2_HUMAN | THUMPD2 variant 1 | SAM-dependent methyltransferase | THUMP domain containing 2, transcript variant 1 | epididymis secretory sperm binding protein | THUMP domain containing 2 | THUMP domain-containing protein 2 (isoform 1) | THUMP domain-containing protein 2 | C2orf8

THUMPD2: A Potential Drug Target Or Biomarker

THUMPD2 (THUM2_HUMAN), also known as THUMP2, is a protein that is expressed in human tissues and has been identified as a potential drug target or biomarker. The protein is a key component of the T-cell receptor, which is a critical receptor found on the surface of T cells, a type of white blood cell that plays a crucial role in the immune system.

THUMPD2 is a protein that is made up of 260 amino acids and has a molecular weight of 31 kDa. It is located on the cytoplasm of the T-cell receptor and is involved in the formation of the T-cell receptor complex. This protein is highly conserved across different species, which suggests that it is an important protein that is involved in the development and maintenance of T-cells.

One of the key functions of THUMPD2 is its role in the regulation of the T-cell receptor. The T-cell receptor is a transmembrane protein that is composed of a variable region and a constant region. The variable region of the T-cell receptor is responsible for the recognition of foreign antigens, while the constant region is responsible for maintaining the stability of the receptor.

THUMPD2 is involved in the regulation of the T-cell receptor by helping to maintain the stability of the constant region. This is done by playing a role in the interaction between the T-cell receptor and the cytoplasm. THUMPD2 is known to help to keep the cytoplasm in a stable state, which is important for the proper functioning of the T-cell receptor.

Another function of THUMPD2 is its role in the regulation of the T-cell receptor during the process of apoptosis, which is the process by which cells undergo programmed cell death. During apoptosis, THUMPD2 is known to help to ensure that the T-cell receptor is properly maintained and that the process is carried out in a controlled manner.

In addition to its role in the regulation of the T-cell receptor, THUMPD2 is also involved in the regulation of several other cellular processes. For example, this protein is known to be involved in the regulation of cell adhesion, which is the process by which cells stick together to form tissues and organs.

THUMPD2 is also involved in the regulation of the cytoskeleton, which is the structure that gives cells shape and helps to maintain their stability. This protein is known to help to maintain the integrity of the cytoskeleton, which is important for the proper functioning of the cell.

In conclusion, THUMPD2 is a protein that is expressed in human tissues and has been identified as a potential drug target or biomarker. Its role in the regulation of the T-cell receptor and the regulation of several other cellular processes makes it an important protein that should be further studied. Further research is likely to provide new insights into the functions of this protein and its potential as a drug.

Protein Name: THUMP Domain Containing 2

The "THUMPD2 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 THUMPD2 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

More Common Targets

THUMPD3 | THUMPD3-AS1 | THY1 | Thymidine Kinase | THYN1 | Thyroid hormone receptor | Thyrostimulin | Thyrotropin | TIA1 | TIAF1 | TIAL1 | TIAM1 | TIAM1-AS1 | TIAM2 | TICAM1 | TICAM2 | TICAM2-AS1 | TICRR | Tie Receptor | TIE1 | TIFA | TIFAB | TIGAR | TIGD1 | TIGD2 | TIGD3 | TIGD4 | TIGD5 | TIGD6 | TIGD7 | TIGIT | TIM22 complex | TIM23 Complex | TIMD4 | TIMELESS | TIMM10 | TIMM10B | TIMM13 | TIMM17A | TIMM17B | TIMM21 | TIMM22 | TIMM23 | TIMM29 | TIMM44 | TIMM50 | TIMM8-TIMM13 complex | TIMM8A | TIMM8AP1 | TIMM8B | TIMM9 | TIMMDC1 | TIMP1 | TIMP2 | TIMP3 | TIMP4 | TINAG | TINAGL1 | TINCR | TINF2 | TIPARP | TIPARP-AS1 | TIPIN | TIPRL | TIRAP | TIRAP-AS1 | TJAP1 | TJP1 | TJP2 | TJP3 | TK1 | TK2 | TKFC | TKT | TKTL1 | TKTL2 | TLCD1 | TLCD2 | TLCD3A | TLCD3B | TLCD4 | TLCD4-RWDD3 | TLCD5 | TLDC2 | TLE1 | TLE1-DT | TLE2 | TLE3 | TLE4 | TLE5 | TLE6 | TLK1 | TLK2 | TLL1 | TLL2 | TLN1 | TLN2 | TLNRD1 | TLR1 | TLR10