Target Name: SALL3
NCBI ID: G27164
Review Report on SALL3 Target / Biomarker Content of Review Report on SALL3 Target / Biomarker
SALL3
Other Name(s): zinc finger protein 796 | Spalt like transcription factor 3 | Zinc finger protein 796 | spalt-like zinc finger protein | SALL3_HUMAN | Spalt-like zinc finger protein | hSALL3 | ZNF796 | C2H2 zinc finger protein SALL3 | epididymis secretory sperm binding protein | Zinc finger protein SALL3 | Sal-like protein 3 | spalt like transcription factor 3

Overview of SALL3: Properties, Functions and Clinical Applications

SALL3, also known as zinc finger protein 796, is a protein that is expressed in almost all eukaryotic cells and plays an important role in many biological processes. Currently, SALL3 has become a research subject that has attracted much attention, especially in the field of drug research and development. In this article, we will discuss the nature, function and current research progress of SALL3.

1. Properties of SALL3

SALL3 is a zinc finger transcription factor, and its name comes from the zinc finger structure of its N-terminal region. SALL3 is located in the chromosome 1p36.1 region in the bioinformatics database, and its encoding gene is SALL3. SALL3 has a wide range of expression patterns in cells and is mainly distributed in membrane system structures such as the cytoplasm, endoplasmic reticulum, Golgi apparatus and nuclear membrane. In addition, SALL3 is also expressed in the extracellular matrix, such as extracellular matrix scaffolds, extracellular vesicles, and extracellular signaling molecules.

2. Functions of SALL3

SALL3 plays an important role in a variety of biological processes. SALL3 can bind to DNA and control biological processes such as cell cycle, cell proliferation, differentiation and apoptosis by regulating gene expression. Specifically, SALL3 controls gene expression by regulating the activity of DNA-binding proteins (DBPs) and transcription factors (TFs). In addition, SALL3 can also affect the transport of intracellular materials by regulating the activity of intracellular transport proteins, thus affecting cellular metabolism and biological processes.

3. The significance of SALL3 in drug development

SALL3 is a protein with broad application prospects, especially in the field of drug research and development. Since SALL3 plays an important role in a variety of biological processes, it is of great significance to study the biological functions and drug targets of SALL3. At present, a variety of drug targets have been determined to be related to SALL3, including biological activities such as cell cycle regulation, anti-tumor and immune regulation. The study of these drug targets provides important theoretical and experimental foundations for drug research and development.

4. Clinical application prospects of SALL3

SALL3 is a protein widely expressed in a variety of eukaryotic cells. Therefore, it is of great significance to study the role of SALL3 in disease diagnosis and treatment. Currently, a variety of SALL3-based biomarkers have been studied, and these biomarkers can be used for the diagnosis and treatment of diseases such as tumors, inflammation, and immune disorders. In addition, SALL3 can also be used as a target for drug development to study the therapeutic effects of SALL3-related drugs on diseases such as tumors, inflammation, and immune disorders, providing important theoretical and experimental foundations for clinical application.

Protein Name: Spalt Like Transcription Factor 3

Functions: Probable transcription factor

The "SALL3 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 SALL3 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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