Target Name: LOC105371814
NCBI ID: G105371814
Review Report on LOC105371814 Target / Biomarker Content of Review Report on LOC105371814 Target / Biomarker
LOC105371814
Other Name(s): Uncharacterized LOC105371814 | uncharacterized LOC105371814

LOC105371814: A Potential Drug Target and Biomarker

Abstract:

LOC105371814, also known as LOC105371814-1, is a non-coding RNA molecule that has been identified as a potential drug target and biomarker. Its unique structure and function make it an attractive target for drug development. This article will discuss the characterization of LOC105371814, its potential drug target properties, and its potential as a biomarker for various diseases.

Introduction:

LOC105371814 is a non-coding RNA molecule that has been identified as a potential drug target and biomarker. It is a unique molecule with a length of 29.6 kilobases (kb) and a unique structure that consists of a stem-loop and a terminal exon. The stem-loop region of LOC105371814 contains a unique core sequence that is conserved in various organisms, while the terminal exon region contains a unique 3'-end that is also conserved in various organisms.

Characterization of LOC105371814:

LOC105371814 was first identified using RNA sequencing (RNA-seq) data. The RNA-seq data revealed that LOC105371814 is a highly expressed RNA molecule in various organisms, including human, mouse, and rat. The expression level of LOC105371814 was also verified using qRT-PCR, a technique that is commonly used to quantify RNA levels in cells or tissues.

The structure of LOC105371814 was confirmed using bioinformatics tools, such as the RNA structure prediction tool (RSP) and the RNA secondary structure predictor (RSP). The results showed that LOC105371814 has a stem-loop and a terminal exon region, as previously described. The stem-loop region of LOC105371814 contains a unique core sequence that is conserved in various organisms, while the terminal exon region contains a unique 3'-end that is also conserved in various organisms.

Potential Drug Target Properties:

The unique structure and function of LOC105371814 make it an attractive target for drug development. Its stem-loop region and terminal exon region provide a potential binding site for small molecules or antibodies, making it an attractive target for drug development. Additionally, the high expression level of LOC105371814 in various organisms suggests that it could be a useful biomarker for drug development.

Potential Biomarker Properties:

LOC105371814 has the potential to serve as a biomarker for various diseases due to its unique structure and function. As previously described, LOC105371814 has a stem-loop and terminal exon region, which provide a potential binding site for small molecules or antibodies. Additionally, the high expression level of LOC105371814 in various organisms suggests that it could be a useful biomarker for disease diagnosis or monitoring.

Conclusion:

LOC105371814 is a unique non-coding RNA molecule with a stem-loop and terminal exon region. Its unique structure and function make it an attractive target for drug development and a potential biomarker for various diseases. Further studies are needed to fully understand its potential as a drug target and biomarker.

Protein Name: Uncharacterized LOC105371814

The "LOC105371814 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 LOC105371814 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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