60S ribosomal protein L8
60S ribosomal protein L8 (RPL8) is a protein that in humans is encoded by the RPL8 gene. This protein is a component of the 60S subunit of the ribosome, playing a critical role in the function of the ribosome, which is responsible for protein synthesis within the cell. Ribosomal proteins such as RPL8 are involved in the cellular process of translation, where messenger RNA (mRNA) is decoded to produce polypeptide chains that will eventually fold into functional proteins.
Function
RPL8 is one of the proteins that make up the large 60S subunit of the ribosome. It is involved in the assembly and structural stability of the ribosome, which is essential for its role in protein synthesis. The ribosome functions by translating mRNA sequences into polypeptide chains, a process fundamental to all living cells. Proteins like RPL8 are critical for the ribosome's ability to bind mRNA and transfer RNA (tRNA), facilitating the accurate translation of mRNA into a corresponding amino acid sequence.
Gene
The RPL8 gene is located on chromosome 8 in humans. It encodes the 60S ribosomal protein L8, which is a constituent of the ribosomal 60S subunit. The regulation of ribosomal protein genes, including RPL8, is crucial for the control of protein synthesis and, consequently, for cell growth and multiplication.
Clinical Significance
Alterations in the expression or function of ribosomal proteins, including RPL8, can have significant impacts on cellular function and can contribute to the development of diseases. For example, mutations or changes in the regulation of ribosomal protein genes have been associated with diseases such as cancer and Diamond-Blackfan anemia, a rare genetic disorder that affects the production of red blood cells and can cause various physical abnormalities. Research into ribosomal proteins like RPL8 may provide insights into the mechanisms of these diseases and potential therapeutic targets.
Evolutionary Conservation
Ribosomal proteins, including RPL8, are highly conserved across different species, reflecting their fundamental role in the ribosome's function. This conservation across species, from bacteria to humans, underscores the essential nature of protein synthesis in all forms of life.
See Also
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Contributors: Prab R. Tumpati, MD