Target intelligence / Profile preview

RNA, 5S ribosomal pseudogene 495 (RNA5SP495)

Target
RNA5SP495
Molecular classification
Pseudogene, rRNA pseudogene, Non-coding RNA
01

Overview

**RNA, 5S ribosomal pseudogene 495** is a member of the rRNA pseudogene family, specifically related to the 5S ribosomal RNA gene. Pseudogenes are DNA sequences similar to normal genes but typically nonfunctional due to accumulated mutations, interruptions, or lack of regulatory elements. This pseudogene represents a non-functional copy of the 5S ribosomal RNA gene (5S rRNA), a highly conserved RNA component of the large ribosomal subunit, which in its functional form plays a structural and architectural role in ribosome assembly and function in protein synthesis[1][3][5].\nUnlike functional genes, **RNA, 5S ribosomal pseudogene 495** does not encode a functional RNA or protein and is not a therapeutic target. In rare contexts, pseudogenes can influence cellular regulation via antisense RNA or serve as templates for regulatory small RNAs, but no such function is documented for this specific pseudogene[2][4]. The designation as \"495\" suggests it is one of many similar pseudogene loci, as multiple unprocessed and processed pseudogenes exist due to DNA duplication and retrotransposition processes in the genome[2][4].\n\nThis entry is likely **not a genuine drug target or receptor**, and there is no evidence it plays a direct or indirect classical molecular function in health or disease. Its inclusion or focus as a therapeutic target would be considered an error in most biomedical research or drug discovery contexts.

Other names
RN5S495RNA5SP495RNA, 5S ribosomal 495
02

Biological functions

Other (pseudogenes typically lack biological function, but may occasionally have regulatory roles such as acting as antisense transcripts or influencing epigenetic regulation[2])
03

Disease associations

Other (rarely, pseudogenes have been implicated in gene network regulation or disease through sequence similarity, antisense mechanisms, or epigenetic effects, but no disease role is documented specifically for this pseudogene[2])

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