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RNA, 7SL, cytoplasmic 96, pseudogene (RN7SL96P)

Target
RN7SL96P
Molecular classification
Pseudogene, Non-coding RNA, Processed pseudogene, Small cytoplasmic RNA (parental molecule: 7SL RNA)
01

Overview

RN7SL96P is a processed pseudogene of the 7SL RNA gene family, specifically designated as "RNA, 7SL, cytoplasmic 96, pseudogene". Unlike its parent gene, which encodes the functional RNA component of the signal recognition particle (SRP) involved in protein targeting to the endoplasmic reticulum, RN7SL96P does not produce a functional protein or RNA[3][2]. Pseudogenes like RN7SL96P are genomic elements with high sequence similarity to functional genes but typically lack coding potential or critical regulatory signals required for protein or structural RNA production[2]. Although most pseudogenes are considered non-functional, some have been shown to be transcribed and may generate small non-coding RNAs that modulate gene expression or participate in chromatin regulation. The functional relevance of RN7SL96P specifically has not been established, and there is no evidence of its being a therapeutic target or its involvement in disease as of current literature[2]. Key context: - The parent molecule, 7SL RNA, is essential in the signal recognition particle for protein translocation, but RN7SL96P itself is not part of the SRP or known biological complexes[3][1]. - Many pseudogenes can be transcribed and may yield regulatory short RNAs or influence epigenetic marks, though evidence for RN7SL96P's activity is currently lacking[2]. - RN7SL96P is categorized as a processed pseudogene rather than a protein-coding or structural RNA gene. If you require information about the parent functional molecule (7SL RNA or SRP RNA), it can be detailed separately, as this entry refers specifically to the pseudogene variant.

Other names
RN7SL96P7SL RNA pseudogene 96RNA, 7SL, cytoplasmic 96, pseudogene
02

Biological functions

Likely non-functional in protein-coding capacity (as with most pseudogenes)[2]May participate in regulatory mechanisms (possible source of small regulatory RNAs)[2]Possible role in chromatin modification or transcriptional regulation through small RNAs[2]
03

Disease associations

Other (no direct evidence for major disease association; general regulatory roles have been proposed for pseudogenes)[2]

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