Target intelligence / Profile preview

RNA, 7SL, cytoplasmic 634, pseudogene (RN7SL634P)

Target
RN7SL634P
Molecular classification
Pseudogene, Non-coding RNA, 7SL RNA pseudogene
01

Overview

RN7SL634P (RNA, 7SL, cytoplasmic 634, pseudogene) is a member of a large family of 7SL RNA-derived pseudogenes in the human genome. The functional 7SL RNA is a non-coding RNA component of the signal recognition particle (SRP), which is involved in targeting proteins to the endoplasmic reticulum during translation. In contrast, RN7SL634P is a pseudogene; it is a non-functional, sequence-similar relic generated by the reverse integration of 7SL RNA into the genome, often truncated and not generally expressed. Pseudogenes such as RN7SL634P are not actively transcribed into functional products, do not encode proteins or active RNAs, and are not considered molecular targets or receptors. While some pseudogenes can possess regulatory RNA functions (such as acting as competitive endogenous RNAs in certain cases), there is no evidence for RN7SL634P specifically playing such a role. RN7SL634P is listed in genomic databases with aliases including RN7SL634P, RNA, 7SL, Cytoplasmic 634, Pseudogene, and ENSG00000242894. Its molecular identity is in the non-coding RNA/pseudogene category, with no established disease, therapeutic, or biomarker roles. If a specific functional non-pseudogene member of the 7SL family was intended (such as the functional 7SL RNA involved in SRP), a different canonical name and classification would be required.

Other names
RN7SL634PRNA, 7SL, Cytoplasmic 634, PseudogeneENSG00000242894
02

Biological functions

No direct biological functions are reported for RN7SL634P as it is not transcribed into a functional product; while some pseudogenes can regulate gene expression through transcript-based interactions, no specific function is reported for RN7SL634P.
03

Disease associations

No direct associations with disease have been identified for RN7SL634P; however, families of 7SL RNA and pseudogenes have been implicated in gene regulation and may play indirect regulatory roles in cancer and other conditions.

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