Target intelligence / Profile preview

RNA, 7SL, cytoplasmic 589, pseudogene (RN7SL589P)

Target
RN7SL589P
Molecular classification
Other (specifically, pseudogene of small cytoplasmic RNA, related to 7SL RNA)
01

Overview

RNA, 7SL, cytoplasmic 589, pseudogene (RN7SL589P) is a human pseudogene and a member of a large family of 7SL RNA pseudogenes[1]. The canonical 7SL RNA is a highly conserved non-coding RNA that forms the scaffold of the signal recognition particle (SRP), a ribonucleoprotein complex essential for targeting secretory proteins to the endoplasmic reticulum in eukaryotes[3][5]. Pseudogenes such as RN7SL589P represent non-functional genomic sequences similar to the functional 7SL RNA gene, but they do not encode active RNA or protein, and there is no evidence they serve as therapeutic targets[1][4]. Some pseudogenes may exert regulatory effects in trans by acting as molecular decoys for microRNAs or RNA-binding proteins, thus modulating the expression of their parent genes[4]. However, there are no reports implicating RN7SL589P in such mechanisms or in any disease or therapeutic process to date. Note: - RN7SL589P is not a drug target, receptor, enzyme, transporter, or annotated regulatory element. - There is no indication of this being a misspelled or incorrect entry; the information is simply limited because this is a non-functional pseudogene[1][4]. If you need detailed annotation or disease association for pseudogenes in general or wish to explore functional 7SL RNA, additional sources exist, but RN7SL589P itself is a non-coding, non-functional entity.

Other names
RN7SL589PRNA, 7SL, cytoplasmic 589, pseudogene
02

Mechanism of action

None

03

Biological functions

No protein-coding or direct regulatory function; pseudogenes are non-functional copies of genesSome pseudogenes can act as decoys for RNA-binding proteins or microRNAs, affecting the regulation of their parental (functional) genes, though no evidence is available specifically for RN7SL589P
04

Disease associations

None known for this specific pseudogene; in general, some pseudogenes (not specifically RN7SL589P) have been linked to regulatory functions in cancer and other diseases when they function as competing endogenous RNAs

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