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RNA, 7SL, cytoplasmic 33, pseudogene (RN7SL33P)

Target
RN7SL33P
Molecular classification
Pseudogene, Non-coding RNA (pseudogenic), Other
01

Overview

RN7SL33P (RNA, 7SL, cytoplasmic 33, pseudogene) is a human genomic locus annotated as a pseudogene related to the 7SL RNA gene, which encodes the RNA component of the signal recognition particle (SRP)[4][6]. Pseudogenes like RN7SL33P are generally considered non-functional genomic sequences that resemble genuine genes but typically do not produce functional RNA or protein[5][6][8]. While the parent 7SL RNA (e.g., RN7SL1) plays a critical role in protein targeting as part of the SRP ribonucleoprotein complex[1][3][7], pseudogenes such as RN7SL33P do not encode functional SRP RNA molecules. Most 7SL pseudogenes, including RN7SL33P, are truncated or otherwise incomplete copies spread throughout the genome[5][6]. There is no current evidence that RN7SL33P itself has a biological function, role in disease, or pharmacological relevance. Its primary significance lies in being part of a large family of 7SL RNA pseudogenes present in the human genome[5][6][4]. Note: - The rationale for “is_incorrect: true” is that RN7SL33P is not a protein-coding gene, enzyme, receptor, or known therapeutic target, but rather a pseudogene with no demonstrated function, drug interactions, or established disease association[4][5][6][8]. - The confusion may arise from the functional parent gene (7SL RNA, RN7SL1), which is critical for the SRP complex, but RN7SL33P does not encode the functional molecule[1][3][7]. - This entry is incomplete as a therapeutic target and would not be suitable for further drug or biomarker structure-based work.

Other names
RN7SL33PRNA, 7SL, cytoplasmic 33, pseudogene
02

Biological functions

None known for RN7SL33P specifically; as a pseudogene, not believed to encode a functional RNA or directly participate in biological processesOther pseudogenes of 7SL RNA may participate in gene regulation through RNA interference in some contexts[8]Other
03

Disease associations

None known for RN7SL33P specificallyOther (pseudogenes in general can potentially be involved in gene regulation or cancer, but not demonstrated for RN7SL33P)[8]

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