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Cytochrome P450 family 4 subfamily Z member 2, pseudogene (CYP4Z2P)

Target
CYP4Z2P
Molecular classification
Pseudogene, Other (non-coding genomic element), Cytochrome P450 family (sequence homology/family)
01

Overview

Cytochrome P450 family 4 subfamily Z member 2, pseudogene (CYP4Z2P) is a human pseudogene and does not code for a functional protein. It is homologous to cytochrome P450 enzymes, which are a large superfamily of heme-containing monooxygenases involved in drug metabolism, steroid synthesis, and other oxidative metabolic processes, but CYP4Z2P specifically is an inactive pseudogene[5][7][11]. It does not encode an enzymatically active protein and is not a receptor, enzyme, or direct therapeutic target. However, emerging evidence suggests that some pseudogenes, including CYP4Z2P, may influence cancer biology at the RNA level, notably in breast cancer by acting as a competitive endogenous RNA (ceRNA) and affecting the behavior of its parental gene CYP4Z1, with anti-apoptotic and potential oncogenic roles[4]. Despite this, CYP4Z2P is not the subject of direct drug development, is not targeted by any known drug, and has no known protein product or associated safety concerns as a therapeutic target. Rather, it may serve as a biomarker or regulatory RNA relevant for cancer biology and patient subgroup identification[4].

Other names
Putative inactive cytochrome P450 family member 4Z2CYP4Z2PFLJ40054
02

Mechanism of action

Not applicable (as it is a pseudogene, it is not targeted by drugs with a defined mechanism)

03

Biological functions

No protein-coding function; not an active enzymePseudogene may have regulatory roles at the RNA level in some contextsInvolvement as a competing endogenous RNA (ceRNA), likely affecting regulation of other genes such as the parental gene CYP4Z1 in cancer biology
04

Disease associations

Cancer (especially breast cancer; pseudogene RNA reported to have an anti-apoptotic function in breast cancer via ceRNA-mediated regulation)Other (potential biomarker or RNA-level modulator in cancer subtype discrimination, but not a classic direct drug target)
05

Biomarkers

Potential biomarker for cancer subtype characterization (especially in breast cancer, due to subtype-specific expression of pseudogene RNA)May indirectly reflect the regulation network involving parental gene CYP4Z1

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