Target intelligence / Profile preview

Ribosome binding factor A, mitochondrial (RBFA)

Target
RBFA
Molecular classification
RNA-binding protein, Ribosome assembly factor, Mitochondrial protein, Other (does not fit into common drug target families like "Receptor," "Ion channel," or "Enzyme")
01

Overview

Ribosome binding factor A, mitochondrial (RBFA), is a mitochondrial RNA-binding protein involved in the late steps of mitoribosome small subunit maturation. In human mitochondria, RBFA binds specifically and predominantly to the 12S rRNA, particularly at the 3′-terminal region at helices 44 and 45[1]. This association facilitates the dimethylation of two consecutive adenines, an essential modification for the proper maturation of mitochondrial rRNA and subsequent assembly of functional mitoribosomes. RBFA is necessary for the quality control of mitochondrial ribosome assembly, preventing the formation of dysfunctional ribosomes and supporting mitochondrial gene expression. While functionally analogous to bacterial RbfA involved in cold-shock adaptation and 30S ribosomal subunit maturation[2][3], human RBFA operates within a distinct molecular context. Loss of RBFA disrupts mitochondrial ribosome biogenesis, impairs cell growth, and may contribute to cellular phenotypes associated with mitochondrial dysfunction, although it is not currently linked to specific disease states[1]. No direct small molecule modulators or clinical drugs targeting RBFA are known, and it does not serve as a clinical biomarker or drug safety concern.

Other names
Putative ribosome-binding factor A, mitochondrialRBFAC18orf22FLJ21172HsT169Ribosome binding factor A (putative)
02

Biological functions

Mitoribosome (mitochondrial ribosome) biogenesis[1]12S rRNA maturation in mitochondria[1]Quality control of ribosome assembly[1][3]Regulation of mitochondrial gene expressionPossibly influences cell growth and viability through effects on ribosomal function[1]
03

Disease associations

Other (Disruption of RBFA leads to mitochondrial defects and cell growth impairment; no direct link to distinct diseases like cancer or neurodegeneration has been published[1])

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