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Published on: May 13, 2019
Alpha-like subunits of multisubunit RNA polymerases: insights into structure, function, and disease
Onyinyechi C Onuoha1, Alana E Belkevich2, Ryan J Palumbo1
1Department of Biochemistry and Molecular Biology, SUNY Upstate Medical University, Syracuse, NY, USA.
None:
Multisubunit RNA polymerases share a deeply conserved architectural core, yet their regulatory complexity has expanded dramatically over evolution. At the heart of this architecture lies an ancient assembly module formed by the alpha and alpha-like subunits. Originally emerging as a homodimeric scaffold in bacteria, this module was duplicated and partitioned into asymmetric heterodimers in archaea and eukaryotes. Far from serving as inert structural elements, alpha-like subunits function as organizational hubs that coordinate polymerase biogenesis, interface with initiation and regulatory factors, and-in some contexts-operate outside the holoenzyme to influence RNA processing and growth signalling pathways. Recent structural and genetic studies reveal that although the α-motif-mediated dimerization framework is highly conserved, species- and polymerase-specific tuning of alpha-like subunit interaction surfaces has generated functional diversification, with important consequences for assembly fidelity, transcriptional regulation, and disease susceptibility. Mutations in alpha-like subunits shared between RNAPI and RNAPIII underlie a ribosomopathy and leukodystrophy, while altered dosage contributes to oncogenic growth programmes and proliferative signalling. These findings highlight alpha-like subunits as evolutionarily conserved yet adaptable platforms that couple transcriptional capacity to developmental and metabolic demands. By integrating structural, evolutionary, mechanistic, and clinical evidence, this review described the alpha-like subunits as central regulators of polymerase function and as emerging determinants of transcription-linked disease.
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