Skip to content
Open access

Sequence adaptations satisfy the constraints of mitochondrial membrane protein evolution

Aug 2026 · bioRxiv · 0 citations
Biology

Abstract

Inner mitochondrial membrane proteins must be sufficiently hydrophilic to withstand aqueous exposure during translation and transit to the mitochondria. Meanwhile, their transmembrane segments must be sufficiently hydrophobic to stably embed in the lipid membrane. We hypothesized that sequence-level adaptations evolved to balance these constraints. Here, we integrate structure-informed evolutionary analyses of mitochondrial proteins with atomistic simulations and cell-based experiments to identify aliphatic-to-threonine substitutions (ATS) as a potential solution to these constraints. With high statistical confidence, this transmembrane segment-specific adaptation is recurrently and convergently observed throughout mitochondrial evolution. Conformational analyses show that threonine interacts with both water and the transmembrane helix backbone, thereby lowering hydrophobicity without destabilizing secondary structure. In the extremely hydrophobic ATP6 protein, reverting threonines to aliphatic residues disrupts mitochondrial targeting, while introducing threonines into a poorly targeted variant improves its mitochondrial localization. These findings have implications for mitochondrial genome evolution, the rational design of membrane proteins, and potentially mitochondrial gene therapy.

Read PDF

Similar papers

#protein folding Aug 2026

Structural basis of Saccharomyces cerevisiae Mba1 in mitochondrial co-translational membrane insertion.

The solution structure of mature Saccharomyces cerevisiae Mba1 is determined using multidimensional nuclear magnetic resonance (NMR) spectroscopy and reveals a compact α + β fold with a central hydrophobic cavity and distinct charged surface regions, providing a structural framework for interpreting previous functional...

Jing Yang, Mao-Sen Ruan, Dong-Shuai Bai et al. · 0 citations
Open access Aug 2026

Synthesis cost is a hidden driver of convergent amino acid composition in plastid ribosomal proteins

Protein evolution is a walk in the evolutionary space directed by mutation and selection. While functional and structural constraints serve as the main determinant of amino acid substitution in most proteins, synthesis cost and mutational bias can also alter the direction and rate of amino acid evolution, especially in...

Arnav Chaudhari, Palash Sethi, Yvemirca Vilbrun et al. · 0 citations
Open access Aug 2026

Combinatorial sequence elements fine-tune mitochondrial protein import to facilitate dual localization

It is found that PPTC7 has a moderately ‘weak’ presequence, but this feature is insufficient to promote dual targeting of a generic cargo protein, and sequence-specific features can work combinatorially to impart dual-localization capacity to mitochondrial proteins, enabling functions across cellular compartments.

Youmian Yan, Lianjie Wei, Thomas Schodl et al. · 0 citations
Open access Aug 2026

FAM136A is an essential chaperone for mitochondrial membrane protein biogenesis

It is concluded that FAM136A is an IMS-resident chaperone, necessary and sufficient to maintain nascent membrane proteins in a folding-competent state to mediate their integration into the bilayer.

M. Ernst, Jichen Zhang, Haoqi Xu et al. · 0 citations
Open access Mar 2026

A membrane insertion code for intrinsically disordered proteins

Membrane association of intrinsically disordered proteins (IDPs) mediates various cellular functions including membrane remodeling and signal transduction. Whereas membrane association through amphipathic helices and polybasic motifs is well understood, sequence determinants for the insertion of aromatic residues into...

Fidha Nazreen Kunnath Muhammedkutty, Huan-Xiang Zhou · 1 citation
Open access Aug 2026

The predicted interactome of the human mitochondrial proteome

MitoMatch is presented, an AlphaFold Multimer-based compendium of mitochondrial protein interactions that links orphan proteins to known pathways, defines the CoQ metabolon, and reveals the role of COA4 in copper delivery to cytochrome c oxidase.

Abhinav B. Swaminathan, M. Zulkifli, Rachel M. Guerra et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.