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Updated: Jun 1, 2026

Assessment of Submitochondrial Protein Localization in Budding Yeast Saccharomyces cerevisiae
Published on: July 19, 2021
Crystal structures and putative interface of Saccharomyces cerevisiae mitochondrial matrix proteins Mmf1 and Mam33
You-Guang Pu1, Yong-Liang Jiang, Xiao-Dong Ye
1Hefei National Laboratory for Physical Sciences at Microscale and School of Life Sciences, People's Republic of China.
Abstract:
The yeast Saccharomyces cerevisiae mitochondrial matrix factor Mmf1, a member in the YER057c/Yigf/Uk114 family, participates in isoleucine biosynthesis and mitochondria maintenance. Mmf1 physically interacts with another mitochondrial matrix protein Mam33, which is involved in the sorting of cytochrome b₂ to the intermembrane space as well as mitochondrial ribosomal protein synthesis. To elucidate the structural basis for their interaction, we determined the crystal structures of Mmf1 and Mam33 at 1.74 and 2.10 Å, respectively. Both Mmf1 and Mam33 adopt a trimeric structure: each subunit of Mmf1 displays a chorismate mutase fold with a six-stranded β-sheet flanked by two α-helices on one side, whereas a subunit of Mam33 consists of a twisted six-stranded β-sheet surrounded by five α-helices. Biochemical assays combined with structure-based computational simulation enable us to model a putative complex of Mmf1-Mam33, which consists of one Mam33 trimer and two tandem Mmf1 trimers in a head-to-tail manner. The two interfaces between the ring-like trimers are mainly composed of electrostatic interactions mediated by complementary negatively and positively charged patches. These results provided the structural insights into the putative function of Mmf1 during mitochondrial protein synthesis via Mam33, a protein binding to mitochondrial ribosomal proteins.
Insights
The mitochondrial proteins Mmf1 and Mam33 interact to maintain mitochondria and aid protein synthesis. Structural analysis reveals their complex formation through electrostatic interactions, offering insights into mitochondrial function.
Area of Science:
- Mitochondrial biology
- Structural biology
- Biochemistry
Background:
- Mitochondrial matrix factor Mmf1 is involved in isoleucine biosynthesis and mitochondria maintenance.
- Mmf1 interacts with Mam33, crucial for cytochrome b₂ sorting and mitochondrial ribosomal protein synthesis.
Purpose of the Study:
- To elucidate the structural basis of the Mmf1-Mam33 interaction.
- To understand the functional implications of this interaction in mitochondrial processes.
Main Methods:
- X-ray crystallography to determine the structures of Mmf1 and Mam33.
- Biochemical assays and structure-based computational simulations to model the Mmf1-Mam33 complex.
Main Results:
- Crystal structures revealed Mmf1 and Mam33 adopt trimeric structures with distinct folds.
- A putative Mmf1-Mam33 complex model shows one Mam33 trimer interacting with two Mmf1 trimers.
- The interaction interfaces are characterized by electrostatic interactions between charged patches.
Conclusions:
- The study provides structural insights into the Mmf1-Mam33 interaction.
- This interaction likely plays a role in Mmf1's function during mitochondrial protein synthesis via Mam33.
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