Meeting Proceedings from the 5th Minimal Cell WorkshopLife at Its Simplest Foundations in Minimal Cells

Abstract The fifth annual virtual minimal cell workshop, hosted by the J. Craig Venter Institute (JCVI), brought together an international community of researchers from academic, industrial, and government laboratories. The 2025 meeting featured 30 talks focused on using minimal bacterial cells to probe the fundamental principles of life, develop new construction strategies, and advance predictive frameworks for cellular behavior. Most of the presentations centered on the JCVI minimal bacterial cells JCVI-syn3.0, JCVI-syn3A, and JCVI-syn3B. Multiple talks addressed the persistent set of essential genes with unknown or partially defined functions, leveraging advanced imaging, computational modeling, and experimental evolution to uncover their cellular roles. Studies of protein moonlighting, membrane biophysics, cell division, metabolism, and aging demonstrated how minimal cells expose fundamental biological constraints often obscured in more complex organisms. Whole-cell computational models increasingly reproduce growth, division, metabolism, gene regulation, and macromolecular assembly. Presentations also highlighted new approaches to whole-genome transplantation, development of alternative minimal genome chassis, synthetic cell assembly from non-living components, chromosome-scale minimization in eukaryotes, and conceptual agricultural and prebiotic systems. Collectively, these efforts position minimal cells as powerful platforms for understanding, building, and predicting living systems.

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Publication Details

Journal
ACS Synthetic Biology
Published
2026-09-25
DOI
https://doi.org/10.1021/acssynbio.6c00454
Primary Topic
Origins and Evolution of Life
Type
article
Field-Weighted Citation Impact
0.00
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Meeting Proceedings from the 5th Minimal Cell WorkshopLife at Its Simplest Foundations in Minimal Cells

John I. Glass, Zumra Peksaglam Seidel, Ronald Rodriguez, Mariana Mathias Conroy Araujo et al.
ACS Synthetic Biology
Origins and Evolution of Life
article

Meeting Proceedings from the 5th Minimal Cell WorkshopLife at Its Simplest Foundations in Minimal Cells

John I. Glass, Zumra Peksaglam Seidel, Ronald Rodriguez, Mariana Mathias Conroy Araujo, Hajar Estiri
article en

Abstract

Abstract The fifth annual virtual minimal cell workshop, hosted by the J. Craig Venter Institute (JCVI), brought together an international community of researchers from academic, industrial, and government laboratories. The 2025 meeting featured 30 talks focused on using minimal bacterial cells to probe the fundamental principles of life, develop new construction strategies, and advance predictive frameworks for cellular behavior. Most of the presentations centered on the JCVI minimal bacterial cells JCVI-syn3.0, JCVI-syn3A, and JCVI-syn3B. Multiple talks addressed the persistent set of essential genes with unknown or partially defined functions, leveraging advanced imaging, computational modeling, and experimental evolution to uncover their cellular roles. Studies of protein moonlighting, membrane biophysics, cell division, metabolism, and aging demonstrated how minimal cells expose fundamental biological constraints often obscured in more complex organisms. Whole-cell computational models increasingly reproduce growth, division, metabolism, gene regulation, and macromolecular assembly. Presentations also highlighted new approaches to whole-genome transplantation, development of alternative minimal genome chassis, synthetic cell assembly from non-living components, chromosome-scale minimization in eukaryotes, and conceptual agricultural and prebiotic systems. Collectively, these efforts position minimal cells as powerful platforms for understanding, building, and predicting living systems.

ACS Synthetic Biology
J. Craig Venter Institute (US), Brazilian Agricultural Research Corporation (BR), Governo do Distrito Federal (BR)
Openalex Percentile: Top 11%
Origins and Evolution of Life
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Meeting Proceedings from the 5th Minimal Cell WorkshopLife at Its Simplest Foundations in Minimal Cells — John I. Glass, Zumra Peksaglam Seidel, et al. · ACS Synthetic Biology (2026) | TGRS Research Map | TGRS