Production and Characterization of Synthetic Carboxysome Shells with Incorporated Luminal Proteins.
نویسندگان
چکیده
Spatial segregation of metabolism, such as cellular-localized CO2 fixation in C4 plants or in the cyanobacterial carboxysome, enhances the activity of inefficient enzymes by selectively concentrating them with their substrates. The carboxysome and other bacterial microcompartments (BMCs) have drawn particular attention for bioengineering of nanoreactors because they are self-assembling proteinaceous organelles. All BMCs share an architecturally similar, selectively permeable shell that encapsulates enzymes. Fundamental to engineering carboxysomes and other BMCs for applications in plant synthetic biology and metabolic engineering is understanding the structural determinants of cargo packaging and shell permeability. Here we describe the expression of a synthetic operon in Escherichia coli that produces carboxysome shells. Protein domains native to the carboxysome core were used to encapsulate foreign cargo into the synthetic shells. These synthetic shells can be purified to homogeneity with or without luminal proteins. Our results not only further the understanding of protein-protein interactions governing carboxysome assembly, but also establish a platform to study shell permeability and the structural basis of the function of intact BMC shells both in vivo and in vitro. This system will be especially useful for developing synthetic carboxysomes for plant engineering.
منابع مشابه
Production and Characterization of Synthetic Carboxysome Shells
33 Spatial segregation of metabolism, such as cellular-localized CO2 fixation in C4 34 plants or in the cyanobacterial carboxysome, enhances the activity of inefficient 35 enzymes by selectively concentrating them with their substrates. The 36 carboxysome and other bacterial microcompartments (BMCs) have drawn 37 particular attention for bioengineering of nanoreactors because they are self38 as...
متن کاملProduction and characterization of polyclonal antibody against a synthetic peptide from β-actin protein
Objective(s):Antibodies against actin, as one of the most widely studied structural and multifunctional housekeeping proteins in eukaryotic cells, are used as internal loading controls in western blot analyses. The aim of this study was to produce polyclonal antibody against a synthetic peptide derived from N-terminal region of β-actin protein to be used as a protein loading control in western ...
متن کاملIdentification and structural analysis of a novel carboxysome shell protein with implications for metabolite transport.
Bacterial microcompartments (BMCs) are polyhedral bodies, composed entirely of proteins, that function as organelles in bacteria; they promote subcellular processes by encapsulating and co-localizing targeted enzymes with their substrates. The best-characterized BMC is the carboxysome, a central part of the carbon-concentrating mechanism that greatly enhances carbon fixation in cyanobacteria an...
متن کاملAddressing microbial organelles: a short peptide directs enzymes to the interior.
M any bacterial species contain protein shell-bound polyhedral inclusions referred to as bacterial microcompartments (BMCs). The earliest of these to be described and analyzed in detail was the carboxysome (1), an organelle that is essential for efficient CO2 fixation in cyanobacteria and many chemoautotrophs. By cosequestering ribulose 1,5-bisphosphate carboxylase/oxygenase (RubisCO) and a car...
متن کاملHalothiobacillus neapolitanus Carboxysomes Sequester Heterologous and Chimeric RubisCO Species
BACKGROUND The carboxysome is a bacterial microcompartment that consists of a polyhedral protein shell filled with ribulose 1,5-bisphosphate carboxylase/oxygenase (RubisCO), the enzyme that catalyzes the first step of CO2 fixation via the Calvin-Benson-Bassham cycle. METHODOLOGY/PRINCIPAL FINDINGS To analyze the role of RubisCO in carboxysome biogenesis in vivo we have created a series of Hal...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Plant physiology
دوره 170 3 شماره
صفحات -
تاریخ انتشار 2016