Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

DddY is a bacterial dimethylsulfoniopropionate lyase representing a new cupin enzyme superfamily with unknown primary function

View through CrossRef
Abstract Dimethylsulfide (DMS) is released at rates of >10 7 tons annually and plays a key role in the oceanic sulfur cycle and ecology. Marine bacteria, algae, and possibly other organisms, release DMS via cleavage of dimethylsulfoniopropionate (DMSP). Different genes encoding proteins with DMSP lyase activity are known belonging to different superfamilies and exhibiting highly variable levels of DMSP lyase activity. DddY shows the highest activity among all reported bacterial lyases yet is poorly characterized. Here, we describe the characterization of recombinant DddY is from different marine bacteria. We found that DddY activity demands a transition metal ion cofactor. DddY also shares two sequence motifs with other bacterial lyases assigned as cupin-like enzymes, DddQ, DddL, DddK, and DddW. These cupin motif residues are essential for DddY activity, as for the other cupin DMSP lyases, and all these enzymes are characterized by a common metal-chelator inhibitor (TPEN). Analysis of all sequences carrying these cupin motifs defined a superfamily: Cupin-DLL (DMSP lyases and lyase-like). The DMSP lyase families are sporadically distributed suggesting that DMSP lyases evolved within this superfamily independently along multiple lineages. However, the specific activity levels, genomic context analysis, and systematic profiling of substrate selectivity as described in the accompanying paper, indicate that for only some of these families, most distinctly DddY and DddL, DMSP lyase is the primary, native activity. In other families, foremost DddQ, DMSP lyase seems to be merely a promiscuous activity. The native function of DddQ, and of nearly all members of this newly identified Cupin-DLL superfamily, remains unknown. Abbreviations DMSP dimethylsulfoniopropionate DMS dimethylsulfide cupin-DLL cupin DMSP lyase and lyase-like Funding Financial support by the Estate of Mark Scher, and the Sasson & Marjorie Peress Philanthropic Fund, are gratefully acknowledged. D.S.T. is the Nella and Leon Benoziyo Professor of Biochemistry.
Title: DddY is a bacterial dimethylsulfoniopropionate lyase representing a new cupin enzyme superfamily with unknown primary function
Description:
Abstract Dimethylsulfide (DMS) is released at rates of >10 7 tons annually and plays a key role in the oceanic sulfur cycle and ecology.
Marine bacteria, algae, and possibly other organisms, release DMS via cleavage of dimethylsulfoniopropionate (DMSP).
Different genes encoding proteins with DMSP lyase activity are known belonging to different superfamilies and exhibiting highly variable levels of DMSP lyase activity.
DddY shows the highest activity among all reported bacterial lyases yet is poorly characterized.
Here, we describe the characterization of recombinant DddY is from different marine bacteria.
We found that DddY activity demands a transition metal ion cofactor.
DddY also shares two sequence motifs with other bacterial lyases assigned as cupin-like enzymes, DddQ, DddL, DddK, and DddW.
These cupin motif residues are essential for DddY activity, as for the other cupin DMSP lyases, and all these enzymes are characterized by a common metal-chelator inhibitor (TPEN).
Analysis of all sequences carrying these cupin motifs defined a superfamily: Cupin-DLL (DMSP lyases and lyase-like).
The DMSP lyase families are sporadically distributed suggesting that DMSP lyases evolved within this superfamily independently along multiple lineages.
However, the specific activity levels, genomic context analysis, and systematic profiling of substrate selectivity as described in the accompanying paper, indicate that for only some of these families, most distinctly DddY and DddL, DMSP lyase is the primary, native activity.
In other families, foremost DddQ, DMSP lyase seems to be merely a promiscuous activity.
The native function of DddQ, and of nearly all members of this newly identified Cupin-DLL superfamily, remains unknown.
Abbreviations DMSP dimethylsulfoniopropionate DMS dimethylsulfide cupin-DLL cupin DMSP lyase and lyase-like Funding Financial support by the Estate of Mark Scher, and the Sasson & Marjorie Peress Philanthropic Fund, are gratefully acknowledged.
D.
S.
T.
is the Nella and Leon Benoziyo Professor of Biochemistry.

Related Results

Native or promiscuous? Analyzing putative dimethylsulfoniopropionate lyases using a substrate proofing approach
Native or promiscuous? Analyzing putative dimethylsulfoniopropionate lyases using a substrate proofing approach
Abstract Enzyme promiscuity is widely spread. Foremost, within superfamilies, the native function of one enzyme is typically observed as promiscuous activity in rel...
The Acyl‐Carrier Protein of Citrate Lyase
The Acyl‐Carrier Protein of Citrate Lyase
When [14C]acetyl citrate lyase was dissociated in sodium dodecylsulfate and the products were separated by gel electrophoresis, all of the radioactive label appeared in a small pro...
Purification and characterization of novel salt‐active acharan sulfate lyase from Bacteroides stercoris HJ‐15
Purification and characterization of novel salt‐active acharan sulfate lyase from Bacteroides stercoris HJ‐15
Salt‐active acharan sulfate lyase (no EC number) has been purified from Bacteroides stercoris HJ‐15, which was isolated from human intestinal bacteria with GAG degrading enzymes. T...
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Biosurfactants are natural substances produced by several bacterial and fungal organisms that are amphiphilic and are extracellular (a part of the cell membrane). Biosurfactants ca...
Encapsulated Escherichia coli in alginate beads capable of secreting a heterologous pectin lyase
Encapsulated Escherichia coli in alginate beads capable of secreting a heterologous pectin lyase
Abstract Background Production of heterologous proteins in the E. coli periplasm, or into the extracellular fluid has many advantages; therefore ...
Effects of oxygen on pyruvate formate-lyase in situ and sugar metabolism of Streptococcus mutans and Streptococcus sanguis
Effects of oxygen on pyruvate formate-lyase in situ and sugar metabolism of Streptococcus mutans and Streptococcus sanguis
The strictly anaerobic metabolism of sugar in strains of Streptococcus mutans and Streptococcus sanguis was studied because deep layers of dental plaque are strictly anaerobic. Gal...
Disappearance of isocitrate lyase enzyme from cells of Chlorella pyrenoidosa
Disappearance of isocitrate lyase enzyme from cells of Chlorella pyrenoidosa
1. When acetate-adapted cells of Chlorella are suspended in nitrogen-free medium and supplied with glucose, isocitrate lyase activity disappears from the cells at a rate of about 9...

Back to Top