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1.
Appl Environ Microbiol ; 72(1): 59-65, 2006 Jan.
Article in English | MEDLINE | ID: mdl-16391025

ABSTRACT

Several strains that grow on medium-chain-length alkanes and catalyze interesting hydroxylation and epoxidation reactions do not possess integral membrane nonheme iron alkane hydroxylases. Using PCR, we show that most of these strains possess enzymes related to CYP153A1 and CYP153A6, cytochrome P450 enzymes that were characterized as alkane hydroxylases. A vector for the polycistronic coexpression of individual CYP153 genes with a ferredoxin gene and a ferredoxin reductase gene was constructed. Seven of the 11 CYP153 genes tested allowed Pseudomonas putida GPo12 recombinants to grow well on alkanes, providing evidence that the newly cloned P450s are indeed alkane hydroxylases.


Subject(s)
Alkanes/metabolism , Cell Membrane/enzymology , Cytochrome P-450 Enzyme System/metabolism , Gram-Positive Bacteria/enzymology , Mixed Function Oxygenases/metabolism , Proteobacteria/enzymology , Base Composition , Biodegradation, Environmental , Cytochrome P-450 CYP4A , Cytochrome P-450 Enzyme System/genetics , Gram-Positive Bacteria/genetics , Gram-Positive Bacteria/metabolism , Mixed Function Oxygenases/genetics , Molecular Sequence Data , Proteobacteria/genetics , Proteobacteria/metabolism , Pseudomonas putida/enzymology , Pseudomonas putida/genetics , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Sequence Analysis, DNA
2.
Mol Biol Cell ; 16(2): 731-41, 2005 Feb.
Article in English | MEDLINE | ID: mdl-15548590

ABSTRACT

Griscelli syndrome type 2 (GS2) is a genetic disorder in which patients exhibit life-threatening defects of cytotoxic T lymphocytes (CTLs) whose lytic granules fail to dock on the plasma membrane and therefore do not release their contents. The disease is caused by the absence of functional rab27a, but how rab27a controls secretion of lytic granule contents remains elusive. Mutations in Munc13-4 cause familial hemophagocytic lymphohistiocytosis subtype 3 (FHL3), a disease phenotypically related to GS2. We show that Munc13-4 is a direct partner of rab27a. The two proteins are highly expressed in CTLs and mast cells where they colocalize on secretory lysosomes. The region comprising the Munc13 homology domains is essential for the localization of Munc13-4 to secretory lysosomes. The GS2 mutant rab27aW73G strongly reduced binding to Munc13-4, whereas the FHL3 mutant Munc13-4Delta608-611 failed to bind rab27a. Overexpression of Munc13-4 enhanced degranulation of secretory lysosomes in mast cells, showing that it has a positive regulatory role in secretory lysosome fusion. We suggest that the secretion defects seen in GS2 and FHL3 have a common origin, and we propose that the rab27a/Munc13-4 complex is an essential regulator of secretory granule fusion with the plasma membrane in hematopoietic cells. Mutations in either of the two genes prevent formation of this complex and abolish secretion.


Subject(s)
Lysosomes/metabolism , Mast Cells/cytology , Mast Cells/metabolism , Proteins/metabolism , rab GTP-Binding Proteins/metabolism , Animals , Blotting, Western , Cell Line , Glutathione Transferase/metabolism , Green Fluorescent Proteins/metabolism , HeLa Cells , Humans , Immunohistochemistry , Jurkat Cells , K562 Cells , Mast Cells/ultrastructure , Microscopy, Immunoelectron , Mutation , Protein Binding , Protein Structure, Tertiary , Proteins/chemistry , Proteins/genetics , Proteins/ultrastructure , Rats , Recombinant Proteins/metabolism , Sulfur Radioisotopes/metabolism , T-Lymphocytes, Cytotoxic/metabolism , Transfection , U937 Cells , rab GTP-Binding Proteins/chemistry , rab GTP-Binding Proteins/genetics , rab27 GTP-Binding Proteins
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