An unusually small gene required for sporulation by Bacillus subtilis.

PubWeight™: 1.62‹?› | Rank: Top 4%

🔗 View Article (PMID 8231808)

Published in Mol Microbiol on August 01, 1993

Authors

P A Levin1, N Fan, E Ricca, A Driks, R Losick, S Cutting

Author Affiliations

1: Department of Cellular and Developmental Biology, Harvard University, Cambridge, Massachusetts 02138.

Articles citing this

The sigma factors of Bacillus subtilis. Microbiol Rev (1995) 5.76

Bacillus subtilis spore coat. Microbiol Mol Biol Rev (1999) 4.21

The Bacillus subtilis endospore: assembly and functions of the multilayered coat. Nat Rev Microbiol (2012) 2.30

Geometric cue for protein localization in a bacterium. Science (2009) 2.27

Evidence that subcellular localization of a bacterial membrane protein is achieved by diffusion and capture. Proc Natl Acad Sci U S A (2002) 1.81

Bacillus subtilis spore coat assembly requires cotH gene expression. J Bacteriol (1996) 1.61

A compartmentalized regulator of developmental gene expression in Bacillus subtilis. J Bacteriol (1996) 1.51

A four-dimensional view of assembly of a morphogenetic protein during sporulation in Bacillus subtilis. J Bacteriol (1999) 1.50

Subcellular localization of a small sporulation protein in Bacillus subtilis. J Bacteriol (2003) 1.48

A Quality-Control Mechanism Removes Unfit Cells from a Population of Sporulating Bacteria. Dev Cell (2015) 1.46

SpoVM, a small protein essential to development in Bacillus subtilis, interacts with the ATP-dependent protease FtsH. J Bacteriol (1997) 1.22

Small proteins can no longer be ignored. Annu Rev Biochem (2014) 1.21

SpoVID guides SafA to the spore coat in Bacillus subtilis. J Bacteriol (2001) 1.20

ATP-driven self-assembly of a morphogenetic protein in Bacillus subtilis. Mol Cell (2008) 1.19

Spore formation in Bacillus subtilis. Environ Microbiol Rep (2013) 1.19

Macromolecules that prefer their membranes curvy. Mol Microbiol (2010) 1.17

SpoIVA and SipL are Clostridium difficile spore morphogenetic proteins. J Bacteriol (2013) 1.13

Cloning and characterization of spoVR, a gene from Bacillus subtilis involved in spore cortex formation. J Bacteriol (1994) 1.05

The coat morphogenetic protein SpoVID is necessary for spore encasement in Bacillus subtilis. Mol Microbiol (2009) 1.04

Analysis of the relationship between the decrease in pH and accumulation of 3-phosphoglyceric acid in developing forespores of Bacillus species. J Bacteriol (1996) 1.02

CotE binds to CotC and CotU and mediates their interaction during spore coat formation in Bacillus subtilis. J Bacteriol (2009) 0.99

cse15, cse60, and csk22 are new members of mother-cell-specific sporulation regulons in Bacillus subtilis. J Bacteriol (1997) 0.92

Small proteins link coat and cortex assembly during sporulation in Bacillus subtilis. Mol Microbiol (2012) 0.90

Unmasking novel sporulation genes in Bacillus subtilis. J Bacteriol (2004) 0.89

Physical interaction between coat morphogenetic proteins SpoVID and CotE is necessary for spore encasement in Bacillus subtilis. J Bacteriol (2012) 0.88

Organization and evolution of the cotG and cotH genes of Bacillus subtilis. J Bacteriol (2011) 0.88

Protein localization by recognition of membrane curvature. Curr Opin Microbiol (2010) 0.87

Physical basis for the adaptive flexibility of Bacillus spore coats. J R Soc Interface (2012) 0.87

Structural basis for the geometry-driven localization of a small protein. Proc Natl Acad Sci U S A (2015) 0.85

The SpoIIQ landmark protein has different requirements for septal localization and immobilization. Mol Microbiol (2013) 0.82

A versatile nano display platform from bacterial spore coat proteins. Nat Commun (2015) 0.80

devI is an evolutionarily young negative regulator of Myxococcus xanthus development. J Bacteriol (2015) 0.80

Clostridium taeniosporum is a close relative of the Clostridium botulinum Group II. Anaerobe (2008) 0.76

Cell Death Pathway That Monitors Spore Morphogenesis. Trends Microbiol (2017) 0.76

Spherical Nanoparticle Supported Lipid Bilayers for the Structural Study of Membrane Geometry-Sensitive Molecules. J Am Chem Soc (2015) 0.75

The Conserved Spore Coat Protein SpoVM Is Largely Dispensable in Clostridium difficile Spore Formation. mSphere (2017) 0.75

Regulation of the spoVM gene of Bacillus subtilis. Curr Microbiol (2008) 0.75

The Unsolved Problem of How Cells Sense Micron-Scale Curvature. Trends Biochem Sci (2017) 0.75

Articles by these authors

Nucleotide sequences that signal the initiation of transcription and translation in Bacillus subtilis. Mol Gen Genet (1982) 12.95

Fruiting body formation by Bacillus subtilis. Proc Natl Acad Sci U S A (2001) 8.06

Genetics of endospore formation in Bacillus subtilis. Annu Rev Genet (1986) 7.95

Cascades of Sigma factors. Cell (1981) 7.58

Role of AbrB in Spo0A- and Spo0B-dependent utilization of a sporulation promoter in Bacillus subtilis. J Bacteriol (1987) 7.20

Molecular genetics of sporulation in Bacillus subtilis. Annu Rev Genet (1996) 7.17

Science education. Changing the culture of science education at research universities. Science (2011) 6.17

Use of a lacZ fusion to study the role of the spoO genes of Bacillus subtilis in developmental regulation. Cell (1983) 6.17

Construction of a cloning site near one end of Tn917 into which foreign DNA may be inserted without affecting transposition in Bacillus subtilis or expression of the transposon-borne erm gene. Plasmid (1984) 5.95

Two RNA polymerase sigma factors from Bacillus subtilis discriminate between overlapping promoters for a developmentally regulated gene. Nature (1983) 5.82

Genetic transposition and insertional mutagenesis in Bacillus subtilis with Streptococcus faecalis transposon Tn917. Proc Natl Acad Sci U S A (1983) 5.57

A novel method for the rapid cloning in Escherichia coli of Bacillus subtilis chromosomal DNA adjacent to Tn917 insertions. Mol Gen Genet (1984) 5.24

A sporulation-induced sigma-like regulatory protein from B. subtilis. Cell (1981) 5.20

Change in the template specificity of RNA polymerase during sporulation of Bacillus subtilis. Nature (1969) 4.81

Chromosomal rearrangement generating a composite gene for a developmental transcription factor. Science (1989) 4.78

Regulation of a promoter that is utilized by minor forms of RNA polymerase holoenzyme in Bacillus subtilis. J Mol Biol (1986) 4.69

Identification and characterization of genes controlled by the sporulation-regulatory gene spo0H in Bacillus subtilis. J Bacteriol (1989) 4.58

Gene encoding the sigma 37 species of RNA polymerase sigma factor from Bacillus subtilis. Proc Natl Acad Sci U S A (1986) 4.41

A modified RNA polymerase transcribes a cloned gene under sporulation control in Bacillus subtilis. Nature (1979) 4.30

Novel RNA polymerase sigma factor from Bacillus subtilis. Proc Natl Acad Sci U S A (1980) 4.09

Chromosome and low copy plasmid segregation in E. coli: visual evidence for distinct mechanisms. Cell (1997) 4.06

Bipolar localization of the replication origin regions of chromosomes in vegetative and sporulating cells of B. subtilis. Cell (1997) 3.97

The transcriptional profile of early to middle sporulation in Bacillus subtilis. Proc Natl Acad Sci U S A (2000) 3.96

Control of developmental transcription factor sigma F by sporulation regulatory proteins SpoIIAA and SpoIIAB in Bacillus subtilis. Proc Natl Acad Sci U S A (1990) 3.85

Transcription factor Spo0A switches the localization of the cell division protein FtsZ from a medial to a bipolar pattern in Bacillus subtilis. Genes Dev (1996) 3.84

SpoIIAB is an anti-sigma factor that binds to and inhibits transcription by regulatory protein sigma F from Bacillus subtilis. Proc Natl Acad Sci U S A (1993) 3.63

Genetic studies of a secondary RNA polymerase sigma factor in Bacillus subtilis. J Bacteriol (1987) 3.62

Structural alteration of RNA polymerase during sporulation. Nature (1970) 3.60

Developmentally regulated transcription in a cloned segment of the Bacillus subtilis chromosome. J Bacteriol (1981) 3.58

An adenosine nucleotide switch controlling the activity of a cell type-specific transcription factor in B. subtilis. Cell (1994) 3.56

Characterization of spores of Bacillus subtilis which lack dipicolinic acid. J Bacteriol (2000) 3.50

Mapping a cloned gene under sporulation control by inserttion of a drug resistance marker into the Bacillus subtilis chromosome. J Bacteriol (1980) 3.49

Mutation changing the specificity of an RNA polymerase sigma factor. J Mol Biol (1989) 3.36

Promoter for a developmentally regulated gene in Bacillus subtilis. Cell (1981) 3.33

Switch protein alters specificity of RNA polymerase containing a compartment-specific sigma factor. Science (1989) 3.28

A forespore checkpoint for mother cell gene expression during development in B. subtilis. Cell (1990) 3.28

Inactivation of FtsI inhibits constriction of the FtsZ cytokinetic ring and delays the assembly of FtsZ rings at potential division sites. Proc Natl Acad Sci U S A (1997) 3.25

Identification of the promoter for a peptide antibiotic biosynthesis gene from Bacillus brevis and its regulation in Bacillus subtilis. J Bacteriol (1987) 3.20

Gene encoding a morphogenic protein required in the assembly of the outer coat of the Bacillus subtilis endospore. Genes Dev (1988) 3.12

New ways to study developmental genes in spore-forming bacteria. Science (1985) 3.12

Cascade regulation of spore coat gene expression in Bacillus subtilis. J Mol Biol (1990) 3.10

Activation of cell-specific transcription by a serine phosphatase at the site of asymmetric division. Science (1995) 3.08

Establishment of cell type by compartmentalized activation of a transcription factor. Science (1991) 3.06

Genetic analysis of Bacillus subtilis spo mutations generated by Tn917-mediated insertional mutagenesis. Genetics (1987) 3.04

Use of immunofluorescence to visualize cell-specific gene expression during sporulation in Bacillus subtilis. J Bacteriol (1995) 3.02

Identification of the promoter for a spore coat protein gene in Bacillus subtilis and studies on the regulation of its induction at a late stage of sporulation. J Mol Biol (1988) 3.01

Extracellular control of spore formation in Bacillus subtilis. Proc Natl Acad Sci U S A (1988) 2.96

Genes encoding spore coat polypeptides from Bacillus subtilis. J Mol Biol (1987) 2.91

Deletion analysis of a complex promoter for a developmentally regulated gene from Bacillus subtilis. J Mol Biol (1983) 2.91

Visualization of the subcellular location of sporulation proteins in Bacillus subtilis using immunofluorescence microscopy. Mol Microbiol (1995) 2.85

Loss of the sigma activity of RNA polymerase of Bacillus subtilis during sporulation. Proc Natl Acad Sci U S A (1973) 2.85

How and why bacteria talk to each other. Cell (1993) 2.83

Characterization of spoIVA, a sporulation gene involved in coat morphogenesis in Bacillus subtilis. J Bacteriol (1992) 2.80

Regulatory studies on the promoter for a gene governing synthesis and assembly of the spore coat in Bacillus subtilis. J Mol Biol (1989) 2.79

Localization of protein implicated in establishment of cell type to sites of asymmetric division. Science (1995) 2.76

Cloned Bacillus subtilis DNA containing a gene that is activated early during sporulation. Cell (1977) 2.76

Chromosome arrangement within a bacterium. Curr Biol (1998) 2.74

RNA polymerase mutants blocked in sporulation. Nature (1970) 2.74

Why and how bacteria localize proteins. Science (2009) 2.73

Antibody directed against Bacillus subtilis rho factor purified by sodium dodecyl sulfate slab gel electrophoresis. Effect on transcription by RNA polymerase in crude extracts of vegetative and sporulating cells. J Biol Chem (1975) 2.73

Subcellular localization of proteins involved in the assembly of the spore coat of Bacillus subtilis. Genes Dev (1994) 2.69

Forespore-specific transcription of a gene in the signal transduction pathway that governs Pro-sigma K processing in Bacillus subtilis. Genes Dev (1991) 2.53

The promoter for a sporulation gene in the spoIVC locus of Bacillus subtilis and its use in studies of temporal and spatial control of gene expression. J Bacteriol (1988) 2.53

The Bacillus subtilis gene for the development transcription factor sigma K is generated by excision of a dispensable DNA element containing a sporulation recombinase gene. Genes Dev (1990) 2.44

RNA polymerase heterogeneity in Streptomyces coelicolor. Nature (1985) 2.43

Cascades of sigma factors revisited. Mol Microbiol (1990) 2.38

RNA polymerase from sporulating Bacillus subtilis. Purification and properties of a modified form of the enzyme containing two sporulation polypeptides. J Biol Chem (1975) 2.37

Use of time-lapse microscopy to visualize rapid movement of the replication origin region of the chromosome during the cell cycle in Bacillus subtilis. Mol Microbiol (1998) 2.36

Sporulation operon spoIVF and the characterization of mutations that uncouple mother-cell from forespore gene expression in Bacillus subtilis. J Mol Biol (1991) 2.34

Temporal and spatial control of the mother-cell regulatory gene spoIIID of Bacillus subtilis. Genes Dev (1989) 2.33

Identification of Bacillus subtilis genes for septum placement and shape determination. J Bacteriol (1992) 2.31

Use of green fluorescent protein for visualization of cell-specific gene expression and subcellular protein localization during sporulation in Bacillus subtilis. J Bacteriol (1995) 2.28

Extracellular complementation of a developmental mutation implicates a small sporulation protein in aerial mycelium formation by S. coelicolor. Cell (1991) 2.24

Two amino acids in an RNA polymerase sigma factor involved in the recognition of adjacent base pairs in the -10 region of a cognate promoter. Proc Natl Acad Sci U S A (1990) 2.23

A family of membrane-embedded metalloproteases involved in regulated proteolysis of membrane-associated transcription factors. Proc Natl Acad Sci U S A (1999) 2.22

Localization of the Escherichia coli cell division protein Ftsl (PBP3) to the division site and cell pole. Mol Microbiol (1997) 2.19

Sporulation regulatory protein GerE from Bacillus subtilis binds to and can activate or repress transcription from promoters for mother-cell-specific genes. J Mol Biol (1992) 2.19

Dynamic spatial regulation in the bacterial cell. Cell (2000) 2.17

Disappearance of the sigma E transcription factor from the forespore and the SpoIIE phosphatase from the mother cell contributes to establishment of cell-specific gene expression during sporulation in Bacillus subtilis. J Bacteriol (1997) 2.17

Nucleotide sequence of a Bacillus subtilis promoter recognized by Bacillus subtilis RNA polymerase containing sigma 37. Nucleic Acids Res (1981) 2.15

Purification and properties of the sigma subunit of ribonucleic acid polymerase from vegetative Bacillus subtilis. J Biol Chem (1973) 2.11

SpoIIE governs the phosphorylation state of a protein regulating transcription factor sigma F during sporulation in Bacillus subtilis. Proc Natl Acad Sci U S A (1996) 2.03

Secretion, localization, and antibacterial activity of TasA, a Bacillus subtilis spore-associated protein. J Bacteriol (1999) 1.99

An oligopeptide permease responsible for the import of an extracellular signal governing aerial mycelium formation in Streptomyces coelicolor. Mol Microbiol (1996) 1.99

Growth and viability of Streptomyces coelicolor mutant for the cell division gene ftsZ. Mol Microbiol (1994) 1.98

Sporulation gene spoIIB from Bacillus subtilis. J Bacteriol (1993) 1.98

Isolation of a new RNA polymerase-binding protein from sporulating Bacillus subtilis. Proc Natl Acad Sci U S A (1973) 1.98

Compartmentalized expression of a gene under the control of sporulation transcription factor sigma E in Bacillus subtilis. Proc Natl Acad Sci U S A (1991) 1.97

Characterization of bofA, a gene involved in intercompartmental regulation of pro-sigma K processing during sporulation in Bacillus subtilis. J Bacteriol (1992) 1.93

Role of adenosine nucleotides in the regulation of a stress-response transcription factor in Bacillus subtilis. J Mol Biol (1996) 1.91