COMPLETE LIST


Behmlander, R.M. & M. Dworkin, (1994) Biochemical and structural analyses of the
extracellular matrix fibrils of Myxococcus xanthus.
J Bacteriol 176: 6295-6303.


Bui, N.K., J. Gray, H. Schwarz, P. Schumann, D. Blanot & W. Vollmer, (2009) The
peptidoglycan sacculus of Myxococcus xanthus has unusual structural features
and is degraded during glycerol-induced myxospore development.
J Bacteriol
191: 494-505.

Cuthbertson, L., I. Mainprize, J. Naismith & C. Whitfield, (2009) Pivotal roles of the
outer membrane polysaccharide export and polysaccharide copolymerase protein
families in export of extracellular polysaccharides in Gram-negative bacteria.

Microbiol Mol Biol Rev 73: 155-177.

Dahl, J.L., F. Tengra, D. Dutton, J. Yan, T. Andacht, L. Coyne, V. Windell & A.G.
Garza, (2007) Identification of major sporulation proteins of Myxococcus xanthus
using a proteome approach.
J Bacteriol. 189: 3187-3197.

Giglio, K., N.B. Caberoy, G. Suen, D. Kaiser & A.G. Garza, (2011) A cascade of
coregulating enhancer binding proteins initiates and propagates a multicellular
developmental program.
Proc Natl Acad Sci USA 108: E431-E439.

Gronewold TMA & Kaiser D (2001) The act operon controls the level and time of 
C-signal production for M. xanthus development.
Mol Microbiol 40:744-756.

Harvey, C., H. Du, Z. Xu, D. Kaiser, I. Aranson & M.S. Alber, (2013) Interconnected
cavernous structure of bacterial fruiting bodies.
PLoS Comp Biol 8(12): e1002850

Hodgkin, J. & D. Kaiser, (1979a) Genetics of gliding motility in M. xanthus
(Myxobacterales): genes controlling movement of single cells.
Mol. gen. Genet
171: 167-176.

Hodgkin, J. & D. Kaiser, (1979b) Genetics of gliding motility in M. xanthus
(Myxobacterales): two gene systems control movement.
Mol. Gen. Genet. 171:
177-191.

Inouye, M., S. Inouye & D. Zusman, (1979) Gene expression during development
of Myxococcus xanthus: Pattern of protein synthesis.
Devel. Biol. 68: 579-591.


Kaiser, D., (2008) Myxococcus - from single cell polarity to complex multicellular
patterns.
Ann Rev Genetics 42: 109-130.

Kaiser, D. & H. Warrick, (2011) M. xanthus swarms are driven by growth and
regulated by a pacemaker.
J. Bacteriol. 193: 5898-5904.

Kaiser, D. & H. Warrick, (2013) Signaling between focal adhesions synchronizes
swarming myxobacteria.
Proc Nat Acad Sci USA in preparation

Keseler, I.M. & D. Kaiser, (1997) Sigma-54, a vital protein for Myxococcus xanthus.
Proc. Nat. Acad. Sci. USA 94: 1979-1984.

Kim, SK & D. Kaiser, (1990a) Cell motility is required for the transmission of C-factor, 
an intercellular signal that coordinates fruiting body morphogenesis of Myxococcus
xanthus.
Genes & Development 4:896-905.

Kim, SK & D. Kaiser (1990b) Purification and properties of Myxococcus xanthus
C-factor, an intercellular signaling protein.
Proc. Natl. Acad. Sci. USA 87:3635-3639.

Kim, SK & D. Kaiser (1990c) Cell alignment required in differentiation of Myxococcus
xanthus.
Science 249:926-928.

Kroos, L., P. Hartzell, K. Stephens & D. Kaiser (1988) A link between cell movement
and gene expression argues that motility is required for cell-cell signalling during
fruiting body development.
Genes and Devel. 2:1677-1685.

Kuspa, A., L. Kroos & D. Kaiser, (1986) Intercellular signaling is required for
developmental gene expression in Myxococcus xanthus.
Dev. Biol. 117: 267-276.

Kuspa, A., L. Plamann & D. Kaiser, (1992) Identification of heat-stable A-factor from
Myxococcus xanthus.
J. Bacteriol. 174: 3319-3326.

Lobedanz, S. & L. Søgaard-Andersen (2003) Identification of the C-signal, a contact-
dependent morphogen coordinating multiple developmental responses in
Myxococcus xanthus.
Genes and Devel. 17:2151-2161.

Manoil, C. & D. Kaiser, (1980a) Accumulation of guanosine tetraphosphate and
guanosine pentaphosphate in Myxococcus xanthus during starvation and
myxospore formation.
J. Bacteriol. 141: 297-304.

Manoil, C. & D. Kaiser, (1980b) Guanosine pentaphosphate and guanosine
tetraphosphate accumulation and induction of Myxococcus xanthus fruiting body
development.
J. Bacteriol. 141: 305-315.

Manoil, C. & D. Kaiser, (1980c) Purine-containing compounds, including cyclic
adenosine 3',5'-monophosphate, induce fruiting of Myxococcus xanthus by
nutritional imbalance.
J. Bacteriol. 141: 374-377.

Mignot, T., J.P. Merlie & D. Zusman, (2005) Regulated pole-to-pole oscillations of a
bacterial gliding motility protein.
Science 310: 855-857.

Mignot, T., J. Shaevitz, P. Hartzell & D. Zusman, (2007) Evidence that focal adhesions complexes power bacterial gliding motility. Science 315: 853-856.

Nan, B., E. Mauriello, I.-H. Sun, A. Wong & D. Zusman, (2010) A multi-protein
complex from Myxococcus xanthus required for bacterial gliding motility.

Molecular Microbiol. 76: 1539-1554.

Nudleman, E. & D. Kaiser, (2004) Pulling together with type IV pili. J Molec. Microbiol.
Biotechnol. 7: 52-62.

Nudleman, E., D.Wall, & D. Kaiser (2005) Cell-to-cell transfer of bacterial outer-
membrane lipoproteins.
Science 309:125-127.

Rolbetski, A., M. Ammon, V, Jakovljevic, A. Konovalova & L. Søgaard-Andersen (2008)
Regulated secretion of a protease activity activates intercellular signaling
during fruiting body formation in M. xanthus.
Developmental Cell 15:627-634.

Singer, M. & D. Kaiser, (1995) Ectopic production of guanosine penta-and
tetraphosphate can initiate early developmental gene expression in Myxococcus
xanthus.
Genes Dev. 9: 1633 - 1644.

Spormann, A.M. & D. Kaiser, (1999) Gliding mutants of Myxococcus xanthus with
high reversal frequencies and small displacements.
J. Bacteriol. 181: 2593-2601.

Tzeng, L.-F. & M. Singer, (2005) DNA replication during sporulation in Myxococcus
xanthus fruiting bodies.
Proc Natl Acad Sci USA 102: 14428-14433.

Wall, D. & D, Kaiser (1998) Alignment enhances the cell-to-cell transfer of pilus
phenotype.
Proc. Nat. Acad. Sci. USA 95:3054-3058.

Wall, D., SS.,Wu, & D. Kaiser (1998) Contact stimulation of Tgl and type IV pili in
Myxococcus xanthus.
J. Bacteriol. 180:759-761.

Wei X, Pathak D, & Wall D (2011) Heterologous protein transfer within structured
myxobacteria biofilms.
Mol Microbiol 81:315-326.

Whitfield, C., (2006) Biosynthesis and assembly of capsular polysaccharides in
Escherichia coli.
Annu Rev Biochem. 75: 39-68.

Wolgemuth, C., (2005) Force and flexibility of flailing myxobacteria. Biophys J. 89:
945-950.

Wolgemuth, C., E. Hoiczyk, D. Kaiser & G. Oster, (2002) How myxobacteria glide.
Current Biology 12: 369-377.

Wu, Y., D. Kaiser, Y. Jiang & M. Alber, (2009) Periodic reversal of direction allows
myxobacteria to swarm.
Proc Natl Acad Sci USA 106: 1222-1227.

Yu, R. & D. Kaiser, (2007) Gliding motility and polarized slime secretion. Molecular
Microbiol. 63: 454-467.

Kaiser Lab | Stanford Biochemistry Dept | Copyright © 2013