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4.

Global impact of protein arginine phosphorylation on the physiology of Bacillus subtilis.
by Elsholz, Alexander K W

Proceedings of the National Academy of Sciences of the United States of America, May 8, 2012, Vol.109(19), pp.7451-7456

9.

Dual substrate specificity of Bacillus subtilis PBP4a.(Report)
by Nemmara, Venkatesh V.

Journal of the American Chemical Society, August 14, 2013, Vol.135(32), p.2627-2637

10.

Synthesis and activity of biomimetic biofilm disruptors.(Report)
by Bottcher, Thomas

Journal of the American Chemical Society, Feb 27, 2013, Vol.135(8), p.2927-2930

12.

Rational Re-engineering of a Transcriptional Silencing PreQ1 Riboswitch.
by Wu, Ming-Cheng

Journal of the American Chemical Society, July 22, 2015, Vol.137(28), pp.9015-9021

13.

Specificity of RppH-dependent RNA degradation in Bacillus subtilis.
by Hsieh, Ping-Kun

Proceedings of the National Academy of Sciences of the United States of America, May 28, 2013, Vol.110(22), pp.8864-8869

14.

Crystal structure of Bacillus subtilis GabR, an autorepressor and transcriptional activator of gabT.
by Edayathumangalam, Raji

Proceedings of the National Academy of Sciences of the United States of America, October 29, 2013, Vol.110(44), pp.17820-17825

15.

Hydrophilic microenvironment required for the channel-independent insertase function of YidC protein.
by Shimokawa-Chiba, Naomi

Proceedings of the National Academy of Sciences of the United States of America, April 21, 2015, Vol.112(16), pp.5063-5068

20.

Bacillus subtilis RNA deprotection enzyme RppH recognizes guanosine in the second position of its substrates.
by Piton, Jérémie

Proceedings of the National Academy of Sciences of the United States of America, May 28, 2013, Vol.110(22), pp.8858-8863

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