Effect of Amino Acid Addition on the Crystallization of Asparagine

2021 ◽  
Vol 21 (4) ◽  
pp. 2205-2211
Author(s):  
Hiroyuki Morimoto ◽  
Kei Unoura ◽  
Hideki Nabika
Keyword(s):  
1994 ◽  
Vol 426 (6) ◽  
pp. 481-490 ◽  
Author(s):  
Olivier Levillain ◽  
Annette Hus-Citharel ◽  
Fran�ois Morel

1993 ◽  
Vol 59 (7) ◽  
pp. 1209-1211 ◽  
Author(s):  
Yukinori Nozaki ◽  
Hisashi Ichikawa ◽  
Yoshiaki Tabata

1996 ◽  
Vol 109 (1) ◽  
pp. 87-92 ◽  
Author(s):  
Satoshi Kiyohara ◽  
Masami Sasaki ◽  
Kyoichi Saito ◽  
Kazuyuki Sugita ◽  
Takanobu Sugo

1999 ◽  
Vol 181 (2) ◽  
pp. 368-374 ◽  
Author(s):  
Michael G. Thomas ◽  
George A. O’Toole ◽  
Jorge C. Escalante-Semerena

ABSTRACT The eutF locus of Salmonella typhimuriumLT2 was identified as a locus necessary for the utilization of ethanolamine as a sole carbon source. Initial models suggested that EutF was involved in either ethanolamine transport or was a transcriptional regulator of an ethanolamine transporter. Phenotypic characterization of eutF mutants suggested EutF was somehow involved in 1,2-propanediol, propionate, and succinate utilization. Here we provide evidence that two alleles defining the eutFlocus, Δ903 and eutF1115, are partial-loss-of-function tonB alleles. Both mutations were complemented by plasmids containing a wild-type allele of theEscherichia coli tonB gene. Immunoblot analysis using TonB monoclonal antibodies detected a TonB fusion protein in strains carrying eutF alleles. Molecular analysis of the Δ903 allele identified a deletion that resulted in the fusion of the 3′ end of tonB with the 3′ end oftrpA. In-frame translation of the tonB-trpAfusion resulted in the final 9 amino acids of TonB being replaced by a 45-amino-acid addition. We isolated a derivative of a strain carrying allele Δ903 that regained the ability to grow on ethanolamine as a carbon and energy source. The molecular characterization of the mutation that corrected the Eut−phenotype caused by allele Δ903 showed that the new mutation was a deletion of two nucleotides at the tonB-trpAfusion site. This deletion resulted in a frameshift that replaced the 45-amino-acid addition with a 5-amino-acid addition. This change resulted in a TonB protein with sufficient activity to restore growth on ethanolamine and eut operon expression to nearly wild-type levels. It was concluded that the observed EutF phenotypes were due to the partial loss of TonB function, which is proposed to result in reduced cobalamin and ferric siderophore transport in an aerobic environment; thus, the eutF locus does not exist.


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