Téllez-Valencia Alfredo, Sandoval Ada A, Pedraza-Reyes Mario
Institute of Investigation in Experimental Biology, Faculty of Chemistry, University of Guanajuato, P.O. Box 187, Guanajuato, Gto. 36060, Mexico.
Curr Microbiol. 2003 Apr;46(4):307-10. doi: 10.1007/s00284-002-3862-y.
The modular endocellulase Cel9 of the bicistronic operon cel9-cel48 of Myxobacter sp. AL-1 shares not only amino acid sequence similarity but also biochemical properties similar to those of Thermobifida fusca endo/exocellulase E4. Amino acid alignments of a T. fusca E4 cellulase subfamily of family 9 cellulases revealed that Asp(446) of Myxobacter sp. AL-1 Cel9, a putatively noncatalytic residue, is highly conserved in one of the catalytic domains of this subfamily. Directed mutagenesis of residue aspartate (Asp(446)) to alanine generated a Cel9 mutant that lost more than 99% of its activity, suggesting that Asp(446) plays an essential structural role in Cel9 during cellulose degradation. Owing to its high degree of conservation and essential role, we propose that Asp(446) of Myxobacter sp. AL-1 Cel9 is a good landmark that distinguishes members of the E4 subfamily of family 9 cellulases.
粘细菌AL-1双顺反子操纵子cel9-cel48中的模块化内切纤维素酶Cel9,不仅与嗜热栖热放线菌内切/外切纤维素酶E4具有氨基酸序列相似性,还具有相似的生化特性。对9家族纤维素酶的嗜热栖热放线菌E4纤维素酶亚家族进行氨基酸比对发现,粘细菌AL-1 Cel9的Asp(446)(一个推测的非催化残基)在该亚家族的一个催化结构域中高度保守。将天冬氨酸残基(Asp(446))定向突变为丙氨酸产生了一个Cel9突变体,该突变体失去了超过99%的活性,这表明Asp(446)在纤维素降解过程中对Cel9起着至关重要的结构作用。由于其高度保守性和重要作用,我们认为粘细菌AL-1 Cel9的Asp(446)是区分9家族纤维素酶E4亚家族成员的一个良好标志。