Whangsuk_2015_Int.Biodeterior.Biodegradation_99_45

Reference

Title : Two endocrine disrupting dibutyl phthalate degrading esterases and their compensatory gene expression in Sphingobium sp. SM42 - Whangsuk_2015_Int.Biodeterior.Biodegradation_99_45
Author(s) : Whangsuk W , Sungkeeree P , Nakasiri M , Thiengmag S , Mongkolsuk S , Loprasert S
Ref : International Biodeterioration & Biodegradation , 99 :45 , 2015
Abstract :

Dibutyl phthalate (DBP) is one of the most abundant toxic phthalate ester contaminants in the environment. Two esterase genes, estB and estG, were cloned from Sphingobium sp. SM42, which could utilize an endocrine disrupting dibutyl phthalate as a sole carbon source. EstG, which shares sequence identity with very few proteins, showed a greater capacity to breakdown DBP, both invitro and invivo, compared to EstB. estG and estBG insertional inactivation mutants could not degrade DBP mainly due to the absence of the efficient DBP-transforming enzyme, EstG. Interestingly, the estB mutant degraded DBP better than the parent strain. The result of RT-PCR experiments confirm that estB mutants compensate for the loss of EstB by an increase in the expression of estG and this process enables Sphingobium to degrade more DBP. A gene designated estR, encoding a MarR family protein, was found upstream of estB. An estR-overexpressing strain showed an increased level of estB mRNA relative to wild-type. EstR is thus a positive transcriptional regulator that mediates the induction of estB esterase expression but it is not involved in the observed compensatory increase in expression of estG in the estB mutant.

PubMedSearch : Whangsuk_2015_Int.Biodeterior.Biodegradation_99_45
PubMedID:
Gene_locus related to this paper: 9sphn-a0a0c5dkn6

Related information

Substrate Dibutyl-phthalate
Gene_locus 9sphn-a0a0c5dkn6

Citations formats

Whangsuk W, Sungkeeree P, Nakasiri M, Thiengmag S, Mongkolsuk S, Loprasert S (2015)
Two endocrine disrupting dibutyl phthalate degrading esterases and their compensatory gene expression in Sphingobium sp. SM42
International Biodeterioration & Biodegradation 99 :45

Whangsuk W, Sungkeeree P, Nakasiri M, Thiengmag S, Mongkolsuk S, Loprasert S (2015)
International Biodeterioration & Biodegradation 99 :45