A Glutathione Peroxidase, Intracellular Peptidases and the TOR Complexes Regulate Peptide Transporter PEPT-1 in C-elegans

被引:40
作者
Benner, Jacqueline [1 ]
Daniel, Hannelore [1 ]
Spanier, Britta [1 ]
机构
[1] Tech Univ Munich, Abt Biochem, ZIEL Res Ctr Nutr & Food Sci, D-8050 Freising Weihenstephan, Germany
来源
PLOS ONE | 2011年 / 6卷 / 09期
关键词
P70; S6; KINASE; CAENORHABDITIS-ELEGANS; MAMMALIAN TARGET; FAT STORAGE; LEUKOTRIENE-A(4) HYDROLASE; GENE-EXPRESSION; NA+/H+ EXCHANGE; RAPAMYCIN MTOR; LIFE-SPAN; HYDROPEROXIDE;
D O I
10.1371/journal.pone.0025624
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The intestinal peptide transporter PEPT-1 in Caenorhabditis elegans is a rheogenic H+-dependent carrier responsible for the absorption of di- and tripeptides. Transporter-deficient pept-1(lg601) worms are characterized by impairments in growth, development and reproduction and develop a severe obesity like phenotype. The transport function of PEPT-1 as well as the influx of free fatty acids was shown to be dependent on the membrane potential and on the intracellular pH homeostasis, both of which are regulated by the sodium-proton exchanger NHX-2. Since many membrane proteins commonly function as complexes, there could be proteins that possibly modulate PEPT-1 expression and function. A systematic RNAi screening of 162 genes that are exclusively expressed in the intestine combined with a functional transport assay revealed four genes with homologues existing in mammals as predicted PEPT-1 modulators. While silencing of a glutathione peroxidase surprisingly caused an increase in PEPT-1 transport function, silencing of the ER to Golgi cargo transport protein and of two cytosolic peptidases reduced PEPT-1 transport activity and this even corresponded with lower PEPT-1 protein levels. These modifications of PEPT-1 function by gene silencing of homologous genes were also found to be conserved in the human epithelial cell line Caco-2/TC7 cells. Peptidase inhibition, amino acid supplementation and RNAi silencing of targets of rapamycin (TOR) components in C. elegans supports evidence that intracellular peptide hydrolysis and amino acid concentration are a part of a sensing system that controls PEPT-1 expression and function and that involves the TOR complexes TORC1 and TORC2.
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页数:12
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