TY - JOUR
T1 - When biochemistry meets structural biology
T2 - the cautionary tale of EmrE
AU - Schuldiner, Shimon
PY - 2007/6
Y1 - 2007/6
N2 - When biochemistry meets structural biology a more complete understanding of the mechanism of biological macromolecules is usually achieved. Several high-resolution structures of ion-coupled transporters have enriched the understanding of mechanisms of substrate recognition, translocation and coupling of substrate fluxes. However, two X-ray structures of EmrE, the smallest ion-coupled multi-drug transporter, raised questions over the veracity of the structural model and represented a cautionary tale about the difficulty of determining the 3D structures of membrane proteins and the dangers of ignoring biochemical results. The 3D structures of EmrE have since been retracted because of faulty software, but the suggestion that the protomers in the dimer are in an antiparallel topological orientation sparked controversy that is still ongoing.
AB - When biochemistry meets structural biology a more complete understanding of the mechanism of biological macromolecules is usually achieved. Several high-resolution structures of ion-coupled transporters have enriched the understanding of mechanisms of substrate recognition, translocation and coupling of substrate fluxes. However, two X-ray structures of EmrE, the smallest ion-coupled multi-drug transporter, raised questions over the veracity of the structural model and represented a cautionary tale about the difficulty of determining the 3D structures of membrane proteins and the dangers of ignoring biochemical results. The 3D structures of EmrE have since been retracted because of faulty software, but the suggestion that the protomers in the dimer are in an antiparallel topological orientation sparked controversy that is still ongoing.
UR - http://www.scopus.com/inward/record.url?scp=34249899930&partnerID=8YFLogxK
U2 - 10.1016/j.tibs.2007.04.002
DO - 10.1016/j.tibs.2007.04.002
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C2 - 17452106
AN - SCOPUS:34249899930
SN - 0968-0004
VL - 32
SP - 252
EP - 258
JO - Trends in Biochemical Sciences
JF - Trends in Biochemical Sciences
IS - 6
ER -