P-glycoprotein (P-gp), a kind of ATP-binding cassette transporter, can export candidates through a channel at the two transmembrane domains (TMDs) across the cell membranes using the energy released from ATP hydrolysis at the two nucleotide-binding domains (NBDs). Considerable evidence has indicated that human P-gp undergoes large-scale conformational changes to export a wide variety of anti-cancer drugs out of the cancer cells. However, molecular mechanism of the conformational transmission of human P-gp from the NBDs to the TMDs is still unclear. Herein, targeted molecular dynamics simulations were performed to explore the atomic detail of the conformational transmission of human P-gp. It is confirmed that the conformational transition from the inward- to outward-facing is initiated by the movement of the NBDs. It is found that the two NBDs move both on the two directions (x and y). The movement on the x direction leads to the closure of the NBDs, while the movement on the y direction adjusts the conformations of the NBDs to form the correct ATP binding pockets. Six key segments (KSs) protruding from the TMDs to interact with the NBDs are identified. The relative movement of the KSs along the y axis driven by the NBDs can be transmitted through α-helices to the rest of the TMDs, rendering the TMDs to open towards periplasm in the outward-facing conformation. Twenty eight key residue pairs are identified to participate in the interaction network that contributes to the conformational transmission from the NBDs to the TMDs of human P-gp. In addition, 9 key residues in each NBD are also identified. The studies have thus provided clear insight into the conformational transmission from the NBDs to the TMDs in human P-gp.

1.
R.
Siegel
,
D.
Naishadham
, and
A.
Jemal
,
Ca-Cancer J. Clin.
62
,
10
(
2012
).
2.
D. B.
Longley
and
P. G.
Johnston
,
J. Pathol.
205
,
275
(
2005
).
3.
G.
Szakacs
,
J. K.
Paterson
,
J. A.
Ludwig
,
C.
Booth-Genthe
, and
M. M.
Gottesman
,
Nat. Rev. Drug Discovery
5
,
219
(
2006
).
4.
M.
Ahn
,
S.
Ghaemmaghami
,
Y.
Huang
,
P. W.
Phuan
,
B. C.
May
,
K.
Giles
,
S. J.
DeArmond
, and
S. B.
Prusiner
,
PLoS One
7
,
e39112
(
2012
).
5.
I. B.
Roninson
,
J. E.
Chin
,
K.
Choi
,
P.
Gros
,
D. E.
Housman
,
A.
Fojo
,
D.
Shen
,
M. M.
Gottesman
, and
I.
Pastan
,
Proc. Natl. Acad. Sci. U.S.A.
83
,
4538
(
1986
).
6.
Z.
Duan
,
E.
Choy
, and
F. J.
Hornicek
,
PLoS One
4
,
e7415
(
2009
).
7.
M.
Dacevic
,
A.
Isakovic
,
A.
Podolski-Renic
,
A. M.
Isakovic
,
T.
Stankovic
,
Z.
Milosevic
,
L.
Rakic
,
S.
Ruzdijic
, and
M.
Pesic
,
PLoS One
8
,
e54044
(
2013
).
8.
M. S.
Jin
,
M. L.
Oldham
,
Q.
Zhang
, and
J.
Chen
,
Nature (London)
490
,
566
(
2012
).
9.
R. J.
Dawson
and
K. P.
Locher
,
Nature (London)
443
,
180
(
2006
).
10.
S. G.
Aller
,
J.
Yu
,
A.
Ward
,
Y.
Weng
,
S.
Chittaboina
,
R.
Zhuo
,
P. M.
Harrell
,
Y. T.
Trinh
,
Q.
Zhang
,
I. L.
Urbatsch
, and
G.
Chang
,
Science
323
,
1718
(
2009
).
11.
C. F.
Higgins
,
R.
Callaghan
,
K. J.
Linton
,
M. F.
Rosenberg
, and
R. C.
Ford
,
Semin. Cancer Biol.
8
,
135
(
1997
).
12.
S. J.
Currier
,
S. E.
Kane
,
M. C.
Willingham
,
C. O.
Cardarelli
,
I.
Pastan
, and
M. M.
Gottesman
,
J. Biol. Chem.
267
,
25153
(
1992
).
13.
J. F.
Cotten
,
L. S.
Ostedgaard
,
M. R.
Carson
, and
M. J.
Welsh
,
J. Biol. Chem.
271
,
21279
(
1996
).
14.
Z.
Bikadi
,
I.
Hazai
,
D.
Malik
,
K.
Jemnitz
,
Z.
Veres
,
P.
Hari
,
Z.
Ni
,
T. W.
Loo
,
D. M.
Clarke
,
E.
Hazai
, and
Q.
Mao
,
PLoS One
6
,
e25815
(
2011
).
15.
I. D.
Kerr
,
P. M.
Jones
, and
A. M.
George
,
FEBS J.
277
,
550
(
2010
).
16.
T.
Stockner
,
S. J.
de Vries
,
A. M.
Bonvin
,
G. F.
Ecker
, and
P.
Chiba
,
FEBS J.
276
,
964
(
2009
).
17.
I. K.
Pajeva
,
C.
Globisch
, and
M.
Wiese
,
FEBS J.
276
,
7016
(
2009
).
18.
F.
Klepsch
,
P.
Chiba
, and
G. F.
Ecker
,
Drug Future
34
,
164
(
2009
).
19.
D. V.
Singh
,
M. M.
Godbole
, and
K.
Misra
,
J. Mol. Model.
19
,
227
(
2013
).
20.
E.
Dolghih
,
C.
Bryant
,
A. R.
Renslo
, and
M. P.
Jacobson
,
PLoS Comput. Biol.
7
,
e1002083
(
2011
).
21.
I. K.
Pajeva
,
C.
Globisch
, and
M.
Wiese
,
ChemMedChem
4
,
1883
(
2009
).
22.
L.
Chen
,
Y.
Li
,
H.
Yu
,
L.
Zhang
, and
T.
Hou
,
Drug Discovery Today
17
,
343
(
2012
).
23.
P. D. C.
Lima
,
A.
Golbraikh
,
S.
Oloff
,
Y. D.
Xiao
, and
A.
Tropsha
,
J. Chem. Inf. Model.
46
,
1245
(
2006
).
24.
J. D.
Campbell
and
M. S.
Sansom
,
FEBS Lett.
579
,
4193
(
2005
).
25.
H.
Omote
and
M. K.
Al-Shawi
,
Biophys. J.
90
,
4046
(
2006
).
26.
T.
Ishikawa
,
A.
Sakurai
,
H.
Hirano
,
A.
Lezhava
,
M.
Sakurai
, and
Y.
Hayashizaki
,
Pharmacol. Ther.
126
,
69
(
2010
).
27.
R. J.
Ferreira
,
M. J. U.
Ferreira
, and
D. J. V. A.
dos Santos
,
J. Chem. Theory Comput.
8
,
1853
(
2012
).
28.
P. C.
Wen
and
E.
Tajkhorshid
,
Biophys. J.
95
,
5100
(
2008
).
29.
J. D.
Campbell
,
S. S.
Deol
,
F. M.
Ashcroft
,
I. D.
Kerr
, and
M. S.
Sansom
,
Biophys. J.
87
,
3703
(
2004
).
30.
E.
Lindahl
and
M. S.
Sansom
,
Curr. Opin. Struct. Biol.
18
,
425
(
2008
).
31.
J. F.
St-Pierre
,
A.
Bunker
,
T.
Rog
,
M.
Karttunen
, and
N.
Mousseau
,
J. Phys. Chem. B
116
,
2934
(
2012
).
32.
J. W.
Weng
,
K. N.
Fan
, and
W. N.
Wang
,
J. Biol. Chem.
285
,
3053
(
2010
).
33.
A. S.
Oliveira
,
A. M.
Baptista
, and
C. M.
Soares
,
Proteins
79
,
1977
(
2011
).
34.
J.
Weng
,
K.
Fan
, and
W.
Wang
,
PLoS One
7
,
e30465
(
2012
).
35.
A.
Ivetac
,
J. D.
Campbell
, and
M. S.
Sansom
,
Biochemistry
46
,
2767
(
2007
).
36.
P. C.
Wen
and
E.
Tajkhorshid
,
Biophys. J.
101
,
680
(
2011
).
37.
A. S.
Oliveira
,
A. M.
Baptista
, and
C. M.
Soares
,
PLoS Comput. Biol.
7
,
e1002128
(
2011
).
38.
X.
Xu
,
R. B.
Li
,
M.
Ma
,
X.
Wang
,
Y. H.
Wang
, and
H. F.
Zou
,
Soft Matter
8
,
2915
(
2012
).
39.
J. L.
Klepeis
,
K.
Lindorff-Larsen
,
R. O.
Dror
, and
D. E.
Shaw
,
Curr. Opin. Struct. Biol.
19
,
120
(
2009
).
40.
Y.
Arkun
and
M.
Gur
,
PLoS One
7
,
e29628
(
2012
).
41.
V.
Ovchinnikov
and
M.
Karplus
,
J. Phys. Chem. B
116
,
8584
(
2012
).
42.
R.
Schulz
,
A. V.
Vargiu
,
P.
Ruggerone
, and
U.
Kleinekathofer
,
J. Phys. Chem. B
115
,
8278
(
2011
).
43.
M. A.
Marti-Renom
,
A. C.
Stuart
,
A.
Fiser
,
R.
Sanchez
,
F.
Melo
, and
A.
Sali
,
Annu. Rev. Biophys. Biomol. Struct.
29
,
291
(
2000
).
44.
A.
Sali
and
T. L.
Blundell
,
J. Mol. Biol.
234
,
779
(
1993
).
45.
A. L.
Lomize
,
I. D.
Pogozheva
,
M. A.
Lomize
, and
H. I.
Mosberg
,
Protein Sci.
15
,
1318
(
2006
).
46.
C. J.
Chen
,
J. E.
Chin
,
K.
Ueda
,
D. P.
Clark
,
I.
Pastan
,
M. M.
Gottesman
, and
I. B.
Roninson
,
Cell
47
,
381
(
1986
).
47.
K.
Ueda
,
D. P.
Clark
,
C. J.
Chen
,
I. B.
Roninson
,
M. M.
Gottesman
, and
I.
Pastan
,
J. Biol. Chem.
262
,
505
(
1987
).
48.
M. Y.
Shen
and
A.
Sali
,
Protein Sci.
15
,
2507
(
2006
).
49.
R. A.
Laskowski
,
M. W.
MacArthur
,
D. S.
Moss
, and
J. M.
Thornton
,
J. Appl. Crystallogr.
26
,
283
(
1993
).
50.
A. S.
Kolaskar
and
S.
Sawant
,
Int. J. Protein Res.
47
,
110
(
1996
).
51.
B. R.
Brooks
,
C. L.
Brooks
 3rd
,
A. D.
Mackerell
 Jr.
,
L.
Nilsson
,
R. J.
Petrella
,
B.
Roux
,
Y.
Won
,
G.
Archontis
,
C.
Bartels
,
S.
Boresch
,
A.
Caflisch
,
L.
Caves
,
Q.
Cui
,
A. R.
Dinner
,
M.
Feig
,
S.
Fischer
,
J.
Gao
,
M.
Hodoscek
,
W.
Im
,
K.
Kuczera
,
T.
Lazaridis
,
J.
Ma
,
V.
Ovchinnikov
,
E.
Paci
,
R. W.
Pastor
,
C. B.
Post
,
J. Z.
Pu
,
M.
Schaefer
,
B.
Tidor
,
R. M.
Venable
,
H. L.
Woodcock
,
X.
Wu
,
W.
Yang
,
D. M.
York
, and
M.
Karplus
,
J. Comput. Chem.
30
,
1545
(
2009
).
52.
A. D.
MacKerell
 Jr.
,
N.
Banavali
, and
N.
Foloppe
,
Biopolymers
56
,
257
(
2000
).
53.
M. L.
O’Mara
and
D. P.
Tieleman
,
FEBS Lett.
581
,
4217
(
2007
).
54.
T. B.
Woolf
and
B.
Roux
,
Proc. Natl. Acad. Sci. U.S.A.
91
,
11631
(
1994
).
55.
J. C.
Phillips
,
R.
Braun
,
W.
Wang
,
J.
Gumbart
,
E.
Tajkhorshid
,
E.
Villa
,
C.
Chipot
,
R. D.
Skeel
,
L.
Kale
, and
K.
Schulten
,
J. Comput. Chem.
26
,
1781
(
2005
).
56.
W.
Jiang
,
D. J.
Hardy
,
J. C.
Phillips
,
A. D.
Mackerell
 Jr.
,
K.
Schulten
, and
B.
Roux
,
J. Phys. Chem. Lett.
2
,
87
(
2011
).
57.
W. G.
Hoover
,
Phys. Rev. A
31
,
1695
(
1985
).
58.
S.
Nosé
,
J. Chem. Phys.
81
,
511
(
1984
).
59.
R. B.
Shirts
,
S. R.
Burt
, and
A. M.
Johnson
,
J. Chem. Phys.
125
,
164102
(
2006
).
60.
T.
Darden
,
D.
York
, and
L.
Pedersen
,
J. Chem. Phys.
98
,
10089
(
1993
).
61.
U.
Essman
,
L.
Perera
,
M. L.
Berkowitz
,
T.
Darden
,
H.
Lee
, and
L. G.
Pedersen
,
J. Chem. Phys.
103
,
8577
(
1995
).
62.
J. P.
Ryckaert
,
G.
Ciccotti
, and
H. J. C.
Berendsen
,
J. Comput. Phys.
23
,
327
(
1977
).
63.
J.
Schlitter
,
M.
Engels
, and
P.
Kruger
,
J. Mol. Graphics
12
,
84
(
1994
).
64.
M.
Compoint
,
F.
Picaud
,
C.
Ramseyer
, and
C.
Girardet
,
J. Chem. Phys.
122
,
134707
(
2005
).
65.
A.
van der Vaart
and
M.
Karplus
,
J. Chem. Phys.
122
,
114903
(
2005
).
66.
W.
Humphrey
,
A.
Dalke
, and
K.
Schulten
,
J. Mol. Graphics
14
,
33
(
1996
).
67.
See supplementary material at http://dx.doi.org/10.1063/1.4832740 for figures on superimposition of the 3D structures of the human P-gp and the template of mouse P-gp, Ramachandran plot analysis of human P-gp with inward-facing, structural parameters (RMSD and Rg) of the two nucleotide-binding domains (NBDs) as a function of the TMD simulations time and Residues of KSs of TMDs in the transmission interface between NBDs and TMDs.
68.
P. D.
Eckford
and
F. J.
Sharom
,
Chem. Rev.
109
,
2989
(
2009
).
69.
P. M.
Jones
and
A. M.
George
,
Proteins
75
,
387
(
2009
).
70.
P. M.
Jones
and
A. M.
George
,
Proc. Natl. Acad. Sci. U.S.A.
99
,
12639
(
2002
).
71.
P. M.
Jones
and
A. M.
George
,
J. Biol. Chem.
282
,
22793
(
2007
).
72.
A.
Ward
,
C. L.
Reyes
,
J.
Yu
,
C. B.
Roth
, and
G.
Chang
,
Proc. Natl. Acad. Sci. U.S.A.
104
,
19005
(
2007
).
73.
K. P.
Hopfner
,
A.
Karcher
,
D. S.
Shin
,
L.
Craig
,
L. M.
Arthur
,
J. P.
Carney
, and
J. A.
Tainer
,
Cell
101
,
789
(
2000
).
74.
Y. R.
Yuan
,
S.
Blecker
,
O.
Martsinkevich
,
L.
Millen
,
P. J.
Thomas
, and
J. F.
Hunt
,
J. Biol. Chem.
276
,
32313
(
2001
).
75.
P. M.
Jones
and
A. M.
George
,
J. Phys. Chem. A
116
,
3004
(
2012
).
76.
S.
Mehmood
,
C.
Domene
,
E.
Forest
, and
J. M.
Jault
,
Proc. Natl. Acad. Sci. U.S.A.
109
,
10832
(
2012
).
77.
M. L.
Oldham
,
A. L.
Davidson
, and
J.
Chen
,
Curr. Opin. Struct. Biol.
18
,
726
(
2008
).
78.
W.
Zheng
,
B. R.
Brooks
,
S.
Doniach
, and
D.
Thirumalai
,
Structure
13
,
565
(
2005
).
79.
R.
Tehver
,
J.
Chen
, and
D.
Thirumalai
,
J. Mol. Biol.
387
,
390
(
2009
).
80.
Z.
Liu
,
J.
Chen
, and
D.
Thirumalai
,
Proteins
77
,
823
(
2009
).

Supplementary Material

You do not currently have access to this content.