Publications
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A designed inhibitor of a CLC antiporter blocks function through a unique binding mode.
Howery AE,
Elvington S, Abraham SJ, Choi KH, Dworschak-Simpson S, Phillips S, Ryan CM, Sanford RL, Almqvist J, Tran K, Chew TA, Zachariae U, Andersen OS, Whitelegge J, Matulef K, Du Bois J, Maduke MC.
Chem Biol.
2012;
19
(11):
1460-70
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Biochemistry to the rescue: a ClC-2 auxiliary subunit provides a tangible link to leukodystrophy.
Maduke MC,
Reimer RJ.
Neuron.
2012;
73
(5):
855-7
-
Review. Proton-coupled gating in chloride channels.
Lísal J,
Maduke M.
Philos Trans R Soc Lond B Biol Sci.
2009;
364
(1514):
181-7
-
Substrate-driven conformational changes in ClC-ec1 observed by fluorine NMR.
Elvington SM,
Liu CW, Maduke MC.
EMBO J.
2009;
28
(20):
3090-102
-
Thinking outside the crystal: complementary approaches for examining transporter conformational change.
Elvington SM,
Maduke M.
Channels (Austin).
2008 Sep-Oct;
2
(5):
373-9
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A cytoplasmic domain mutation in ClC-Kb affects long-distance communication across the membrane.
Martinez GQ,
Maduke M.
PLoS One.
2008;
3
(7):
e2746
-
Discovery of potent CLC chloride channel inhibitors.
Matulef K,
Howery AE, Tan L, Kobertz WR, Du Bois J, Maduke M.
ACS Chem Biol.
2008;
3
(7):
419-28
-
The ClC-0 chloride channel is a 'broken' Cl-/H+ antiporter.
Lísal J,
Maduke M.
Nat Struct Mol Biol.
2008;
15
(8):
805-10
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The CLC 'chloride channel' family: revelations from prokaryotes.
Matulef K,
Maduke M.
Mol Membr Biol.
2007 Sep-Dec;
24
(5-6):
342-50
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The mechanism of fast-gate opening in ClC-0.
Engh AM,
Faraldo-Gómez JD, Maduke M.
J Gen Physiol.
2007;
130
(4):
335-49
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The role of a conserved lysine in chloride- and voltage-dependent ClC-0 fast gating.
Engh AM,
Faraldo-Gómez JD, Maduke M.
J Gen Physiol.
2007;
130
(4):
351-63
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Cysteine accessibility in ClC-0 supports conservation of the ClC intracellular vestibule.
Engh AM,
Maduke M.
J Gen Physiol.
2005;
125
(6):
601-17
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Side-dependent inhibition of a prokaryotic ClC by DIDS.
Matulef K,
Maduke M.
Biophys J.
2005;
89
(3):
1721-30
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The poststructural festivities begin.
Maduke M,
Mindell JA.
Neuron.
2003;
38
(1):
1-3
-
Projection structure of a ClC-type chloride channel at 6.5 A resolution.
Mindell JA,
Maduke M, Miller C, Grigorieff N.
Nature.
2001;
409
(6817):
219-23
-
A decade of CLC chloride channels: structure, mechanism, and many unsettled questions.
Maduke M,
Miller C, Mindell JA.
Annu Rev Biophys Biomol Struct.
2000:
29
411-38
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High-level expression, functional reconstitution, and quaternary structure of a prokaryotic ClC-type chloride channel.
Maduke M,
Pheasant DJ, Miller C.
J Gen Physiol.
1999;
114
(5):
713-22
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Formation of CLC-0 chloride channels from separated transmembrane and cytoplasmic domains.
Maduke M,
Williams C, Miller C.
Biochemistry.
1998;
37
(5):
1315-21
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Import of a mitochondrial presequence into P. denitrificans. Insight into the evolution of protein transport.
Roise D,
Maduke M.
FEBS Lett.
1994;
337
(1):
9-13
-
Import of a mitochondrial presequence into protein-free phospholipid vesicles.
Maduke M,
Roise D.
Science.
1993;
260
(5106):
364-7
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