Chemistry Reference
In-Depth Information
Ciesielski GL, Plotka M, Manicki M et al (2013) Nucleoid localization of Hsp40 Mdj1 is impor-
tant for its function in maintenance of mitochondrial DNA. Biochim Biophys Acta 1833:2233-
2243
Clements A, Bursac D, Gatsos X et al (2009) The reducible complexity of a mitochondrial molecu-
lar machine. Proc Natl Acad Sci U S A 106:15791-15795
Craig EA, Marszalek J (2002) A specialized mitochondrial molecular chaperone system: a role in
formation of Fe/S centers. Cell Mol Life Sci 59:1658-1665
Cui W, Josyula R, Li J et al (2011) Membrane binding mechanism of yeast mitochondrial periph-
eral membrane protein TIM44. Protein Pept Lett 18:718-725
De Los Rios P, Ben-Zvi A, Slutsky O et al (2006) Hsp70 chaperones accelerate protein transloca-
tion and the unfolding of stable protein aggregates by entropic pulling. Proc Natl Acad Sci U
S A 103:6166-6171
Deloche O, Kelley WL, Georgopoulos C (1997a) Structure-function analyses of the Ssc1p, Mdj1p,
and Mge1p Saccharomyces cerevisiae mitochondrial proteins in Escherichia coli . J Bacteriol
179:6066-6075
Deloche O, Liberek K, Zylicz M et al (1997b) Purification and biochemical properties of Saccharo-
myces cerevisiae Mdj1p, the mitochondrial DnaJ homologue. J Biol Chem 272:28539-28544
Diaz de la Loza Mdel C, Gallardo M, Garcia-Rubio ML et al (2011) Zim17/Tim15 links mi-
tochondrial iron-sulfur cluster biosynthesis to nuclear genome stability. Nucleic Acids Res
39:6002-6015
Dolezal P, Smid O, Rada P et al (2005) Giardia mitosomes and trichomonad hydrogenosomes
share a common mode of protein targeting. Proc Natl Acad Sci U S A 102:10924-10929
D'Silva PD, Schilke B, Walter W et al (2003) J protein cochaperone of the mitochondrial inner
membrane required for protein import into the mitochondrial matrix. Proc Natl Acad Sci U S
A 100:13839-13844
D'Silva P, Liu Q, Walter W et al (2004) Regulated interactions of mtHsp70 with Tim44 at the
translocon in the mitochondrial inner membrane. Nat Struct Mol Biol 11:1084-1091
D'Silva PR, Schilke B, Walter W et al (2005) Role of Pam16's degenerate J domain in protein
import across the mitochondrial inner membrane. Proc Natl Acad Sci U S A 102:12419-12424
D'Silva PR, Schilke B, Hayashi M et al (2008) Interaction of the J-protein heterodimer Pam18/
Pam16 of the mitochondrial import motor with the translocon of the inner membrane. Mol Biol
Cell 19:424-432
Duchniewicz M, Germaniuk A, Westermann B et al (1999) Dual role of the mitochondrial chaper-
one Mdj1p in inheritance of mitochondrial DNA in yeast. Mol Cell Biol 19:8201-8210
Dutkiewicz R, Schilke B, Cheng S et al (2004) Sequence-specific interaction between mitochon-
drial Fe-S scaffold protein Isu and Hsp70 Ssq1 is essential for their in vivo function. J Biol
Chem 279:29167-29174
Dutkiewicz R, Schilke B, Knieszner H et al (2003) Ssq1, a mitochondrial Hsp70 involved in iron-
sulfur (Fe/S) center biogenesis. Similarities to and differences from its bacterial counterpart. J
Biol Chem 278:29719-29727
Dutkiewicz R, Marszalek J, Schilke B et al (2006) The Hsp70 chaperone Ssq1p is dispensable for
iron-sulfur cluster formation on the scaffold protein Isu1p. J Biol Chem 281:7801-7808
Elsner S, Simian D, Iosefson O et al (2009) The mitochondrial protein translocation motor: struc-
tural conservation between the human and yeast Tim14/Pam18-Tim16/Pam16 co-chaperones.
Int J Mol Sci 10:2041-2053
Endo T, Yamano K, Kawano S (2011) Structural insight into the mitochondrial protein import
system. Biochim Biophys Acta 1808:955-970
Fraga H, Papaleo E, Vega S et al (2013) Zinc induced folding is essential for TIM15 activity as an
mtHsp70 chaperone. Biochim Biophys Acta 1830:2139-2149
Frazzon J, Dean DR (2003) Formation of iron-sulfur clusters in bacteria: an emerging field in
bioinorganic chemistry. Curr Opin Chem Biol 7:166-173
Fuzery AK, Tonelli M, Ta DT et al (2008) Solution structure of the iron-sulfur cluster cochaperone
HscB and its binding surface for the iron-sulfur assembly scaffold protein IscU. Biochemistry
47:9394-9404
Search WWH ::




Custom Search