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1 - 25 of 43 results for author:"Rehling P."Drop in Literature Citations

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Mitochondrial F1Fo-ATP synthase: the small subunits e and g associate with monomeric complexes to trigger dimerization.

Wagner K., Rehling P., Sanjuan Szklarz L.K., Taylor R.D., Pfanner N., van der Laan M.

J. Mol. Biol. 392:855-861(2009) · Mapped (2)

The translocator maintenance protein Tam41 is required for mitochondrial cardiolipin biosynthesis.

Kutik S., Rissler M., Guan X.L., Guiard B., Shui G., Gebert N., Heacock P.N., Rehling P., Dowhan W., Wenk M.R. et al.

J. Cell Biol. 183:1213-1221(2008) · Mapped (4)

Protein transport machineries for precursor translocation across the inner mitochondrial membrane.

Wagner K., Mick D.U., Rehling P.

Biochim. Biophys. Acta 1793:52-59(2009) · Mapped (30)

The assembly pathway of the mitochondrial carrier translocase involves four preprotein translocases.

Wagner K., Gebert N., Guiard B., Brandner K., Truscott K.N., Wiedemann N., Pfanner N., Rehling P.

Mol. Cell. Biol. 28:4251-4260(2008) · Mapped (6)

Assembly of the three small Tim proteins precedes docking to the mitochondrial carrier translocase.

Gebert N., Chacinska A., Wagner K., Guiard B., Koehler C.M., Rehling P., Pfanner N., Wiedemann N.

EMBO Rep. 9:548-554(2008) · Mapped (3)

Mitochondrial protein import motor: differential role of Tim44 in the recruitment of Pam17 and J-complex to the presequence translocase.

Hutu D.P., Guiard B., Chacinska A., Becker D., Pfanner N., Rehling P., van der Laan M.

Mol. Biol. Cell 19:2642-2649(2008) · Mapped (9)

Sorting switch of mitochondrial presequence translocase involves coupling of motor module to respiratory chain.

Wiedemann N., van der Laan M., Hutu D.P., Rehling P., Pfanner N.

J. Cell Biol. 179:1115-1122(2007) · Mapped (5)

Shy1 couples Cox1 translational regulation to cytochrome c oxidase assembly.

Mick D.U., Wagner K., van der Laan M., Frazier A.E., Perschil I., Pawlas M., Meyer H.E., Warscheid B., Rehling P.

EMBO J. 26:4347-4358(2007) · UniProtKB (2) · Mapped (15)

Motor-free mitochondrial presequence translocase drives membrane integration of preproteins.

van der Laan M., Meinecke M., Dudek J., Hutu D.P., Lind M., Perschil I., Guiard B., Wagner R., Pfanner N., Rehling P.

Nat. Cell Biol. 9:1152-1159(2007) · Mapped (1)

Profiling phosphoproteins of yeast mitochondria reveals a role of phosphorylation in assembly of the ATP synthase.

Reinders J., Wagner K., Zahedi R.P., Stojanovski D., Eyrich B., van der Laan M., Rehling P., Sickmann A., Pfanner N., Meisinger C.

Mol. Cell. Proteomics 6:1896-1906(2007) · UniProtKB (47) · Mapped (6)

A role for Tim21 in membrane-potential-dependent preprotein sorting in mitochondria.

van der Laan M., Wiedemann N., Mick D.U., Guiard B., Rehling P., Pfanner N.

Curr. Biol. 16:2271-2276(2006) · Mapped (26)

The Tim21 binding domain connects the preprotein translocases of both mitochondrial membranes.

Albrecht R., Rehling P., Chacinska A., Brix J., Cadamuro S.A., Volkmer R., Guiard B., Pfanner N., Zeth K.

EMBO Rep. 7:1233-1238(2006) · Mapped (3)

Mitochondrial preprotein translocases as dynamic molecular machines.

van der Laan M., Rissler M., Rehling P.

FEMS Yeast Res. 6:849-861(2006) · Mapped (36)

Tim50 maintains the permeability barrier of the mitochondrial inner membrane.

Meinecke M., Wagner R., Kovermann P., Guiard B., Mick D.U., Hutu D.P., Voos W., Truscott K.N., Chacinska A., Pfanner N. et al.

Science 312:1523-1526(2006) · Mapped (7)

Mdm38 interacts with ribosomes and is a component of the mitochondrial protein export machinery.

Frazier A.E., Taylor R.D., Mick D.U., Warscheid B., Stoepel N., Meyer H.E., Ryan M.T., Guiard B., Rehling P.

J. Cell Biol. 172:553-564(2006) · UniProtKB (1) · Mapped (3)

Taz1, an outer mitochondrial membrane protein, affects stability and assembly of inner membrane protein complexes: implications for Barth Syndrome.

Brandner K., Mick D.U., Frazier A.E., Taylor R.D., Meisinger C., Rehling P.

Mol. Biol. Cell 16:5202-5214(2005) · UniProtKB (1) · Mapped (7)

Pam17 is required for architecture and translocation activity of the mitochondrial protein import motor.

van der Laan M., Chacinska A., Lind M., Perschil I., Sickmann A., Meyer H.E., Guiard B., Meisinger C., Pfanner N., Rehling P.

Mol. Cell. Biol. 25:7449-7458(2005) · UniProtKB (6) · Mapped (4)

Mitochondrial presequence translocase: switching between TOM tethering and motor recruitment involves Tim21 and Tim17.

Chacinska A., Lind M., Frazier A.E., Dudek J., Meisinger C., Geissler A., Sickmann A., Meyer H.E., Truscott K.N., Guiard B. et al.

Cell 120:817-829(2005) · UniProtKB (4) · Mapped (2)

The carboxyl-terminal third of the dicarboxylate carrier is crucial for productive association with the inner membrane twin-pore translocase.

Brandner K., Rehling P., Truscott K.N.

J. Biol. Chem. 280:6215-6221(2005) · UniProtKB (1) · Mapped (1)

Mitochondrial import and the twin-pore translocase.

Rehling P., Brandner K., Pfanner N.

Nat. Rev. Mol. Cell Biol. 5:519-530(2004) · Mapped (3)

The presequence translocase-associated protein import motor of mitochondria. Pam16 functions in an antagonistic manner to Pam18.

Li Y., Dudek J., Guiard B., Pfanner N., Rehling P., Voos W.

J. Biol. Chem. 279:38047-38054(2004) · UniProtKB (2) · Mapped (4)

Pam16 has an essential role in the mitochondrial protein import motor.

Frazier A.E., Dudek J., Guiard B., Voos W., Li Y., Lind M., Meisinger C., Geissler A., Sickmann A., Meyer H.E. et al.

Nat. Struct. Mol. Biol. 11:226-233(2004) · UniProtKB (2) · Mapped (4)

A J-protein is an essential subunit of the presequence translocase-associated protein import motor of mitochondria.

Truscott K.N., Voos W., Frazier A.E., Lind M., Li Y., Geissler A., Dudek J., Mueller H., Sickmann A., Meyer H.E. et al.

J. Cell Biol. 163:707-713(2003) · UniProtKB (1) · Mapped (3)

The proteome of Saccharomyces cerevisiae mitochondria.

Sickmann A., Reinders J., Wagner Y., Joppich C., Zahedi R.P., Meyer H.E., Schoenfisch B., Perschil I., Chacinska A., Guiard B. et al.

Proc. Natl. Acad. Sci. U.S.A. 100:13207-13212(2003) · UniProtKB (221) · Mapped (571)

Mitochondria use different mechanisms for transport of multispanning membrane proteins through the intermembrane space.

Frazier A.E., Chacinska A., Truscott K.N., Guiard B., Pfanner N., Rehling P.

Mol. Cell. Biol. 23:7818-7828(2003) · Mapped (4)

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