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The Journal of Cell Biology|June 13, 2001
Tom40, the pore-forming component of the protein-conducting TOM channel in the outer membrane of mitochondriaU Ahting, M Thieffry, H Engelhardt, et al.Molecular and Cellular Biology|June 20, 1998
Role of the negative charges in the cytosolic domain of TOM22 in the import of precursor proteins into mitochondriaF E Nargang, D Rapaport, R G Ritzel, et al.The Journal of Biological Chemistry|March 30, 2001
Assembly of Tom6 and Tom7 into the TOM core complex of Neurospora crassaM Dembowski, K P Kunkele, F E Nargang, et al.The Journal of Biological Chemistry|September 25, 1990
Energy requirements for unfolding and membrane translocation of precursor proteins during import into mitochondriaN Pfanner, J Rassow, B Guiard, et al.Cell|June 3, 1988
Mitochondrial protein import: identification of processing peptidase and of PEP, a processing enhancing proteinG Hawlitschek, H Schneider, B Schmidt, et al.Current Genetics|September 29, 1999
Inactivation of the Neurospora crassa mitochondrial outer membrane protein TOM70 by repeat-induced point mutation (RIP) causes defects in mitochondrial protein import and morphologyL I Grad, A T Descheneau, W Neupert, et al.FEBS Letters|February 12, 1996
Role of the mitochondrial DnaJ homologue, Mdj1p, in the prevention of heat-induced protein aggregationC Prip-Buus, B Westerman, M Schmitt, et al.The Journal of Cell Biology|October 1, 1989
Translocation arrest by reversible folding of a precursor protein imported into mitochondria. A means to quantitate translocation contact sitesJ Rassow, B Guiard, U Wienhues, et al.The Journal of Rheumatology|October 1, 1991
Atlantoaxial subluxation in a patient with mixed connective tissue diseaseR A Stuart, P J MaddisonNuclear Medicine Communications|December 1, 1986
A comprehensive analysis of renal DTPA studies. III. Renal artery stenosisM D Rutland, R A StuartPageof 25