[HTML][HTML] Detailed analysis of the human mitochondrial contact site complex indicate a hierarchy of subunits

C Ott, E Dorsch, M Fraunholz, S Straub… - PloS one, 2015 - journals.plos.org
C Ott, E Dorsch, M Fraunholz, S Straub, V Kozjak-Pavlovic
PloS one, 2015journals.plos.org
Mitochondrial inner membrane folds into cristae, which significantly increase its surface and
are important for mitochondrial function. The stability of cristae depends on the mitochondrial
contact site (MICOS) complex. In human mitochondria, the inner membrane MICOS complex
interacts with the outer membrane sorting and assembly machinery (SAM) complex, to form
the mitochondrial intermembrane space bridging complex (MIB). We have created
knockdown cell lines of most of the MICOS and MIB components and have used them to …
Mitochondrial inner membrane folds into cristae, which significantly increase its surface and are important for mitochondrial function. The stability of cristae depends on the mitochondrial contact site (MICOS) complex. In human mitochondria, the inner membrane MICOS complex interacts with the outer membrane sorting and assembly machinery (SAM) complex, to form the mitochondrial intermembrane space bridging complex (MIB). We have created knockdown cell lines of most of the MICOS and MIB components and have used them to study the importance of the individual subunits for the cristae formation and complex stability. We show that the most important subunits of the MIB complex in human mitochondria are Mic60/Mitofilin, Mic19/CHCHD3 and an outer membrane component Sam50. We provide additional proof that ApoO indeed is a subunit of the MICOS and MIB complexes and propose the name Mic23 for this protein. According to our results, Mic25/CHCHD6, Mic27/ApoOL and Mic23/ApoO appear to be periphery subunits of the MICOS complex, because their depletion does not affect cristae morphology or stability of other components.
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