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Items: 8

1.

Use of (32)P to study dynamics of the mitochondrial phosphoproteome.

Aponte AM, Phillips D, Hopper RK, Johnson DT, Harris RA, Blinova K, Boja ES, French S, Balaban RS.

J Proteome Res. 2009 Jun;8(6):2679-95. doi: 10.1021/pr800913j.

2.

Unraveling the phosphoproteome dynamics in mammal mitochondria from a network perspective.

PadrĂ£o AI, Vitorino R, Duarte JA, Ferreira R, Amado F.

J Proteome Res. 2013 Oct 4;12(10):4257-67. doi: 10.1021/pr4003917. Epub 2013 Sep 6. Review.

PMID:
23964737
3.

Advances in Phos-tag-based methodologies for separation and detection of the phosphoproteome.

Kinoshita E, Kinoshita-Kikuta E, Koike T.

Biochim Biophys Acta. 2015 Jun;1854(6):601-8. doi: 10.1016/j.bbapap.2014.10.004. Epub 2014 Oct 12. Review.

PMID:
25315852
4.

Structures and interactions of proteins involved in the coupling function of the protonmotive F(o)F(1)-ATP synthase.

Gaballo A, Zanotti F, Papa S.

Curr Protein Pept Sci. 2002 Aug;3(4):451-60. Review.

PMID:
12370007
5.

Supercomplex organization of the oxidative phosphorylation enzymes in yeast mitochondria.

Stuart RA.

J Bioenerg Biomembr. 2008 Oct;40(5):411-7. doi: 10.1007/s10863-008-9168-4. Epub 2008 Oct 7. Review.

PMID:
18839289
6.

Mitochondrial tyrosine phosphoproteome: new insights from an up-to-date analysis.

Cesaro L, Salvi M.

Biofactors. 2010 Nov-Dec;36(6):437-50. doi: 10.1002/biof.123. Review.

PMID:
21072759
7.

Cardiac mitochondrial matrix and respiratory complex protein phosphorylation.

Covian R, Balaban RS.

Am J Physiol Heart Circ Physiol. 2012 Oct 15;303(8):H940-66. doi: 10.1152/ajpheart.00077.2012. Epub 2012 Aug 10. Review.

8.

Spatial and temporal dynamics of the cardiac mitochondrial proteome.

Lau E, Huang D, Cao Q, Dincer TU, Black CM, Lin AJ, Lee JM, Wang D, Liem DA, Lam MP, Ping P.

Expert Rev Proteomics. 2015 Apr;12(2):133-46. doi: 10.1586/14789450.2015.1024227. Epub 2015 Mar 9. Review.

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