Cookies help us deliver our services. By using our services, you agree to our use of cookies. More information

Difference between revisions of "Rostovtseva 2008 Proc Natl Acad Sci U S A"

From Bioblast
Line 1: Line 1:
{{Publication
{{Publication
|title=Rostovtseva TK, Sheldon KL, Hassanzadeh E, Monge C, Saks V, Bezrukov SM, Sackett DL (2008) Tubulin binding blocks mitochondrial voltage-dependent anion channel and regulates respiration. Proc. Natl. Acad. Sci. USA 105: 18746-18751.
|title=Rostovtseva TK, Sheldon KL, Hassanzadeh E, Monge C, Saks V, Bezrukov SM, Sackett DL (2008) Tubulin binding blocks mitochondrial voltage-dependent anion channel and regulates respiration. Proc. Natl. Acad. Sci. USA 105: 18746-18751.
|info=[http://www.ncbi.nlm.nih.gov/pubmed/19033201 PMID: 19033201]
|authors=Rostovtseva TK, Sheldon KL, Hassanzadeh E, Monge C, Saks V, Bezrukov SM, Sackett DL
|authors=Rostovtseva TK, Sheldon KL, Hassanzadeh E, Monge C, Saks V, Bezrukov SM, Sackett DL
|year=2008
|year=2008
|journal=Proc. Natl. Acad. Sci.
|journal=Proc. Natl. Acad. Sci.
|mipnetlab=EE_Tallinn_SaksV, FR_Grenoble_SaksV
|abstract=Regulation of mitochondrial outer membrane (MOM) permeability
|abstract=Regulation of mitochondrial outer membrane (MOM) permeability
has dual importance: in normal metabolite and energy exchange
has dual importance: in normal metabolite and energy exchange
Line 33: Line 35:
not have mitochondria.
not have mitochondria.
|keywords=Evolution, Microtubules, Oxidative phosphorylation,  VDAC, Tubulin C-terminal
|keywords=Evolution, Microtubules, Oxidative phosphorylation,  VDAC, Tubulin C-terminal
|info=[http://www.ncbi.nlm.nih.gov/pubmed/19033201 PMID: 19033201]
}}
}}
{{Labeling
{{Labeling

Revision as of 10:31, 12 November 2010

Publications in the MiPMap
Rostovtseva TK, Sheldon KL, Hassanzadeh E, Monge C, Saks V, Bezrukov SM, Sackett DL (2008) Tubulin binding blocks mitochondrial voltage-dependent anion channel and regulates respiration. Proc. Natl. Acad. Sci. USA 105: 18746-18751.

» PMID: 19033201

Rostovtseva TK, Sheldon KL, Hassanzadeh E, Monge C, Saks V, Bezrukov SM, Sackett DL (2008) Proc. Natl. Acad. Sci.

Abstract: Regulation of mitochondrial outer membrane (MOM) permeability has dual importance: in normal metabolite and energy exchange between mitochondria and cytoplasm and thus in control of respiration, and in apoptosis by release of apoptogenic factors into the cytosol. However, the mechanism of this regulation, dependent on the voltage-dependent anion channel (VDAC), the major channel of MOM, remains controversial. A long-standing puzzle is that in permeabilized cells, adenine nucleotide translocase (ANT) is less accessible to cytosolic ADP than in isolated mitochondria. We solve this puzzle by finding a missing player in the regulation of MOM permeability: the cytoskeletal protein tubulin. We show that nanomolar concentrations of dimeric tubulin induce voltage-sensitive reversible closure of VDAC reconstituted into planar phospholipid membranes. Tubulin strikingly increases VDAC voltage sensitivity and at physiological salt conditions could induce VDAC closure at <10 mV transmembrane potentials. Experiments with isolated mitochondria confirm these findings. Tubulin added to isolated mitochondria decreases ADP availability to ANT, partially restoring the low MOM permeability (high apparent Km for ADP) found in permeabilized cells. Our findings suggest a previously unknown mechanism of regulation of mitochondrial energetics, governed by VDAC and tubulin at the mitochondria– cytosol interface. This tubulin–VDAC interaction requires tubulin anionic C-terminal tail (CTT) peptides. The significance of this interaction may be reflected in the evolutionary conservation of length and anionic charge in CTT throughout eukaryotes, despite wide changes in the exact sequence. Additionally, tubulins that have lost significant length or anionic character are only found in cells that do not have mitochondria. Keywords: Evolution, Microtubules, Oxidative phosphorylation, VDAC, Tubulin C-terminal

O2k-Network Lab: EE_Tallinn_SaksV, FR_Grenoble_SaksV


Labels:




Regulation: Respiration; OXPHOS; ETS Capacity"Respiration; OXPHOS; ETS Capacity" is not in the list (Aerobic glycolysis, ADP, ATP, ATP production, AMP, Calcium, Coupling efficiency;uncoupling, Cyt c, Flux control, Inhibitor, ...) of allowed values for the "Respiration and regulation" property., Coupling; Membrane Potential"Coupling; Membrane Potential" is not in the list (Aerobic glycolysis, ADP, ATP, ATP production, AMP, Calcium, Coupling efficiency;uncoupling, Cyt c, Flux control, Inhibitor, ...) of allowed values for the "Respiration and regulation" property. 


HRR: Oxygraph-2k