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Over the years, various studies have identified several modes of mitochondrial function in tumorigenesis.
The results provide a foundation for classifying PFAAs according to specific modes of mitochondrial activity and, in combination with toxicokinetic considerations, establishing structure activity-based boundariestructure activity-basedof risk for noncancer endpoints for PFAAs for which minimal in vivo toxicity testing currently exists.
In the past decade, multiple new modes of mitochondrial signaling have been discovered.
This versatile competency of mitochondria to decode various cellular Ca2+ signals is accomplished by Ca2+ channels and Ca2+ exchangers at the inner mitochondrial membrane (IMM) that govern different modes of mitochondrial Ca2+ uptake [8].
Moreover, two Ca2+ sensitivities of the UCP3 became obvious when testing the UCP3 mutants, thus supporting the concept of various modes of mitochondrial Ca2+ uptake described by others [10,11,58].
In this third mode of operation, H2O2 efflux from mitochondria is negligible compared with modes 1 or 2. Our next focus is to understand in detail the sites and mechanisms of O2− production under these three modes of mitochondrial operation and thereby infer where and how O2− is produced in vivo.
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These findings are important in our efforts to understand the mechanistic basis of this unusual mode of mitochondrial DNA inheritance that is common among bivalves.
The association between extended lifespan and inheritance of maternal genes may suggest a mode of mitochondrial gene inheritance.
Our findings point at a specific mode of mitochondrial uncoupling by benzoquinones that offers a new approach to targeting neoangiogenesis.
The specific mode of mitochondrial autophagy, mitophagy, is a quality control process for eliminating dysfunctional mitochondria via lysosomal degradation [ 9].
This new mode of mitochondrial coupling might facilitate the transmission of energy inside cells by equilibrating the proton-motive force along electrically connected, but not fused, mitochondria.
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