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Category:All HeadlinesWorld & GeopoliticsMarkets & EconomyTech & AIPoliticsSearch results for: "Mitochondrial structure d" (30 stories)

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FAM162A Is a Key Regulator of Mitochondrial Structure, Dynamics, and Bioenergetics, Driving Cellular Protection and Longevity
Lead StoryWiley Online Librarygeneral
May 10

FAM162A Is a Key Regulator of Mitochondrial Structure, Dynamics, and Bioenergetics, Driving Cellular Protection and Longevity

<a href="https://news.google.com/rss/articles/CBMia0FVX3lxTE53dnBFRUNmcU5NTHBpVWR1QVdCOHBpTnZiNF8wR1FpWjVTTkJ6bGJCb2lFa1Q0a3lDZkRQTnZkdW8yQXFhajdzeTRMRE1HdTBxX1VxYVpYak9JLUMtV2JKeTdKSngyTEtSOUxn?oc=5" target="_blank">FAM162A Is a Key Regulator of Mitochondrial Structure, Dynamics, and Bioenergetics, Driving Cellular Protection and Longevity</a>  <font color="#6f6f6f">Wiley Online Library</font>

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Search Results for "Mitochondrial structure d"

Updated every 3 minutes via FreeNewsApi, GNews, Currents API & Google News

29 stories displayed
Membrane insertion of mitochondrial-encoded proteins regulates ribosome decoding speed
Naturegeneral

Membrane insertion of mitochondrial-encoded proteins regulates ribosome decoding speed

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE9PaGQzQ1hLcHdYQTBfaGdhaTBON1JuUThEMm1KdGdjQ0lSdzZSaUU1TG91X2dIc19GOUllRTRZOWhKVDhpLUpGbmJNX2hHanl0QVFaRElsUmpwLUR3Q25R?oc=5" target="_blank">Membrane insertion of mitochondrial-encoded proteins regulates ribosome decoding speed</a>  <font color="#6f6f6f">Nature</font>

Abnormal mitochondrial structure and function in brown adipose tissue of SLC35A4-MP knockout mice
Science | AAASworld

Abnormal mitochondrial structure and function in brown adipose tissue of SLC35A4-MP knockout mice

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1sT1laSEVtQkNiNmJtclZxTThSUlZkNUkyc2ttWWVwNFU3c2oyQk1sOUkyNWRYZHBWcVI3LTk3OG16MERfMGw2aU41MlRDTGEySGY0WkFtOG1ZRmpIY2xB?oc=5" target="_blank">Abnormal mitochondrial structure and function in brown adipose tissue of SLC35A4-MP knockout mice</a>  <font color="#6f6f6f">Science | AAAS</font>

The Functional Impact of Mitochondrial Structure Across Subcellular Scales
Frontiersworld

The Functional Impact of Mitochondrial Structure Across Subcellular Scales

<a href="https://news.google.com/rss/articles/CBMikAFBVV95cUxNSV9QekVFTGhFV1RCbFdIN0lTN19JRWp5TW9ieElSTG1GR3B0VXluV1BfV3E5UzhhenQxWHZQaFlIZ0llYmhxNWtzcllHUjlVSzkzRDUtS0hhQXluelJ4aEJfMDlpUzI0MmV1Q05IdklyLWhzVE9UMW5MZG9fRW9xUzNxRnNkSUtuT0ZaTkh1TWg?oc=5" target="_blank">The Functional Impact of Mitochondrial Structure Across Subcellular Scales</a>  <font color="#6f6f6f">Frontiers</font>

Structural basis of apoptosis induction by the mitochondrial voltage-dependent anion channel
Naturegeneral

Structural basis of apoptosis induction by the mitochondrial voltage-dependent anion channel

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5UYVpGX1VUNVVKbk83dFExenNNMXBnZC1DS2xTRm9HV3lHUDBGZURIV2dMMEZna25mQjBJQlF1amVlWFhvZDY2M0ktWlZOd1R2b25OXzJmbjV2cHFQSTZj?oc=5" target="_blank">Structural basis of apoptosis induction by the mitochondrial voltage-dependent anion channel</a>  <font color="#6f6f6f">Nature</font>

Rebalancing Cardiac Structure and Function With Synthetic Mitochondria-Endoplasmic Reticulum Tethers
American Heart Association Journalsworld

Rebalancing Cardiac Structure and Function With Synthetic Mitochondria-Endoplasmic Reticulum Tethers

<a href="https://news.google.com/rss/articles/CBMibkFVX3lxTE43U3E4Q01lc2ZrM0Zxa2pfNTY5YnFnekktV3NxUmlUblRqR2ZGZmFmaEVkZGNtajN2cVk0cWxwUVJMdjUtTjliYmctem1WU09JU3h6U2E0ek93ZkVBcENpb1d4N2Q2bWU1azk4cjhB?oc=5" target="_blank">Rebalancing Cardiac Structure and Function With Synthetic Mitochondria-Endoplasmic Reticulum Tethers</a>  <font color="#6f6f6f">American Heart Association Journals</font>

3D Mitochondrial Structure in Aging Human Skeletal Muscle: Insights Into MFN‐2‐Mediated Changes
Wiley Online Librarygeneral

3D Mitochondrial Structure in Aging Human Skeletal Muscle: Insights Into MFN‐2‐Mediated Changes

<a href="https://news.google.com/rss/articles/CBMia0FVX3lxTE0yRHk3dENXNEphZUlXTjczd2RLNXVMaEx3OFYta3B0dFYxNkwwUFd4alpJQWhyU2FUMEJ2VDg5MExFQTA5akY0YkRkV3M4TFkxMGxqQ19rMXlFSzJQcXpGdmpPb3E4cFM2dXBZ?oc=5" target="_blank">3D Mitochondrial Structure in Aging Human Skeletal Muscle: Insights Into MFN‐2‐Mediated Changes</a>  <font color="#6f6f6f">Wiley Online Library</font>

Structure of human PINK1 at a mitochondrial TOM-VDAC array
Science | AAASgeneral

Structure of human PINK1 at a mitochondrial TOM-VDAC array

<a href="https://news.google.com/rss/articles/CBMiYEFVX3lxTFBVTU4ydFpHTzlHdkY3QWJzdkp2RThESl9ENnJIODZ0Y0NfVlZVS1FYZW85YjBjUzNFdUE5ZFQtWnFMR0Qtem9YeThZZS1rNGlBOVY4SWdvZ0N4R1pMV3VORQ?oc=5" target="_blank">Structure of human PINK1 at a mitochondrial TOM-VDAC array</a>  <font color="#6f6f6f">Science | AAAS</font>

The mitochondrial mRNA-stabilizing protein SLIRP regulates skeletal muscle mitochondrial structure and respiration by exercise-recoverable mechanisms
Naturegeneral

The mitochondrial mRNA-stabilizing protein SLIRP regulates skeletal muscle mitochondrial structure and respiration by exercise-recoverable mechanisms

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE95d3FkT0N2WEZJODNGYWhQWEo2SUVBY3hmNzRTdVdCelhnMDNrVktGeGVOYzdudXJScUtHZXR1QUR3dFdKUVdIeTVsRGpyNGdBX2N2cHhVN2pKTGJRRjZZ?oc=5" target="_blank">The mitochondrial mRNA-stabilizing protein SLIRP regulates skeletal muscle mitochondrial structure and respiration by exercise-recoverable mechanisms</a>  <font color="#6f6f6f">Nature</font>

In situ structure and rotary states of mitochondrial ATP synthase in whole Polytomella cells
Science | AAASgeneral

In situ structure and rotary states of mitochondrial ATP synthase in whole Polytomella cells

<a href="https://news.google.com/rss/articles/CBMiYEFVX3lxTE5aRGxBLUNhS1ZPWW0yeUxLdGRZUzVNczhheGRGMkZBc0RTVmZ4Ri1BSHdZWXFUbWoyQldFZXJ3bnd6WU90Qk4xRlgyR0xxelo4UzhDMHpYTHdkRVBoTUtURg?oc=5" target="_blank">In situ structure and rotary states of mitochondrial ATP synthase in whole Polytomella cells</a>  <font color="#6f6f6f">Science | AAAS</font>

Mitochondria-Localized Nestin Protects Mesenchymal Stem Cells from Senescence by Maintaining Cristae Structure and Function
Wiley & Sonstech

Mitochondria-Localized Nestin Protects Mesenchymal Stem Cells from Senescence by Maintaining Cristae Structure and Function

<a href="https://news.google.com/rss/articles/CBMidkFVX3lxTE5iV0ZOa3pFenJBQ0dWdTlGVXhRcWQyekxabGNkVzRxMmJFQk5GQlE3MzRGMjJtdTBPelF4QzVUZXVBSElJZUlReW5QNnJZdjh4RU9HSWNlNlZIN3ZYZlhScUVIVzNhMTZEOUhxdTlpRGcxWlZ1ZWc?oc=5" target="_blank">Mitochondria-Localized Nestin Protects Mesenchymal Stem Cells from Senescence by Maintaining Cristae Structure and Function</a>  <font color="#6f6f6f">Wiley & Sons</font>

Identity, structure, and function of the mitochondrial permeability transition pore: controversies, consensus, recent advances, and future directions | Cell Death & Differentiation
Natureworld

Identity, structure, and function of the mitochondrial permeability transition pore: controversies, consensus, recent advances, and future directions | Cell Death & Differentiation

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFBDUUszQWJHZ2E0ejJUQ0ZtNlhxZVJDR2w5MmZIaEdYUnYtY2xXNWxjVTFBbVNva3R4VjFNbklsMWdiN0s5ZFZBSm1jeHg0QzdmcWQ3dVg5MkR6aU5zUl9F?oc=5" target="_blank">Identity, structure, and function of the mitochondrial permeability transition pore: controversies, consensus, recent advances, and future directions | Cell Death & Differentiation</a>  <font color="#6f6f6f">Nature</font>

Spatial and morphological organization of mitochondria in neurons across a connectome
Science | AAASgeneral

Spatial and morphological organization of mitochondria in neurons across a connectome

<a href="https://news.google.com/rss/articles/CBMiYEFVX3lxTFBKbVpCSlRlSHhCZ1QySUlXdkRyQ2JlNmU1eEM0S2YzYjBnSEZOeFRFeklsUTRFY0F2RGd6cmpFNlFFcEIxYm56cmJJTWlDR3NPemRxVkV0dlRrNzJFYV9nUw?oc=5" target="_blank">Spatial and morphological organization of mitochondria in neurons across a connectome</a>  <font color="#6f6f6f">Science | AAAS</font>

Tuning mitochondrial structure and function to criticality by fluctuation-driven mechanotransduction
Natureworld

Tuning mitochondrial structure and function to criticality by fluctuation-driven mechanotransduction

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1JdElwSFBGaUdYXzFJNElaUHVJUmRjeXhXUEpHcGdqV05fVy10Nkx6ZkxMVmJZV0s1endyUXBYZ21EZnAzU09CWC1raGJWQ0VBRFQtVlk2dVNnTnVxODRV?oc=5" target="_blank">Tuning mitochondrial structure and function to criticality by fluctuation-driven mechanotransduction</a>  <font color="#6f6f6f">Nature</font>

Structural basis for shape-selective recognition and aminoacylation of a D-armless human mitochondrial tRNA
Naturegeneral

Structural basis for shape-selective recognition and aminoacylation of a D-armless human mitochondrial tRNA

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE84VXZIVFZtaDBfNUNkZ1NpWDI2dVpsWUYyNXNRSEp4aVh5ZnoyTTdyWW55SmI1Vm9Dc0NoQnoxVHdMSHBOcjNCNDVJOWVESUFMSmE1NldSdnlVSjkwVjFz?oc=5" target="_blank">Structural basis for shape-selective recognition and aminoacylation of a D-armless human mitochondrial tRNA</a>  <font color="#6f6f6f">Nature</font>

Inhibition of HDAC6 alters fumarate hydratase activity and mitochondrial structure
Naturegeneral

Inhibition of HDAC6 alters fumarate hydratase activity and mitochondrial structure

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE15UUozN1RkdktxdW9CSjFqWWtKMkE4dE1nUmlGamg1aWhPMThKVHllVWtLMVJ5c2FCbDR0Z3FGTnZuekxiM3IyRGt0NXRRd0I2RHdpNm9DZXFuOFUyWWhv?oc=5" target="_blank">Inhibition of HDAC6 alters fumarate hydratase activity and mitochondrial structure</a>  <font color="#6f6f6f">Nature</font>

Three-dimensional structured illumination microscopy data of mitochondria and lysosomes in cardiomyoblasts under normal and galactose-adapted conditions
Natureworld

Three-dimensional structured illumination microscopy data of mitochondria and lysosomes in cardiomyoblasts under normal and galactose-adapted conditions

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5EZExFTnRpVFpUT1ZMZDg3M2VkVjYwSnhnMExJUThoN081UHdTQWR2eDF3dXpkc0pDbi0yRVZDMHRIRjg3WGg5eXNMVUFZa0NSQlR4YXZtQ2tKSVA0bmh3?oc=5" target="_blank">Three-dimensional structured illumination microscopy data of mitochondria and lysosomes in cardiomyoblasts under normal and galactose-adapted conditions</a>  <font color="#6f6f6f">Nature</font>

Structural basis of mitochondrial membrane bending by the I–II–III2–IV2 supercomplex
Naturegeneral

Structural basis of mitochondrial membrane bending by the I–II–III2–IV2 supercomplex

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1CU2xfTWZjc1JidnRjMHlWWnFiWXBVcUpXenFvOHVZQjFNd0hQMGtJdmNUTDdqY1BqcWdiNVcxaDNLSVpyV3NZRUdIZ3JMNXpVcjRsa0ZQQzRoRGdIRG1r?oc=5" target="_blank">Structural basis of mitochondrial membrane bending by the I–II–III2–IV2 supercomplex</a>  <font color="#6f6f6f">Nature</font>

Interaction of the mitochondrial calcium/proton exchanger TMBIM5 with MICU1
Naturegeneral

Interaction of the mitochondrial calcium/proton exchanger TMBIM5 with MICU1

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5KNzRBdnlNcjBuOHlBNHdfZWtydDU5cTRYLWt0ZzNtc3VNSjNIQ0FVMTVuN1FJZUljek9hTEZVTjBIMXRIb0R4UEE1ZlprSmRXVEN2X1U4aS1mRXp4ZFpB?oc=5" target="_blank">Interaction of the mitochondrial calcium/proton exchanger TMBIM5 with MICU1</a>  <font color="#6f6f6f">Nature</font>

An adenosine derivative promotes mitochondrial supercomplexes reorganization and restoration of mitochondria structure and bioenergetics in a diethylnitrosamine-induced hepatocellular carcinoma model
Naturegeneral

An adenosine derivative promotes mitochondrial supercomplexes reorganization and restoration of mitochondria structure and bioenergetics in a diethylnitrosamine-induced hepatocellular carcinoma model

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1hVUtDSDA2WHV6SGNBd3pZNHBaS0tFbm1qS3VtLUowUmtWZC1rdzQ0dDN2ei1lZWFLc1ZxQVRxOTdQYjVEVGN1RmJVMFUxUHJLTzMxRk0zYWtmMjUtTHRr?oc=5" target="_blank">An adenosine derivative promotes mitochondrial supercomplexes reorganization and restoration of mitochondria structure and bioenergetics in a diethylnitrosamine-induced hepatocellular carcinoma model</a>  <font color="#6f6f6f">Nature</font>

Long-term super-resolution inner mitochondrial membrane imaging with a lipid probe
Naturegeneral

Long-term super-resolution inner mitochondrial membrane imaging with a lipid probe

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFAzcXJlOW00YzhSVTMyeHR3OWFhTUU4ekh2UnpCMXF6bTNDczIwOWNLaHcyLWs2SUlTRzhHWUE2R05VTlFVV1FYdkk0VFM0Sk5HTTJXVXYyZXVkbk04aU5B?oc=5" target="_blank">Long-term super-resolution inner mitochondrial membrane imaging with a lipid probe</a>  <font color="#6f6f6f">Nature</font>

Complete chemical structures of human mitochondrial tRNAs
Naturegeneral

Complete chemical structures of human mitochondrial tRNAs

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE5DUkYxX2NJdkpkZGJ6dUpXa0VBM0d6QndEcTdDcExEUFRWR2JWNlpkaTM1YUhtZnlqak9ZSkhtaks1M0RvZ2hWY2hzbXVjNlNIQ3Y4NVlhMmpNNU81N1pN?oc=5" target="_blank">Complete chemical structures of human mitochondrial tRNAs</a>  <font color="#6f6f6f">Nature</font>

The effects of general anesthetics on mitochondrial structure and function in the developing brain
Frontierstech

The effects of general anesthetics on mitochondrial structure and function in the developing brain

<a href="https://news.google.com/rss/articles/CBMikAFBVV95cUxQblR2X3d5SXQzTWNuUlRMcXN4MC01WVZwQUUxNkw2eE1FazFNUGstQ2FkaFUyYnpraFRfSTV5UTJic2RDUm95LXpJZ3J1WUhvb2VjazVpV1VaNTVyc3lMVGtyRDBvYU9BRm5FZmtlNHZpOVpxWXhWaEROYmxoRXRTZGJHNkdzU3pGRm5fVm1tc0U?oc=5" target="_blank">The effects of general anesthetics on mitochondrial structure and function in the developing brain</a>  <font color="#6f6f6f">Frontiers</font>

In vivo structure profiling reveals human cytosolic and mitochondrial tRNA structurome and interactome in response to stress
Naturegeneral

In vivo structure profiling reveals human cytosolic and mitochondrial tRNA structurome and interactome in response to stress

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE9uTU12OVJBcDRCQmpXcUhzZTFVcnhzbzFmVEItdEl1R2FGcUM1clRDUXl4M1lzZzc0ZXVMcEVSY2lmdEpfMFpGcnp5anV6RWZaaFFEOE1xX2ppSjVnb1Jz?oc=5" target="_blank">In vivo structure profiling reveals human cytosolic and mitochondrial tRNA structurome and interactome in response to stress</a>  <font color="#6f6f6f">Nature</font>

In situ architecture of the human prohibitin complex
Naturegeneral

In situ architecture of the human prohibitin complex

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE9EYi1fN1Z2S09wVk1zVzJ4Tl85aHlYU2t5MUZ4UEZoMms1N3d2ZmlpQVF3dXl2Y296TFNpUnl6SWdDeW5kMDRxSmFWVjJrSEJwZTNIdjZFQmZHQW5nV01v?oc=5" target="_blank">In situ architecture of the human prohibitin complex</a>  <font color="#6f6f6f">Nature</font>

The human mitochondrial mRNA structurome reveals mechanisms of gene expression
Science | AAASgeneral

The human mitochondrial mRNA structurome reveals mechanisms of gene expression

<a href="https://news.google.com/rss/articles/CBMiYEFVX3lxTE84aDBNSl9udFFRa0hTdnY4bm1pQWx4Z21BWlUzLUVzOTU2TURrb05ucHlPV000MDJoc0U1QTluNDdjLXNlbWxuaFJmWWZnVGQzVmtXMm1QeG5aYzBFaDdZTw?oc=5" target="_blank">The human mitochondrial mRNA structurome reveals mechanisms of gene expression</a>  <font color="#6f6f6f">Science | AAAS</font>

High-resolution structure and dynamics of mitochondrial complex I—Insights into the proton pumping mechanism
Science | AAASgeneral

High-resolution structure and dynamics of mitochondrial complex I—Insights into the proton pumping mechanism

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE0tYjUwd2EwNWh4Q09oc1pnaHIzcGh2U2tERThBWG81T1dmWl9ZZy1DZzFkbS1DaXcxUExZNjItd2VyTGg3cHhsSG5KdGc3X2t3WnNneU94MVBEZnZfRGhR?oc=5" target="_blank">High-resolution structure and dynamics of mitochondrial complex I—Insights into the proton pumping mechanism</a>  <font color="#6f6f6f">Science | AAAS</font>

Mitofusin 1 and 2 regulation of mitochondrial DNA content is a critical determinant of glucose homeostasis
Naturegeneral

Mitofusin 1 and 2 regulation of mitochondrial DNA content is a critical determinant of glucose homeostasis

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1pREk5NkFSX1FvanFGTWdfZHFWQWxLX0VaWnh0UW1XaFNOWi1ZVVJvQ3FDYi1qbUVWcWk0U01DZUd1ZVo2WXFaSURxbUVGUFN2blZqelNtUW9kczR0U1Vv?oc=5" target="_blank">Mitofusin 1 and 2 regulation of mitochondrial DNA content is a critical determinant of glucose homeostasis</a>  <font color="#6f6f6f">Nature</font>

In-cell architecture of the mitochondrial respiratory chain
Science | AAAStech

In-cell architecture of the mitochondrial respiratory chain

<a href="https://news.google.com/rss/articles/CBMiYEFVX3lxTFA2azVpekpkUEFuT0ZsaVJwQVlWVGV5NnFXUDBjRG9TMHpFV2JpcjBvTjhMSWZlQTJiNERNRlJjaUxhTmlrSkRzTGhzRmw0RFhQTE5lbHQxelp0UFp4RjQzTA?oc=5" target="_blank">In-cell architecture of the mitochondrial respiratory chain</a>  <font color="#6f6f6f">Science | AAAS</font>

Mitochondrial cellular organization and shape fluctuations are differentially modulated by cytoskeletal networks
Naturegeneral

Mitochondrial cellular organization and shape fluctuations are differentially modulated by cytoskeletal networks

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1Sc0JGNm5ibjQtSDJYWWc2UnhiOWZvNEIzbU55QjhfcFhhZ01vdl9kUW9lZDBhN1NiT3dyS0pqTVJ0TG1kUkNUb1RaVXlDOE1lSnpoTjZEckZwd1BSSkNJ?oc=5" target="_blank">Mitochondrial cellular organization and shape fluctuations are differentially modulated by cytoskeletal networks</a>  <font color="#6f6f6f">Nature</font>

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