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Category:All HeadlinesWorld & GeopoliticsMarkets & EconomyTech & AIPoliticsSearch results for: "Loop formation in unfolde" (14 stories)

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Loop formation in unfolded polypeptide chains on the picoseconds to microseconds time scale
Lead StoryPNAStech
Mar 7, 2022

Loop formation in unfolded polypeptide chains on the picoseconds to microseconds time scale

<a href="https://news.google.com/rss/articles/CBMiXEFVX3lxTE1icm1mTjJwMURVWkx4N1FPU0lLeTZTN0NJdzZUOTJkZEhPTERnd3JPM1J3WWQ2ZnlzSnV6ZkJEUi0ycmllN2kwMFRiTFk4N1RBd1I1bndyUVQwZ0Fi?oc=5" target="_blank">Loop formation in unfolded polypeptide chains on the picoseconds to microseconds time scale</a>  <font color="#6f6f6f">PNAS</font>

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Search Results for "Loop formation in unfolde"

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

13 stories displayed
Hypoxia-induced SETX links replication stress with the unfolded protein response
Natureworld

Hypoxia-induced SETX links replication stress with the unfolded protein response

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE05MW1UTWY1YXN0LWFFNjdxcmllSkNsOVZYTk5xTlBYVHVLUFlmYjJRRVBkSmxMbUJiVzV2anhBbmptMEV4dFZMUzFRM2hwWVZsZEg1X1NlTDc1SkhFLWo0?oc=5" target="_blank">Hypoxia-induced SETX links replication stress with the unfolded protein response</a>  <font color="#6f6f6f">Nature</font>

Untangling the Formation of DNA Loops
Scientific Americanworld

Untangling the Formation of DNA Loops

<a href="https://news.google.com/rss/articles/CBMiiAFBVV95cUxNWkU2NVJicGJnaWdDLWc2cl85Z1ZhdUVJRXJJSUc0TWo2aDJBZUVDMHlWYzNJUWh2NVBxbXlmX1ZHZnk5N0l2aFAxUkcxTVNaSS1FbUtrQUd2SDlsNW8tWk9tWER0Y092Ym0yRzdvblRMUFJwbk9Ra2tBUGE2blpoUXI3YkpHV0N6?oc=5" target="_blank">Untangling the Formation of DNA Loops</a>  <font color="#6f6f6f">Scientific American</font>

Stem–loop formation drives RNA folding in mechanical unzipping experiments
PNASworld

Stem–loop formation drives RNA folding in mechanical unzipping experiments

<a href="https://news.google.com/rss/articles/CBMiXEFVX3lxTE4xcW82RTJieWotalp2LUYzZEV4NWdwXzJrQlZiOTczdTd4eVBLVmZKaF96UmdGcm0zb0pHWDJQZlJPU2VRUHlHVHBibjJtRGpGN0p0Q1liOF9UOVZE?oc=5" target="_blank">Stem–loop formation drives RNA folding in mechanical unzipping experiments</a>  <font color="#6f6f6f">PNAS</font>

Benefits and constrains of covalency: the role of loop length in protein stability and ligand binding
Naturetech

Benefits and constrains of covalency: the role of loop length in protein stability and ligand binding

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1vNExSMzdrYUJsbXQtVGwxTGhFTmtWal8ya1JtUzBmT0dPQ2pJLUx5UV9tTjk2ODBybEF2NGVQbmozUk5OeEQwcUJEbDc4VUlCMUtuMWlaNGFFbkR3a09j?oc=5" target="_blank">Benefits and constrains of covalency: the role of loop length in protein stability and ligand binding</a>  <font color="#6f6f6f">Nature</font>

Short hydrophobic loop motifs in BRICHOS domains determine chaperone activity against amorphous protein aggregation but not against amyloid formation | Communications Biology
Naturetech

Short hydrophobic loop motifs in BRICHOS domains determine chaperone activity against amorphous protein aggregation but not against amyloid formation | Communications Biology

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFBqcFEzZ2Nnbk1uNEFWQWlOMlhrY2pOX0FGamowSy1jaWJqN2dfc2hkT1BjS0hNUmsyWGdzZG9WYUlORHNzWjZaMFlod1oxZnZWOUs5NHN2cnU2cGJHRFFZ?oc=5" target="_blank">Short hydrophobic loop motifs in BRICHOS domains determine chaperone activity against amorphous protein aggregation but not against amyloid formation | Communications Biology</a>  <font color="#6f6f6f">Nature</font>

Measurement of energy landscape roughness of folded and unfolded proteins
PNASworld

Measurement of energy landscape roughness of folded and unfolded proteins

<a href="https://news.google.com/rss/articles/CBMiXEFVX3lxTE5tSXo1OEJLQUwwVkhhc1BHS3dTc2V2SldKb3hlektVbGpmcmxTRXFJeGRHbmRvanF4ZW5pdkt5dWU2cENZWUh4QzZ5SGxJdGMweXJPVzRzZzYxRnV5?oc=5" target="_blank">Measurement of energy landscape roughness of folded and unfolded proteins</a>  <font color="#6f6f6f">PNAS</font>

The energy cost of polypeptide knot formation and its folding consequences
Naturegeneral

The energy cost of polypeptide knot formation and its folding consequences

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE9yWUFxVVBMVHBOMjJMVWFta3NUNEEtb29EMll1SUstMVBzSXRURDlwQTFqa29EOWVfTklNcExSdTZwdGFGYnprZ3ZEN3FneWJkOW9VVm5mLWQwOHlsWTlr?oc=5" target="_blank">The energy cost of polypeptide knot formation and its folding consequences</a>  <font color="#6f6f6f">Nature</font>

Local conformational dynamics in α-helices measured by fast triplet transfer
PNASgeneral

Local conformational dynamics in α-helices measured by fast triplet transfer

<a href="https://news.google.com/rss/articles/CBMiXEFVX3lxTE9BZV9fdDNoLWpKUmFlQWp5QjJsVHkzTzIzNHJzSnNkcXl0X2poRGhfWklxLXZ6XzZYVVdxSy1IVHZOSktBdFJjMnFqZ05hWlBoTWZreUdrWmNuaDh5?oc=5" target="_blank">Local conformational dynamics in α-helices measured by fast triplet transfer</a>  <font color="#6f6f6f">PNAS</font>

Transition state and ground state properties of the helix–coil transition in peptides deduced from high-pressure studies
PNASworld

Transition state and ground state properties of the helix–coil transition in peptides deduced from high-pressure studies

<a href="https://news.google.com/rss/articles/CBMiXEFVX3lxTE1XUHRVVFB6akt2dW5WOGhGN1ZrVEpVRVhhbU92OTl2dThUZ25RZ0hXYVljOXZJTzlvelNJYWZ3b2VBQXgwNVNVb2pHWkFKUDU4WXBXbi13NndpYU1N?oc=5" target="_blank">Transition state and ground state properties of the helix–coil transition in peptides deduced from high-pressure studies</a>  <font color="#6f6f6f">PNAS</font>

Transition between protein-like and polymer-like dynamic behavior: Internal friction in unfolded apomyoglobin depends on denaturing conditions
Natureworld

Transition between protein-like and polymer-like dynamic behavior: Internal friction in unfolded apomyoglobin depends on denaturing conditions

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTFBqazVoWGtOY3RKTHhnZmFUVVFZR0k5VkFVX1ZJQnZDTi1FaFJkcl9DeVczRDViWjhvQzh1UGZIOHl1TkhSN3d0V202eDlHR0hZR0ZCNVVJVXNnc0NuaTBv?oc=5" target="_blank">Transition between protein-like and polymer-like dynamic behavior: Internal friction in unfolded apomyoglobin depends on denaturing conditions</a>  <font color="#6f6f6f">Nature</font>

Structural basis for transthyretin amyloid formation in vitreous body of the eye
Naturegeneral

Structural basis for transthyretin amyloid formation in vitreous body of the eye

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE1wb0JjNk9CVWtSV21xRGxMdG04bjVaQlZYUzNvempKODVNSmJDcU5ZT2lwM3BISWdPQ3V1UUU0NXk0ZUxUajJ2OXlMX2Zza29UbnRhMG42M0ZLbDJ0bmJz?oc=5" target="_blank">Structural basis for transthyretin amyloid formation in vitreous body of the eye</a>  <font color="#6f6f6f">Nature</font>

Testing the diffusing boundary model for the helix–coil transition in peptides
PNASworld

Testing the diffusing boundary model for the helix–coil transition in peptides

<a href="https://news.google.com/rss/articles/CBMiXEFVX3lxTE5qcVZqWkFSNUROUndSLTc0VmtETm5XaDZOeFhuYjdjQzBydWZuOVYxRXhVN1ZENlFHZmY2c0NqZW9hMHVablc5WWFMUnBsaldHX1pWYmlNQi15Q0ow?oc=5" target="_blank">Testing the diffusing boundary model for the helix–coil transition in peptides</a>  <font color="#6f6f6f">PNAS</font>

Theoretical and computational validation of the Kuhn barrier friction mechanism in unfolded proteins | Scientific Reports
Natureworld

Theoretical and computational validation of the Kuhn barrier friction mechanism in unfolded proteins | Scientific Reports

<a href="https://news.google.com/rss/articles/CBMiX0FVX3lxTE9VZ3JpSWlrekxXdW9BMk9nMlRzZmF2VUFiZWRicTh0eW1vTUQ0VC1hMVp0YWh1NVIwdWZlWE1XWkgtcC1XZ2prQlI1d195eGdyeDB0VElGelpPRG40ZVMw?oc=5" target="_blank">Theoretical and computational validation of the Kuhn barrier friction mechanism in unfolded proteins | Scientific Reports</a>  <font color="#6f6f6f">Nature</font>

"Loop formation in unfolde" — Live Google News Trends & Headlines