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666 results on '"Endopeptidase Clp metabolism"'

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1. A Photocrosslinking Probe to Capture the Substrates of Caseinolytic Protease P.

2. The chloroplast protease system degrades stromal DUF760-1 and DUF760-2 domain-containing proteins at different rates.

3. TamGen: drug design with target-aware molecule generation through a chemical language model.

4. Phospho-signaling couples polar asymmetry and proteolysis within a membraneless microdomain in Caulobacter crescentus.

5. Single turnover transient state kinetics reveals processive protein unfolding catalyzed by Escherichia coli ClpB.

6. Functional investigation of the two ClpPs and three ClpXs in Myxococcus xanthus DK1622.

7. Structure-Based Design and Development of Phosphine Oxides as a Novel Chemotype for Antibiotics that Dysregulate Bacterial ClpP Proteases.

8. The Effect of the Lysine Acetylation Modification of ClpP on the Virulence of Vibrio alginolyticus .

9. Multi-pass, single-molecule nanopore reading of long protein strands.

10. Protein degradation by a component of the chaperonin-linked protease ClpP.

11. ONC206 targeting ClpP induces mitochondrial dysfunction and protective autophagy in hepatocellular carcinoma cells.

12. Streptococcus suis Deploys Multiple ATP-Dependent Proteases for Heat Stress Adaptation.

13. Uncovering the effects of non-lethal oxidative stress on replication initiation in Escherichia coli.

14. Proteolytic Regulation in the Biosynthesis of Natural Product Via a ClpP Protease System.

15. Role of a substrate binding pocket in the amino terminal domain of Mycobacterium tuberculosis caseinolytic protease B (ClpB) in its function.

16. Hemiprotonic ph-ph + with two targets inhibits metastatic breast cancer and concurrent candidiasis.

17. Biochemical characterization of ClpB and DnaK from Anaplasma phagocytophilum.

18. Coordinated adaptation of Staphylococcus aureus to calprotectin-dependent metal sequestration.

19. When the going gets tough, the tough get going-Novel bacterial AAA+ disaggregases provide extreme heat resistance.

20. The mitochondrial protease ClpP is a druggable target that controls VSMC phenotype by a SIRT1-dependent mechanism.

21. Knockout Mouse Studies Show That Mitochondrial CLPP Peptidase and CLPX Unfoldase Act in Matrix Condensates near IMM, as Fast Stress Response in Protein Assemblies for Transcript Processing, Translation, and Heme Production.

22. RecA-dependent or independent recombination of plasmid DNA generates a conflict with the host EcoKI immunity by launching restriction alleviation.

23. A review of current therapeutics targeting the mitochondrial protease ClpP in diffuse midline glioma, H3 K27-altered.

24. Nucleotide-induced ClpC oligomerization and its non-preferential association with ClpP isoforms of pathogenic Leptospira.

25. Rational Design of a Novel Class of Human ClpP Agonists through a Ring-Opening Strategy with Enhanced Antileukemia Activity.

26. Structural insights into the Clp protein degradation machinery.

27. Target-locked: A mechanism for disaggregase binding to aggregated proteins.

28. Caseinolytic mitochondrial matrix peptidase X is essential for homologous chromosome synapsis and recombination during meiosis of male mouse germ cells.

29. CLPB Deficiency Associated Neonatal Cavitating Leukoencephalopathy: A Potential Pathomechanism Underlying Neurologic Disorder.

30. CLPP-Null Eukaryotes with Excess Heme Biosynthesis Show Reduced L-arginine Levels, Probably via CLPX-Mediated OAT Activation.

31. Degron-Controlled Protein Degradation in Escherichia coli : New Approaches and Parameters.

32. Pathological mutations promote proteolysis of mitochondrial tRNA-specific 2-thiouridylase 1 (MTU1) via mitochondrial caseinolytic peptidase (CLPP).

33. Mitochondrial Unfolded Protein Response Gene Clpp Is Required for Oocyte Function and Female Fertility.

34. IraM remodels the RssB segmented helical linker to stabilize σ s against degradation by ClpXP.

35. Molecular insights into the dynamic modulation of bacterial ClpP function and oligomerization by peptidomimetic boronate compounds.

36. Structure of Staphylococcus aureus ClpP Bound to the Covalent Active-Site Inhibitor Cystargolide A.

37. The ClpX chaperone and a hypermorphic FtsA variant with impaired self-interaction are mutually compensatory for coordinating Staphylococcus aureus cell division.

38. ClpP Peptidase as a Plausible Target for the Discovery of Novel Antibiotics.

39. Translation Fidelity and Respiration Deficits in CLPP-Deficient Tissues: Mechanistic Insights from Mitochondrial Complexome Profiling.

40. A Transient π-π or Cation-π Interaction between Degron and Degrader Dual Residues: A Key Step for the Substrate Recognition and Discrimination in the Processive Degradation of SulA by ClpYQ (HslUV) Protease in Escherichia coli .

41. Structure of phosphorylated-like RssB, the adaptor delivering σ s to the ClpXP proteolytic machinery, reveals an interface switch for activation.

42. A closed translocation channel in the substrate-free AAA+ ClpXP protease diminishes rogue degradation.

43. Selective activator of human ClpP triggers cell cycle arrest to inhibit lung squamous cell carcinoma.

44. ClpP/ClpX deficiency impairs mitochondrial functions and mTORC1 signaling during spermatogenesis.

45. Assessment of the structure-activity relationship and antileukemic activity of diacylpyramide compounds as human ClpP agonists.

46. New insights into the disulfide stress response by the Bacillus subtilis Spx system at a single-cell level.

47. Fast dynamics shape the function of the AAA+ machine ClpB: lessons from single-molecule FRET spectroscopy.

48. Clp-targeting BacPROTACs impair mycobacterial proteostasis and survival.

49. Molecular determinants of protein half-life in chloroplasts with focus on the Clp protease system.

50. The SspB adaptor drives structural changes in the AAA+ ClpXP protease during ssrA-tagged substrate delivery.

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