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1. Author Correction: Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system

4. G3BPs tether the TSC complex to lysosomes and suppress mTORC1 signaling

5. Complement C7 and clusterin form a complex in circulation

7. The TBC1D31/praja2 complex controls primary ciliogenesis through PKA‐directed OFD1 ubiquitylation

9. Feedback inhibition of cAMP effector signaling by a chaperone-assisted ubiquitin system

11. Kinase perturbations redirect mitochondrial function in cancer

16. Mitochondrial physiology: Gnaiger Erich et al ― MitoEAGLE Task Group

18. G3BP1 tethers the TSC complex to lysosomes and suppresses mTORC1 in the absence of stress granules

21. Caracterización del RNoma del endosimbionte diazotrófico Sinorhizobium meliloti: aproximación a la función de la chaperona de RNA Hfq y de los ribo-reguladores Smr7C y Smr15C1/C2

22. BRAF inhibitors promote intermediate BRAF(V600E) conformations and binary interactions with activated RAS

23. The Sinorhizobium meliloti RNA chaperone Hfq influences central carbon metabolism and the symbiotic interaction with alfalfa

24. Counterregulation of cAMP-directed kinase activities controls ciliogenesis

25. A conserved α-proteobacterial small RNA contributes to osmoadaptation and symbiotic efficiency of rhizobia on legume roots

26. Counterregulation of cAMP-directed kinase activities controls ciliogenesis

28. A survey of sRNA families in alpha-proteobacteria

29. Genome-wide profiling of Hfq-binding RNAs uncovers extensive post-transcriptional rewiring of major stress response and symbiotic regulons inSinorhizobium meliloti

30. The Sinorhizobium meliloti RNA chaperone Hfq influences central carbon metabolism and the symbiotic interaction with alfalfa

35. Independent Activity of the Homologous Small Regulatory RNAs AbcR1 and AbcR2 in the Legume Symbiont Sinorhizobium meliloti.

36. Independent Activity of the Homologous Small Regulatory RNAs AbcR1 and AbcR2 in the Legume Symbiont Sinorhizobium meliloti.

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