Search bioRxiv⌕ Search

Biology subjects

Kino, K.

Publications and source records attributed to Kino, K..

2 recordsLinked to original sources

Screening of Stereochemically Defined 2,5-Diketopiperazines Identifies Autophagy Inducers without mTORC1 Suppression

Modulating autophagy has emerged as a potential strategy for treating age-related diseases. However, commonly used pharmacological approaches to induce autophagy, particularly inhibition of mechanistic target of rapamycin complex 1 (mTORC1), can be associated with adverse effects, including immunosuppression and insulin resistance. This has prompted interest in autophagy modulators that act without directly inhibiting mTORC1. 2,5-Diketopiperazines (DKPs) are bioactive cyclic dipeptide scaffolds with diverse biological activities. However, systematic evaluation of their structure-activity relationships has been hindered by racemization during conventional chemical synthesis, leaving the contribution of stereochemistry to autophagy regulation poorly understood. Here, we used a stereoselective one-pot chemoenzymatic synthesis based on the adenylation domain of tyrocidine synthetase A to generate a DKP library with defined stereochemistry. Phenotypic screening in Caco-2 cells stably expressing the GFP-LC3-RFP autophagic flux probe identified four DKPs that increased autophagic flux: c(DW-DP), c(DW-LP), c(DF-DP), and c(DM-LP). Structure-activity analysis revealed stereochemistry-dependent effects associated with amino acid side-chain properties: D-configured residues were favored among DKPs containing aromatic amino acids or methionine, whereas L-configured residues were favored among those containing branched-chain amino acids. Substitution of the proline residue further altered activity, with glycine substitution tending to increase autophagic flux in some DKP scaffolds. Importantly, the active DKPs did not detectably reduce the phosphorylation of the mTORC1 downstream targets p70 S6K and 4EBP1, indicating that their autophagy-inducing effects do not require detectable suppression of canonical mTORC1 signaling. These findings establish stereochemically defined DKPs as candidate scaffolds for the development of autophagy inducers that act through mechanisms distinct from direct mTORC1 inhibition.

biochemistry↗

Effects of contrast water therapy on performance, circulatory function, and fatigue in collegiate freestyle swimmers

This study aimed to examine the effects of contrast water therapy (CWT) on recovery following high-intensity interval training in competitive collegiate swimmers. Fifteen male freestyle swimmers (mean age: 19.3 {+/-} 1.1 years) participated in a crossover design, performing five 100-meter maximal-effort intervals under two conditions: CWT and passive rest (PAS). Each session included standardized warm-up, pre- and post-intervention measurements of blood pressure (BP), blood lactate concentration (LA), and subjective fatigue (FAS), followed by a second interval set. CWT consisted of 10 cycles of hot (40-41 {degrees}C, 60 s) and cold (20-21 {degrees}C, 30 s) full-body immersion. Performance metrics--swim time, stroke count, stroke length, and stroke velocity--were recorded during both interval sets. The results showed no significant differences between CWT and PAS in swim performance or blood pressure. However, a significant interaction was observed in stroke length during the first interval set, indicating a potential subtle benefit of CWT on swimming mechanics. Importantly, blood lactate concentrations were significantly lower after CWT compared to PAS (p < .001), and subjective fatigue was also reduced. These findings suggest that CWT promotes metabolic recovery, likely through enhanced peripheral circulation and lactate clearance, without negatively affecting cardiovascular parameters. Although CWT did not enhance immediate performance, its ability to reduce physiological and perceptual fatigue indicates its value in managing accumulated fatigue during training cycles. In conclusion, contrast water therapy appears to be a practical and effective recovery strategy for competitive swimmers, especially in supporting lactate clearance and reducing fatigue following high-intensity training. Future studies should explore optimal immersion protocols and assess long-term benefits across varied performance levels.

physiology↗