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Humanin

HN, S14G-Humanin

Quick Stats
Studies 491
Trials 100
Score 3
2024 pubmed 9 citations

A naturally occurring variant of SHLP2 is a protective factor in Parkinson's disease.

Kim. Su-Jeong SJ; Miller. Brendan B; Hartel. Nicolas G NG; Ramirez. Ricardo R; Braniff. Regina Gonzalez RG; Leelaprachakul. Naphada N; Huang. Amy A; Wang. Yuzhu Y; Arpawong. Thalida Em TE; Crimmins. Eileen M EM; Wang. Penglong P; Sun. Xianbang X; Liu. Chunyu C; Levy. Daniel D; Yen. Kelvin K; Petzinger. Giselle M GM; Graham. Nicholas A NA; Jakowec. Michael W MW; Cohen. Pinchas P

Key Findings

  • The mtDNA SNP m.2158T>C creates a SHLP2 variant (K4R) with increased stability.
  • Both normal SHLP2 and the K4R variant bind mitochondrial complex I and protect against mitochondrial dysfunction in cells.

Practical Outcomes

  • SHLP2 shows promise as a mitochondrial‑protective agent that could someday support brain health and possibly slow Parkinson's‑related decline. However, the evidence is still limited to cell and animal studies, so there are no established dosing or supplementation guidelines yet. Keep an eye on future human trials before considering it in a personal protocol.

Summary

Researchers found that a natural change in the mitochondrial DNA makes a version of the peptide SHLP2 (called K4R) that is more stable and can protect brain cells and mice from damage linked to Parkinson's disease. Both the normal and the K4R form help keep mitochondria working well, which is important for overall cellular health.

Abstract

Mitochondrial DNA single nucleotide polymorphisms (mtSNPs) have been associated with a reduced risk of developing Parkinson's disease (PD), yet the underlying mechanisms remain elusive. In this study, we investigate the functional role of a PD-associated mtSNP that impacts the mitochondrial-derived peptide (MDP) Small Humanin-like Peptide 2 (SHLP2). We identify m.2158 T > C, a mtSNP associated with reduced PD risk, within the small open reading frame encoding SHLP2. This mtSNP results in an alternative form of SHLP2 (lysine 4 replaced with arginine; K4R). Using targeted mass spectrometry, we detect specific tryptic fragments of SHLP2 in neuronal cells and demonstrate its binding to mitochondrial complex 1. Notably, we observe that the K4R variant, associated with reduced PD risk, exhibits increased stability compared to WT SHLP2. Additionally, both WT and K4R SHLP2 show enhanced protection against mitochondrial dysfunction in in vitro experiments and confer protection against a PD-inducing toxin, a mitochondrial complex 1 inhibitor, in a mouse model. This study sheds light on the functional consequences of the m.2158 T > C mtSNP on SHLP2 and provides insights into the potential mechanisms by which this mtSNP may reduce the risk of PD.

Study Information

Provider

pubmed

Year

2024

Date

2024-01-03T00:00:00.000Z

DOI

10.1038/s41380-023-02344-0

Citations

9

References

78