Complete loss of SLC30A8 in humans improves glucose metabolism and beta cell function

Diabetologia. 2025 Dec;68(12):2754-2766. doi: 10.1007/s00125-025-06530-3. Epub 2025 Sep 29.

Abstract

Aims/hypothesis: Genetic association studies have demonstrated that partial loss of SLC30A8 Function protects against type 2 diabetes in humans. We investigated the impact of complete loss of SLC30A8 Function on type 2 diabetes risk and related phenotypes in humans.

Methods: The Pakistan Genome Resource (PGR), a biobank comprising whole-exome and whole-genome sequences of 145,037 participants, was analysed for phenotypic associations with SLC30A8 loss-of-function (LoF) variants. To follow up on the observations in the PGR, we conducted recall-by-genotype analyses of SLC30A8 LoF heterozygotes and homozygotes, as well as their participating family members, using OGTTs.

Results: We identified 18 SLC30A8 knockouts, including homozygotes for a variant enriched in South Asians (Gln174Ter), and 1024 heterozygotes for LoF variants. Type 2 diabetes risk was lower in SLC30A8 LoF heterozygotes and homozygotes relative to non-carriers, and the protective effect strengthens in a gene dose-dependent manner (ORadditive=0.62; 95% CI 0.53, 0.72; p=1.1×10-9; ORrecessive=0.34; 95% CI 0.12, 0.93; p=0.04). OGTTs in recall-by-genotype studies showed a gene dose-dependent reduction in glucose levels, coupled with elevated insulin.

Conclusions/interpretation: The corrected insulin response, disposition index and insulin sensitivity index in LoF heterozygotes and homozygotes indicated higher glucose-stimulated insulin secretion with preserved beta cell function that was independent of BMI. These data suggest that therapeutic inhibition of SLC30A8, up to and including complete knockout, may treat type 2 diabetes safely and effectively.

Keywords: SLC30A8; Diabetes; Knockout; Pakistan Genome Resource; South Asian; ZnT8.

MeSH terms

  • Adult
  • Blood Glucose / metabolism
  • Diabetes Mellitus, Type 2* / genetics
  • Diabetes Mellitus, Type 2* / metabolism
  • Female
  • Genotype
  • Glucose* / metabolism
  • Heterozygote
  • Humans
  • Insulin Resistance / genetics
  • Insulin-Secreting Cells* / metabolism
  • Loss of Function Mutation
  • Male
  • Middle Aged
  • Zinc Transporter 8* / genetics
  • Zinc Transporter 8* / metabolism

Substances

  • Zinc Transporter 8
  • SLC30A8 protein, human
  • Glucose
  • Blood Glucose