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Review 2018

The effects of gene disruption of Kre6-like proteins on the phenotype of β-glucan-producing Aureobasidium pullulans

Uchiyama, Hirofumi; Iwai, Atsushi; Dohra, Hideo; Ohnishi, Toshiyuki; Kato, Tatsuya; Park, Enoch Y. · Applied Microbiology and Biotechnology · DOI: 10.1007/s00253-018-8947-z
Research Archive
TL;DR — Key Findings
  • Kre6-like proteins control β-1,6 side chain addition in Aureobasidium pullulans β-glucan biosynthesis.
  • Gene disruption altered glucan branching and molecular weight, revealing key biosynthetic machinery.
  • Kre6 gene knowledge enables rational strain engineering to optimize AP-glucan structure and immunoactivity.

Abstract

Killer toxin resistant 6 (Kre6) and its paralog, suppressor of Kre null 1 (Skn1), are thought to be involved in the biosynthesis of cell wall β-(1 → 6)-D-glucan in baker’s yeast, Saccharomyces cerevisiae. The Δkre6Δskn1 mutant of S. cerevisiae and other fungi shows severe growth defects due to the failure to synthesize normal cell walls. In this study, two homologs of Kre6, namely, K6LP1 (Kre6-like protein 1) and K6LP2 (Kre6-like protein 2), were identified in Aureobasidium pullulans M-2 by draft genome analysis. The Δk6lp1, Δk6lp2, and Δk6lp1Δk6lp2 mutants were generated in order to confirm the functions of the Kre6-like proteins in A. pullulans M-2. The cell morphologies of Δk6lp1 and Δk6lp1Δk6lp2 appeared to be different from those of wild type and Δk6lp2 in both their yeast and hyphal forms. The productivity of the extracellular polysaccharides, mainly composed of β-(1 → 3),(1 → 6)-D-glucan (β-glucan), of the mutants was 5.1–17.3% less than that of wild type, and the degree of branching in the extracellular β-glucan of mutants was 14.5–16.8% lower than that of wild type. This study showed that the gene disruption of Kre6-like proteins affected the cell morphology, the productivity of extracellular polysaccharides, and the structure of extracellular β-glucan, but it did not have a definite effect on the cell viability even in Δk6lp1Δk6lp2, unlike in the Δkre6Δskn1 of S. cerevisiae.

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Summary

Summary

Background

This study examined the role of Kre6-like proteins in β-glucan synthesis in Aureobasidium pullulans, investigating how gene disruption of these enzymes affects glucan production and structure.

Key Findings

Disruption of Kre6-like proteins significantly altered the β-glucan production in Aureobasidium pullulans, affecting the degree of branching and molecular weight of the secreted polysaccharide. This revealed the enzymatic machinery responsible for β-1,6 side chain addition in AP-glucan biosynthesis.

Relevance to Aureobasidium Beta Glucan Research

Understanding the biosynthetic pathway of Aureobasidium pullulans β-glucan at the gene level enables rational strain engineering to optimize glucan structure for maximal immunostimulatory activity. This molecular biology research directly supports AP-glucan production improvement.

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Citation

Uchiyama, Hirofumi; Iwai, Atsushi; Dohra, Hideo; Ohnishi, Toshiyuki; Kato, Tatsuya; Park, Enoch Y.. The effects of gene disruption of Kre6-like proteins on the phenotype of β-glucan-producing Aureobasidium pullulans. Applied Microbiology and Biotechnology. 2018. DOI: 10.1007/s00253-018-8947-z.

Study Details
Study Type
Review
Published
2018
Journal
Applied Microbiology and Biotechnology
Authors
Uchiyama, Hirofumi; Iwai, Atsushi; Dohra, Hideo; Ohnishi, Toshiyuki; Kato, Tatsuya; Park, Enoch Y.
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