Skip to main content
SleepCited

Purification and Characterization of Hyaluronidase From Streptomyces graminisoli.

Doha Nassir, Dalia A El-Ebeedy, Osama A M Said, Omar S Keshk, Seham Sater Alhelaify et al.
Other Biotechnology and applied biochemistry 2025
PubMed DOI
<\/script>\n
`; }, get iframeSnippet() { const domain = 'sleepcited.com'; const params = 'pmid\u003D40462570'; return ``; }, get activeSnippet() { return this.method === 'script' ? this.scriptSnippet : this.iframeSnippet; }, copySnippet() { navigator.clipboard.writeText(this.activeSnippet).then(() => { this.copied = true; setTimeout(() => { this.copied = false; }, 2000); }); } }" @keydown.escape.window="open = false" @click.outside="open = false">

Embed This Widget

Style



      
      
    

Widget powered by . Free, no account required.

Study Design

研究タイプ
In Vitro
対象集団
Streptomyces graminisoli isolate
介入
Purification and Characterization of Hyaluronidase From Streptomyces graminisoli. None
比較対照
None
主要アウトカム
Hyaluronidase enzyme characterization
効果の方向
Mixed
バイアスリスク
Unclear

Abstract

Hyaluronidases (HAase) are a family of hydrolytic enzymes that degrade hyaluronic acid (HA) and have gained significant attention in medical and pharmaceutical applications. This study presents an optimized approach for isolating and characterizing a novel HAase-producing actinomycete strain. Using HA-supplemented minimal salt medium (MSM) as the sole carbon and nitrogen source, we isolated and identified Streptomyces graminisoli by 16S-rRNA sequencing. The enzyme was purified using an improved DEAE-Sephadex G50 column chromatography method, yielding a molecular weight of 35 kDa. Kinetic analysis results revealed a Km value of 0.28 mg/mL and a Vmax value of 24.9 U/mL, indicating high substrate affinity. The results of advanced bioinformatics analysis using both nucleotide (Basic Local Alignment Search Tool nucleotide [BLASTN]) and amino acid (Basic Local Alignment Search Tool protein [BLASTP]) sequences demonstrated significant conservation across actinomycetes, with sequence identity and query coverage exceeding 75% and 90%, respectively. This study provides new insights into microbial HAase production and characterization, with potential applications in biotechnology and medicine.

要約

New insights are provided into microbial HAase production and characterization, with potential applications in biotechnology and medicine, and both nucleotide and amino acid sequences demonstrated significant conservation across actinomycetes.

Used In Evidence Reviews

Similar Papers