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Molecular architecture of silk fibroin of Indian golden silkmoth, Antheraea assama. | LitMetric

Molecular architecture of silk fibroin of Indian golden silkmoth, Antheraea assama.

Sci Rep

1] Centre of Excellence for Genetics and Genomics of Silkmoths, Laboratory of Molecular Genetics, Centre for DNA Fingerprinting and Diagnostics, Hyderabad 500001, India [2] Deceased.

Published: August 2015

AI Article Synopsis

  • The Indian golden silkmoth produces a highly valued golden silk, thanks to the unique properties of the gene coding for H-fibroin (AaFhc), which is explored in this report.
  • The AaFhc gene features a coding region filled with repetitive sequences and is expressed solely in the posterior silk gland, producing a large protein that forms the silk's fibrous core.
  • The research also highlights key structural motifs within AaFhc that contribute to the silk's exceptional strength and luster, indicating that comparative analysis with related proteins shows distinctive features that enhance its overall quality.

Article Abstract

The golden silk spun by Indian golden silkmoth Antheraea assama, is regarded for its shimmering golden luster, tenacity and value as biomaterial. This report describes the gene coding for golden silk H-fibroin (AaFhc), its expression, full-length sequence and structurally important motifs discerning the underlying genetic and biochemical factors responsible for its much sought-after properties. The coding region, with biased isocodons, encodes highly repetitious crystalline core, flanked by a pair of 5' and 3' non-repetitious ends. AaFhc mRNA expression is strictly territorial, confined to the posterior silk gland, encoding a protein of size 230 kDa, which makes homodimers making the elementary structural units of the fibrous core of the golden silk. Characteristic polyalanine repeats that make tight β-sheet crystals alternate with non-polyalanine repeats that make less orderly antiparallel β-sheets, β-turns and partial α-helices. Phylogenetic analysis of the conserved N-terminal amorphous motif and the comparative analysis of the crystalline region with other saturniid H-fibroins reveal that AaFhc has longer, numerous and relatively uniform repeat motifs with lower serine content that assume tighter β-crystals and denser packing, which are speculated to be responsible for its acclaimed properties of higher tensile strength and higher refractive index responsible for golden luster.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4522600PMC
http://dx.doi.org/10.1038/srep12706DOI Listing

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