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Comprehensive analysis of the venom gland transcriptome of the spider Dolomedes fimbriatus
被引:0
|作者:
Sergey A. Kozlov
Vassili N. Lazarev
Elena S. Kostryukova
Oksana V. Selezneva
Elena A. Ospanova
Dmitry G. Alexeev
Vadim M. Govorun
Eugene V. Grishin
机构:
[1] Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry,
[2] Russian Academy of Sciences ul. Miklukho-Maklaya,undefined
[3] 16/10,undefined
[4] Scientific Research Institute of Physical-Chemical Medicine of the Federal Medical and Biological Agency of Russian Federation,undefined
[5] 1a,undefined
[6] Malaya Pirogovskaya st.,undefined
[7] Moscow Institute of Physics and Technology,undefined
[8] Dolgoprudny,undefined
来源:
Scientific Data
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摘要:
A comprehensive transcriptome analysis of an expressed sequence tag (EST) database of the spider Dolomedes fimbriatus venom glands using single-residue distribution analysis (SRDA) identified 7,169 unique sequences. Mature chains of 163 different toxin-like polypeptides were predicted on the basis of well-established methodology. The number of protein precursors of these polypeptides was appreciably numerous than the number of mature polypeptides. A total of 451 different polypeptide precursors, translated from 795 unique nucleotide sequences, were deduced. A homology search divided the 163 mature polypeptide sequences into 16 superfamilies and 19 singletons. The number of mature toxins in a superfamily ranged from 2 to 49, whereas the diversity of the original nucleotide sequences was greater (2–261 variants). We observed a predominance of inhibitor cysteine knot toxin-like polypeptides among the cysteine-containing structures in the analyzed transcriptome bank. Uncommon spatial folds were also found.
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