Literature DB >> 15909420

[Purification of lectin from perch (Persa fluviatilis L.) roe specific to cellobiose and study of its characteristics].

V O Antoniuk.   

Abstract

Two lectins with different carbohydrate specificity were purified from perch (Persa fluviatilis L.) roe (coastal ecological form) by affinity chromatography on ovariomucine H-sepharose from a human ovary cyst. One lectin was eluted by cellobiose and another lectin was eluted by L-fucose. The L-fucose-specific lectin interacted only with L-fucose and its derivatives, but did not interact with cellobiose and salicin. The cellobiose-specific lectin interacted with all the examined carbohydrates, but cellobiose was the best inhibitor. This lectin can be also purified on cellulose as an affinity sorbent. Unlike the L-fucose-specific lectin from perch roe, the cellobiose-specific lectin is less soluble in water-saline solutions. Lectin solubility increases greatly in presence of specific inhibitors, cellobiose, in particular. L-fucose, alpha-methyl-L-fucopyranoside and 4-nitrophenyl-alpha-L-fucopyranoside are equivalent inhibitors for both lectins. According to SDS-PAGE data, the lectins contain two components with molecular weight 12-13 kDa. In solutions, these components form molecules with 50 or 100 kDa (depending on pH). Data obtained from electrophoresis in PAAG in alkaline (pH 8.9) and acidic system (pH 4.3), and SDS-PAGE did not display essential distinctions between these both lectins.

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Year:  2004        PMID: 15909420

Source DB:  PubMed          Journal:  Ukr Biokhim Zh (1999)


  1 in total

1.  Visualization of melanoma tumor with lectin-conjugated rare-earth doped fluoride nanocrystals.

Authors:  Tetiana Dumych; Maxym Lutsyk; Mateusz Banski; Antonina Yashchenko; Bartlomiej Sojka; Rostyslav Horbay; Alexander Lutsyk; Rostyslav Stoika; Jan Misiewicz; Artur Podhorodecki; Rostyslav Bilyy
Journal:  Croat Med J       Date:  2014-06-01       Impact factor: 1.351

  1 in total

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