PURIFICATION AND CHARACTERIZATION OF a-GLUCOSIDASE FROM MOSS HYOPHILLA NYMANIANA (FLEISH.) MENZEL

Authors

  • Rashmi Mishra Birla Institute of Technology, Mesra, Ranchi, India
  • Ramesh Chandra Birla Institute of Technology, Mesra, Ranchi, India

Abstract

Objective: The present study was undertaken to extract and purify α-glucosidase N-linked glycosylation enzyme from moss Hyophilla nymaniana
(Fleish.) Menzel.
Methods: Frozen protonemal cells were taken for crude enzyme extraction, and the enzyme α-glucosidase was purified from the prepared crude
enzyme extract by ammonium sulfate (NH
4
)
2
SO
4
precipitation, gel filtration and finally on diethylaminoethyl sephadex column chromatography.
Results: The final purification step of the enzyme resulted in 35 fold purification with a recovery of 4%. A single protein band of 72±5 kilodalton was
seen on 10% sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The physiochemical characterization of the enzyme reveled the enzyme had
a wide pH stability range 4-7 with optimum pH 5 while the temperature stability study revealed the enzyme was stable up to 60°C while the optimum
temperature of the purified enzyme was 45°C. The enzyme was strongly inhibited by Hg
2+
and Ag
2+
at 1 mM concentration while Mg
ions
enhanced the enzyme activity at the same concentration. The kinetic study of the enzyme showed K
m
and V
of the enzyme 5.2 mM/ml and 8.6 U/ml,
respectively.
Conclusion: The wide pH and temperature stability range show its suitability toward industrial application.
max
Keywords: α-glucosidase, Hyophilla nymaniana (Fleish.) Menzel. gel filtration, Diethylaminoethyl sephadex column chromatography.

Downloads

Download data is not yet available.

Author Biographies

Rashmi Mishra, Birla Institute of Technology, Mesra, Ranchi, India

Department of Bio-Engineering, Research scholar

Ramesh Chandra, Birla Institute of Technology, Mesra, Ranchi, India

Department of Bio-Engineering, Associate Professor

References

REFERENCES

Chiba S. Glucosidases. In: The Amylase Research Society of Japan,

editor. Handbook of Amylases and Related Enzymes. Oxford:

Pergamon Press; 1988. p. 104-5.

Chiba S. Molecular mechanism in alpha-glucosidase and glucoamylase.

Biosci Biotechnol Biochem 1997;61(8):1233-9.

Frandsen TP, Svensson B. Plant α-glucosidases of the glucoside

hydrolase family 31: Molecular properties, substrate specificity,

reaction mechanism, and comparison with family members of different

origin. Plant Mol Biol 1998;37:1-13.

Macgregor AW. Alpha-amylase, limit dextrinase, and alpha-glucosidase

enzymes in barley and malt. Crit Rev Biotechnol 1987;5(2):117-28.

Sun Z, Duke SH, Henson CA. The role of pea chloroplast [alpha]glucosidase

in

transitory

starch

degradation.

Plant

Physiol

;108(1):211-7.

Kaushal GP, Pastuszak I, Hatanaka K, Elbein AD. Purification

to homogeneity and properties of glucosidase II from mung bean

seedlings and suspension-cultured soybean cells. J Biol Chem

;265(27):16271-9.

Szumilo T, Kaushal GP, Elbein AD Purification and properties of

glucosidase I from mung bean seedlings. Arch Biochem Biophys

;247(2):261-71.

Kumar S, Narwal S, Kumar V, Prakash O. A-glucosidase inhibitors

from plants: A natural approach to treat diabetes. Pharmacogn Rev

;5(9):19-29.

Takahashi N, Shimomura T, Chiba S. Studies on glucosidase in

rice. Part I. Isolation and some properties of α-glucosidase I and

α-glucosidase II. Agric Biol Chem 1971;35:2015-24.

Kanaya KI, Chiba S, Shimomura T, Nishi K. Improved method for

purification of buckwheat α-glucosidase and some kinetic properties.

Agric Biol Chem 1976;40:1929-36.

Chiba S, Inomata S, Matsui H, Shimomura T. Purification and properties

of an α-glucosidase (glucoamylase) in sugar beet seeds. Agric Biol

Chem 1978;42:241-5.

Sugimoto M, Furui S, Suzuki Y. Multiple molecular forms of

α-glucosidase from spinach seeds, Spinacia oleracea L. Biosci

Biotechnol Biochem 1995;59:673-7.

Yamasaki Y, Suzuki Y. Purification and properties of three forms of

α-glucosidase from germinated green gram (Phaseolus vidissimus

Ten.). Agric Biol Chem 1979;43:481-9

Mishra R, Pandey KV, Chandra R. In vitro culture and phytochemical

analysis of the moss H. nymaniana (Fleish.). Menzel. Int J Phytomed

;6(3):277-83.

Laemmli UK, Favre M. Maturation of the head of bacteriophage T4. I.

DNA packaging events. J Mol Biol 1973;80(4):575-99.

Iwata H, Suzuki T, Aramaki I. Purification and characterization of

rice alpha-glucosidase, a key enzyme for alcohol fermentation of rice

polish. J Biosci Bioeng 2003;95(1):106-8.

Beers EP, Duke SH, Henson CA. Partial characterization and

subcellular localization of three alpha-glucosidase isoforms in pea

(Pisum sativum L.) seedlings. Plant Physiol 1990;94(2):738-44.

Frandsen TP. Structure/Function Studies of Exo-Acting Gluc-osyl

Hydrolases. Ph.D. Thesis, University of Odense, Odense, Denmark.

Peruffo AD, Renosto F, Pallavicini C. A-glucosidase from grape berries:

Partial purification and characterization. Planta 1978;142(2):195-201.

Oda Y, Iwamoto M, Hiromi K, Tonomura K. Purification and

characterization of α-glucosidase from Torulaspora pretoreinsis YK1.

Biosci Biotechnol Biochem 1993;57(11):1902-05.

Muslin EH, Clark SE, Henson CA. The effect of proline insertions

on the thermostability of a barley alpha-glucosidase. Protein Eng

;15(1):29-33.

Yamasaki Y, Suzuki Y. Two forms of - Glucosidase from sugar-beet

seeds. Planta 1980;148:354-61.

.Martino A, Schiraldi C, Fusco S, Di Lernia I, Costabile T, Pellicano T,

et al. Properties of the recombinant α-glucosidase from Sulfolobus

solfataricus in relation to starch processing. J Mol Cat B Enzyme

;11:787-94.

Berthelot K, Delmotte FM. Purification and characterization of an

α-glucosidase from Rhizobium sp. (Robinia pseudoacacia L.). Strain

USDA 4280. Appl Environ Microbiol 1999;65(7):2907-11.

Published

01-01-2016

How to Cite

Mishra, R., and R. Chandra. “PURIFICATION AND CHARACTERIZATION OF a-GLUCOSIDASE FROM MOSS HYOPHILLA NYMANIANA (FLEISH.) MENZEL”. Asian Journal of Pharmaceutical and Clinical Research, vol. 9, no. 1, Jan. 2016, pp. 179-82, https://journals.innovareacademics.in/index.php/ajpcr/article/view/9674.

Issue

Section

Original Article(s)