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Featured researches published by Soetijoso Soemitro.


Biologia | 2008

Proteolysis of α-amylase from Saccharomycopsis fibuligera: characterization of digestion products

Khomaini Hasan; Wangsa Tirta Ismaya; Idar Kardi; Yandi Andiyana; Safri Ishmayana; Toto Subroto; Soetijoso Soemitro

Abstractα-Amylase from Saccharomycopsis fibuligera R-64 was successfully purified by butyl Toyopearl hydrophobic interaction chromatography, followed by Sephadex G-25 size exclusion and DEAE Toyopearl anion exchange chromatography. The enzyme has a molecular mass of 54 kDa, as judged by SDS PAGE analysis. Upon tryptic digestion, two major fragments with relative molecular masses of 39 kDa and 10 kDa, which resemble the A/B and C-terminal domains in the homologous Taka-amylase, were obtained and were successfully separated with the Sephadex G-50 size exclusion column. The 39-kDa fragment demonstrated a similar amylolytic activity to that of the undigested enzyme. However, it was found that the Km value of the 39-kDa fragment was about two-times higher than that of the undigested enzyme. Moreover, thermostability studies showed a lower half-life time for the 39-kDa fragment. These findings suggest that the 39-kDa fragment is the catalytic domain, while the 10-kDa fragment is the C-terminal one, which plays a role in thermostability and starch binding. Although the undigested enzyme is able to act on raw starches at room temperature, with maize starches as the best substrate, neither the undigested enzyme nor the fragments adsorb the tested raw starches. These results propose Saccharomycopsis fibuligera α-amylase as a raw starch-digesting but not adsorbing amylase, with a similar domain organization to that of Taka-amylase A.


Biologia | 2011

Biochemical characterization of a glucoamylase from Saccharomycopsis fibuligera R64

Dessy Natalia; Keni Vidilaseris; Pasjan Satrimafitrah; Wangsa T. Ismaya; Purkan; Hjalmar P. Permentier; Guntur Fibriansah; Fernita Puspasari; Zeily Nurachman; Bauke W. Dijkstra; Soetijoso Soemitro

Glucoamylase from the yeast Saccharomycopsis fibuligera R64 (GLL1) has successfully been purified and characterized. The molecular mass of the enzyme was 56,583 Da as determined by mass spectrometry. The purified enzyme demonstrated optimum activity in the pH range of 5.6–6.4 and at 50°C. The activity of the enzyme was inhibited by acarbose with the IC50 value of 5 μM. GLL1 shares high amino acid sequence identity with GLU1 and GLA1, which are Saccharomycopsis fibuligera glucoamylases from the strains HUT7212 and KZ, respectively. The properties of GLL1, however, resemble that of GLU1. The elucidation of the primary structure of GLL1 contributes to the explanation of this finding.


Journal of Biotechnology | 2015

Effect of introducing a disulphide bond between the A and C domains on the activity and stability of Saccharomycopsis fibuligera R64 α-amylase.

Dessy Natalia; Keni Vidilaseris; Wangsa T. Ismaya; Fernita Puspasari; Iman Prawira; Khomaini Hasan; Guntur Fibriansah; Hjalmar P. Permentier; Zeily Nurachman; Toto Subroto; Bauke W. Dijkstra; Soetijoso Soemitro

Native enzyme and a mutant containing an extra disulphide bridge of recombinant Saccharomycopsis fibuligera R64 α-amylase, designated as Sfamy01 and Sfamy02, respectively, have successfully been overexpressed in the yeast Pichia pastoris KM71H. The purified α-amylase variants demonstrated starch hydrolysis resulting in a mixture of maltose, maltotriose, and glucose, similar to the wild type enzyme. Introduction of the disulphide bridge shifted the melting temperature (TM) from 54.5 to 56 °C and nearly tripled the enzyme half-life time at 65 °C. The two variants have similar kcat/KM values. Similarly, inhibition by acarbose was only slightly affected, with the IC50 of Sfamy02 for acarbose being 40 ± 3.4 μM, while that of Sfamy01 was 31 ± 3.9 μM. On the other hand, the IC50 of Sfamy02 for EDTA was 0.45 mM, nearly two times lower than that of Sfamy01 at 0.77 mM. These results show that the introduction of a disulphide bridge had little effect on the enzyme activity, but made the enzyme more susceptible to calcium ion extraction. Altogether, the new disulphide bridge improved the enzyme stability without affecting its activity, although minor changes in the active site environment cannot be excluded.


Archive | 2012

Chromatography as the Major Tool in the Identification and the Structure-Function Relationship Study of Amylolytic Enzymes from Saccharomycopsis Fibuligera R64

Wangsa Tirta Ismaya; Khomaini Hasan; Dessy Natalia Toto Subroto; Soetijoso Soemitro

© 2012 Ismaya et al., licensee InTech. This is an open access chapter distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Chromatography as the Major Tool in the Identification and the Structure-Function Relationship Study of Amylolytic Enzymes from Saccharomycopsis Fibuligera R64


Tetrahedron | 2004

Alkaloids from marine organisms. Part 8: Isolation of bisdemethylaaptamine and bisdemethylaaptamine-9- O -sulfate from an Indonesian Aaptos sp. marine sponge

Anthony J. Herlt; Lewis N. Mander; Wilson Ar Rombang; Rymond J. Rumampuk; Soetijoso Soemitro; Wolfgang Steglich; Ponis Tarigan; Franz von Nussbaum


Applied Biochemistry and Biotechnology | 2013

Chemical Modification of Saccharomycopsis fibuligera R64 α-Amylase to Improve its Stability Against Thermal, Chelator, and Proteolytic Inactivation

Wangsa Tirta Ismaya; Khomaini Hasan; Idar Kardi; Amalia Zainuri; Rinrin Irma Rahmawaty; Satyawisnu Permanahadi; Baiq Vera El Viera; Gunawan Harinanto; Shabarni Gaffar; Dessy Natalia; Toto Subroto; Soetijoso Soemitro


Procedia Chemistry | 2015

Effect of Isopropyl-β-D-thiogalactopyranoside Concentration on Prethrombin-2 Recombinan Gene Expression in Escherichia Coli ER2566☆

Pidinia Raeh Rizkia; Saronom Silaban; Khomaini Hasan; Dian S. Kamara; Toto Subroto; Soetijoso Soemitro; Iman Permana Maksum


Microbiology Indonesia | 2014

Codon Optimization and Chaperone Assisted Solubilization of Recombinant Human Prethrombin-2 Expressed in Escherichia coli

Saronom Silaban; Iman Permana Maksum; Shabarni Ghaffar; Khomaini Hasan; Sutarya Enus; Toto Subroto; Soetijoso Soemitro


Jurnal Pendidikan Kimia | 2017

Purification of Recombinant Human Pretrombin-2 in Escherichia coli for Thrombin Production as Fibrin Glue Components

Saronom Silaban; Iman Permana Maksum; Khomaini Hasan; Sutarya Enus; Toto Subroto; Soetijoso Soemitro


Indonesian Journal of Pharmaceutical Science and Technology | 2017

Ekspresi Prethrombin-2 Manusia Recombinan dalamPichia pastoris dan Optimasi Kondisi Ekspresinya

Shabarni Gaffar; Purba Upay; Iman Permana Maksum; Khomaini Hasan; Toto Subroto; Sutarya Enus; Soetijoso Soemitro; Wulan Pertiwi

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Dessy Natalia

Bandung Institute of Technology

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Fernita Puspasari

Bandung Institute of Technology

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