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Dive into the research topics where Haryati Jamaluddin is active.

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Featured researches published by Haryati Jamaluddin.


International Journal of Molecular Sciences | 2012

Structure Prediction, Molecular Dynamics Simulation and Docking Studies of D-Specific Dehalogenase from Rhizobium sp. RC1

Ismaila Yada Sudi; Ee Lin Wong; Kwee Hong Joyce-Tan; Mohd Shahir Shamsir; Haryati Jamaluddin; Fahrul Huyop

Currently, there is no three-dimensional structure of D-specific dehalogenase (DehD) in the protein database. We modeled DehD using ab initio technique, performed molecular dynamics (MD) simulation and docking of D-2-chloropropionate (D-2CP), D-2-bromopropionate (D-2BP), monochloroacetate (MCA), monobromoacetate (MBA), 2,2-dichloropropionate (2,2-DCP), D,L-2,3-dichloropropionate (D,L-2,3-DCP), and 3-chloropropionate (3-CP) into the DehD active site. The sequences of DehD and D-2-haloacid dehalogenase (HadD) from Pseudomonas putida AJ1 have 15% sequence similarity. The model had 80% of the amino acid residues in the most favored region when compared to the crystal structure of DehI from Pseudomonas putida PP3. Docking analysis revealed that Arg107, Arg134 and Tyr135 interacted with D-2CP, and Glu20 activated the water molecule for hydrolytic dehalogenation. Single residue substitutions at 25–30 °C showed that polar residues of DehD were stable when substituted with nonpolar residues and showed a decrease in activity within the same temperature range. The molecular dynamics simulation of DehD and its variants showed that in R134A variant, Arg107 interacted with D-2CP, while in Y135A, Gln221 and Arg231 interacted with D-2CP. It is our emphatic belief that the new model will be useful for the rational design of DehDs with enhanced potentials.


Biotechnology & Biotechnological Equipment | 2014

Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies

Ismaila Yada Sudi; Mohd Shahir Shamsir; Haryati Jamaluddin; Roswanira Abdul Wahab; Fahrul Huyop

The D-2-haloacid dehalogenase of D-specific dehalogenase (DehD) from Rhizobium sp. RC1 catalyses the hydrolytic dehalogenation of D-haloalkanoic acids, inverting the substrate-product configuration and thereby forming the corresponding L-hydroxyalkanoic acids. Our investigations were focused on DehD mutants: R134A and Y135A. We examined the possible interactions between these mutants with haloalkanoic acids and characterized the key catalytic residues in the wild-type dehalogenase, to design dehalogenase enzyme(s) with improved potential for dehalogenation of a wider range of substrates. Three natural substrates of wild-type DehD, specifically, monochloroacetate, monobromoacetate and D,L-2,3-dichloropropionate, and eight other non-natural haloalkanoic acids substrates of DehD, namely, L-2-chloropropionate; L-2-bromopropionate; 2,2-dichloropropionate; dichloroacetate; dibromoacetate; trichloroacetate; tribromoacetate; and 3-chloropropionate, were docked into the active site of the DehD mutants R134A and Y135A, which produced altered catalytic functions. The mutants interacted strongly with substrates that wild-type DehD does not interact with or degrade. The interaction was particularly enhanced with 3-chloropropionate, in addition to monobromoacetate, monochloroacetate and D,L-2,3-dichloropropionate. In summary, DehD variants R134A and Y135A demonstrated increased propensity for binding haloalkanoic acid and were non-stereospecific towards halogenated substrates. The improved characteristics in these mutants suggest that their functionality could be further exploited and harnessed in bioremediations and biotechnological applications.


Biotechnology & Biotechnological Equipment | 2014

Insights into the stereospecificity of the d-specific dehalogenase from Rhizobium sp. RC1 toward D-and L-2-chloropropionate

Ismaila Yada Sudi; Azzmer Azzar Abdul Hamid; Mohd Shahir Shamsir; Haryati Jamaluddin; Roswanira Abdul Wahab; Fahrul Huyop

Halogenated compounds are recalcitrant environmental pollutants prevalent in agricultural fields, waste waters and industrial by-products, but they can be degraded by dehalogenase-containing microbes. Notably, 2-haloalkanoic acid dehalogenases are employed to resolve optically active chloropropionates, as exemplified by the d-specific dehalogenase from Rhizobium sp. RCI (DehD), which acts on d-2-chloropropionate but not on its l-enantiomer. The catalytic residues of this dehalogenase responsible for its affinity toward d-2-chloropropionate have not been experimentally determined, although its three-dimensional crystal structure has been solved. For this study, we performed in silico docking and molecular dynamic simulations of complexes formed by this dehalogenase and d- or l-2-chloropropionate. Arg134 of the enzyme plays the key role in the stereospecific binding and Arg16 is in a position that would allow it to activate a water molecule for hydrolytic attack on the d-2-chloropropionate chiral carbon for release of the halide ion to yield l-2-hydroxypropionate. We propose that within the DehD active site, the NH group of Arg134 can form a hydrogen bond with the carboxylate of d-2-chloropropionate with a strength of ∼4 kcal/mol that may act as an acid–base catalyst, whereas, when l-2-chloropropionate is present, this bond cannot be formed. The significance of the present work is vital for rational design of this dehalogenase in order to confirm the involvement of Arg16 and Arg134 residues implicated in hydrolysis and binding of d-2-chloropropionate in the active site of d-specific dehalogenase from Rhizobium sp. RC1.


Renewable Energy | 2014

Biodiesel production via lipase catalysed transesterification of microalgae lipids from Tetraselmis sp

Chee Loong Teo; Haryati Jamaluddin; Nur Azimah Mohd Zain; Ani Idris


Pertanika journal of tropical agricultural science | 2012

Isolation of Metal Tolerant Bacteria from Polluted Wastewater

Haryati Jamaluddin; Dalila Mad Zaki; Zaharah Ibrahim


Applied Biochemistry and Biotechnology | 2014

Screening factors influencing the production of astaxanthin from freshwater and marine microalgae

Elda Nurafnie Binti Ibnu Rasid; Shaza Eva Mohamad; Haryati Jamaluddin; Madihah Md. Salleh


Archive | 2003

Biodegradation of phenol by locally isolated strains from petrochemical wastewater treatment plants

Piakong Mohd. Tuah; Haryati Jamaluddin; S. Hasila S. Hamzah; R. Haron; Adibah Yahya; Madihah Md. Salleh; Noor Aini Abdul Rashid


Asian Journal of Applied Sciences | 2017

Low-cost Biodiesel Production

Haruna Saidu; Haryati Jamaluddin; Koji Iwamoto; Madihah Md. Salleh; Adibah Yahya; Shaza Eva Mohama


Jurnal Teknologi (Sciences and Engineering) | 2014

Isolation and Characterization of Metal and Antibiotic Resistant Psychrotrophic Bacteria from Refrigerated Spoiled Food

Somayeh Asadi; Shafinaz Shahir; Zaharah Ibrahim; Adibah Yahya; Madihah Md. Salleh; Norahim Ibrahim; Haryati Jamaluddin; Mohd Firdaus Abdul Wahab; Fazilah Abd Manan; Huszalina Hussin; Chong Chun Shiong; Wan Rosmiza Zana Wan Dagang


Jurnal Teknologi (Sciences and Engineering) | 2013

Purification of a Fibrinolytic Enzyme from Bacillus Sp. Isolated from Budu

Nurulhanis Ahmad Sanusi; Haryati Jamaluddin

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Adibah Yahya

Universiti Teknologi Malaysia

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Madihah Md. Salleh

Universiti Teknologi Malaysia

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Shaza Eva Mohamad

Universiti Teknologi Malaysia

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Chun Shiong Chong

Universiti Teknologi Malaysia

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Fahrul Huyop

Universiti Teknologi Malaysia

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Ismaila Yada Sudi

Universiti Teknologi Malaysia

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Mohd Shahir Shamsir

Universiti Teknologi Malaysia

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Firdaus Abdul Wahab

Universiti Teknologi Malaysia

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Haruna Saidu

Universiti Teknologi Malaysia

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Huszalina Hussin

Universiti Teknologi Malaysia

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