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Ikbal Gazalba
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2005
S31327
UI - Skripsi Membership  Universitas Indonesia Library
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Uswatun Hasanah
"ABSTRAK
NANA liase adalah enzim yang mengkatalisis proses reversibel Nacetyl neuraminic acid (NeuSAc) atau asam sialat menjadi N-acetyl mannosamin (ManNAc) dan piruvat. Enzim NANA liase dihasilkan oleh bakteri patogen dan non patogen, antara lain dari Clostridium perfringens,
Escherichla coii dan HaemophHus inHuenzae. Untuk mendapatkan enzim NANA liase dalam jumlah yang besar perlu dilakukan studi tentang rekayasa genetika. Pada penelitian sebelumnya telah dilakukan kloning teitiadap gen nanA dari Lactobacilius plantarum. Tujuan jangka panjang dari penelitian sebelumnya adalah rekayasa protein dengan mutasi pada segmen DNA. Rekayasa protein dengan mutasi pada segmen DNA dibutuhkan sedikitnya dua gen yang berbeda. Oleh karenanya dibutuhkan gen lain, sebagai pasangan dari gen nanA-Lplantarum. Penelitian ini terfokus untuk mengkonstruksi vektor gen penyandi enzim NANA liase dari bakteri Escherichla coli. Gen nanA dari E.co//dipilih
sebagai pasangan gen nanA-Lplantarum karena gen nanA dari E.coli telah terkarakterisasi dengan baik. Penelitian ini menggunakan metode Isolasi DNA dengan CTAB, amplifikasi PGR dan teknik kloning. Isolasi DNA dengan CTAB dilakukan untuk mendapatkan DNA dari E.coli. Teknik PGR dilakukan untuk mengamplifikasi gen yang menyandi enzim NANA liase, dimana
menggunakan primer forward yang memiliki situs pemotongan terha(;lap EcoRI dan primer reverse yang memiliki situs pemotongan terhadap Hindlli Sedangkan teknik kloning, yang terdiri dari ligasi, transformasi dan seleksi bertujuan untuk mendapatkan vektor ekspresi yang tersisipi gen penyandi enzim NANA liase. Teknik amplifikasi PGR yang dilakukan berhasil mengampiifikasi gen penyandi enzim NANA liase, nan A (0,9 kb) yang memiliki situs pemotongan EcoRI dan HindWl Gen yang didapat disisipkan ke dalam vektor ekspresi pTrcSSA (4,1 kb), selanjutnya ditransformasi ke dalam E.coli DH5a dan menghasilkan 35 transforman. Transfonman yang dihasilkan diambil 7 koloni untuk dikonfirmasi dengan elektroforesis gel agarosa, dan
temyata terdapat tiga koloni yang tersisipi pTrc99A-nani E.coii (E/H) (5,0 kb). Selanjutnya dari tiga koloni tersebut diambil satu koloni dan diuji kembali
dengan teknik PGR. Pada penelitian ini dilakukan uji sekuen yang bertujuan untuk memastikan tidak terjadinya mutasi selama pengerjaan. Sekuen gen yang didapat telah dikonfirmasi dan ternyata tidak berbeda dengan sekuen
gen yang dipublikasikan. Hal ini membuktikan bahwa tidak terjadinya mutasi selama pengerjaan. Vektor yang dihasilkan dapat digunakan untuk eksperimen berikutnya yaitu (a) produksi enzim rekombinan NANA liase, dan (b) sebagai pasangan gen nanA dari LactobaciHus plantarum untuk rekayasa protein dengan mutasi segmen DNA."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam. Universitas Indonesia, 2005
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Irwan Saputra
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2005
T40167
UI - Tesis Membership  Universitas Indonesia Library
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Marina Setiawati
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2005
T40169
UI - Tesis Membership  Universitas Indonesia Library
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Hadhimulya Asmara
"Penelitian ini merupakan usaha untuk mengembangkan suatu metode baru dalam mendeteksi HIV. Teknik deteksi yang biasa digunakan adalah RT-PCR dari sampel berupa RNA, Tujuan dari penelitian ini adalah untuk mengaplikasikan pengembangan metode amplifikasi DNA, LAMP (Loop-Mediated Isothermal Amplification), untuk menggantikan RT-PCR, karena metode LAMP ini dinilai lebih spesifik, sensitif, dan efisien.
Reaksi LAMP telah dilakukan pada isolat RNA yang sebelumnya telah di-reverse transcription (RT) dan dikonfirmasi dengan PCR. Reaksi tersebut menggunakan enzim Bs/ DNA polimerase dan reaksinya berlangsung pada suhu 65°C. Hasil reaksi tersebut telah dikonfirmasi dengan elektroforesis dan menunjukkan ketiadaan pita hasil amplifikasi yang diharapkan. Argumentasi yang paling memungkinkan dari hasil reaksi ini antara lain, adalah kondisi kemurnian sampel, kondisi reaksi yang tidak optimal untuk reaksi LAMP, dan rancangan primer. Reaksi LAMP juga akan dilakukan pada bagian dari sekuens gen gag yang terletak pada nukleotida nomor 905-1081 dan telah diklon pada vektor pGEM-T serta telah dikonfirmasi dengan sekuensing DNA. Hasil sekuensing menunjukkan sekuens yang sama dengan data gene bank dengan ukuran yang sesuai dengan ukuran target primer komersial, yaitu sebesar 155 pb dan akan digunakan sebagai template untuk reaksi LAMP.
Kesimpulan penelitian ini adalah metode LAMP helum berhasil dikembangkan untuk deteksi HIV. Rancangan primer dan kondisi reaksi adalah hal-hal yang penting dalam metode LAMP dan harus ditingkatkan untuk keberhasilan reaksi ini.

This study was attempted to develop a new method for HIV detection. The technique that is usually used is RT-PCR for RNA detection. This research aims to apply the recently developed DNA amplification method, LAMP (Loop-Mediated Isothermal Amplification), instead of RT-PCR as this method is more specific, sensitive, and efficient.
The LAMP reaction is done on RNA isolates that have been confirmed by PCR to contain HIV RNA. This reaction has been performed at 65°C using Bst DNA polymerase after doing reverse transcription. The result showed that LAMP on RNA isolates did not result in amplification as confirmed by electrophoresis. Most probable reasons for these results are the impurity of the sample, the conditions of the reactions that are not optimal for the LAMP reaction, and the design of the primer. LAMP was also performed on a part of a gag genes sequences on nucleotides number 905-1081 that has been cloned onto a pGEM-T vector and then sequenced for confirmation. The result of DNA sequence showed the same sequence as reported in Gene Bank data, with a size similar to a commercial primary target, i.e. 155 bp and will consequently be used as a template for the LAMP reaction.
The conclusions of this study are the LAMP method has not developed yet for HIV detection. The design of the primer and the conditions of the reactions in the LAMP method are the important things for the successful of this reaction, need to be improved.
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Jakarta: Fakultas Kedokteran Universitas Indonesia, 2005
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Andriani Setyowati
"Transduksi sinyal merupakan proses penyampaian informasi dari luar
sel sampai ke dalam inti sel melewati protein-protein yang bekerja secara
berantai. ERK2 termasuk dalam golongan enzim MAP Kinase yang berada
dalam rantai bagian atas proses transduksi sinyal. STAT3 adalah protein
yang berada paling bawah dalam proses ini yang punya kemampuan
berikatan dengan DNA untuk dapat mengatur ekspresi gen yang dikode DNA
itu. STAT3 dan ERK2 berasal dari sel eukariot. Untuk mempelajari aspek
biokimia dan biofisika diperlukan protein STAT3 dan ERK2 dalam jumlah
banyak yang dapat diperoleh dengan menggunakan DNA rekombinan.
Organisme yang membawa DNA rekombinan akan mensintesis protein.
Tujuan dari penelitian ini adalah melakukan ekspresi protein rekombinan
transduksi sinyal STAT3 dan ERK2 dengan menggunakan IPTG sebagai
induser dalam E. coli DH5 dalam skala produksi 500 mL. Untuk
mendapatkan proteinnya, maka sel pelet bakteri harus dipecah. Supernatan
yang didapat dipurifikasi (dimurnikan ) dengan menggunakan kolom terbuka
metode kromatografi penukar anion (DEAE- Sepharose) dan kromatografi
kolom hidrofobik (Phenyl -Sepharose ). Hasil elusi selanjutnya dikonfirmasi
dengan menggunakan SDS ? PAGE. Dari hasil percobaan, protein
rekombinan STAT3 dan ERK2 berhasil diekspresikan dalam sel inang E.coli
DH5 dan berada dalam supernatan. Pita rekombinan STAT3 dengan berat molekul sebesar  66 kDa dan ERK2 sebesar  41 kDa yang telah
dimurnikan dengan matriks DEAE-Sepharose dan Phenyl-Sepharose belum
dalam bentuk pita tunggal."
Depok: [Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, ], [2005, 2005]
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Suwarti
"Oxydoreductases are enzymes which catalyze oxidation-reduction reaction of their corresponding substrates. Oxydoreductase enzymes from many microorganisms had become major focus of research during last decades. This reaction had been utilized in biosensor (Yuhashi et al. 2005), biotransformation and biofuel (Zu et al. 2006). In the field of biosensor, glucose dehydrogenase application as self-blood glucose monitoring had evolved through several generation to enhance its sensitivity and specificity (Witarto et al. 1997).
Oxydoreductase involve cofactor in their active sites. According to Anthony (1996) among several known cofactors such nicotinamide, flavonoid, and quinone, Pyrollo Quinoline Qinone (PQQ) as the member group of quinon is one of the latest known-cofactors. PQQ differs from other cofactor since it is not covalently bond to its enzyme (Oubrie et al. 1999). PQQ ubiquitously found in all organisms from prokaryote to eukaryote (Bishop et al. 1998). Bacteria is the largest group of PQQ-oxydoreductase producing microorganisms. They successfully isolated from many habitats such: soil, water (Toyama et al. 1995), fruits (Adachi et al. 2003), plants, and in human mouth (Anesti et al. 2005). However, study on PQQ-oxydoreductase producing bacteria isolation had never been reported in Indonesia.
PQQ-Oxydoreductase bacteria are able to utilize organic substrates such glucose, ethanol, methanol, up to polyvinyl alcohol (Ameyama et al. 1985). One of the habitats which provides such organic substrates is Situ Agathis located in University of Indonesia Depok. Situ Agathis contain humic substances that could be degraded in to glucose, ethanol, methanol, also quinone.
In this study, isolation of oxydoreductase-producing bacteria from Situ Agathis University of Indonesia, Depok and characterization of oxydroreductases of selected isolates were performed. The objectives of this research are: to investigate the presence of oxydoreductase-producing bacteria, to isolate the oxydoreductases -producing bacteria, and to partially characterize oxydoreductases from Situ Agathis University of Indonesia Depok. This is the first study on bacteria isolation performed in Situ Agathis UI, Depok. Hence, this study can provide information about the oxydoreductases- producing bacteria from Situ Agathis, which located in UI, Depok. The study consists of two part: first part describe the isolation of oxydoreductase-producing bacteria from Situ Agathis. Second part describe the partial characterization of oxydoreductases which covers enzyme activity, molecular weight, and PQQ effects on the enzymes activity.
The research was carried out at the Protein Engineering Laboratory, Biotechnology Research Centre, Indonesian Institute of Science, Cibinong and the Laboratory of Microbiology, Department of Biology, University of Indonesia, Depok during February ? September 2007. The isolation of bacteria was conducted in three methods i.e : dilution, filtration using filter paper Milipore membran (0.2 μm) based on Cappucino and Sherman (2002). Isolation of oxydoreductase-producing bacteria was carried out by using selective media based on Toyama et al. (1995). The assay of oxydoreductases was performed by using Native-PAGE based on Khodijah (2002).
The result showed that 83 isolates were obtained from Situ Agathis which we assumed could produce oxydoreductase enzymes. Among those isolates, 15 isolates were randomly selected for further study e.g : five isolates which could grow in glucose as sole carbon sources by producing glucose dehdyrogenase, six isolates which could grow on ethanol as sole carbon sources by producing ethanol dehydrogenase and four isolates which could grow on methanol as sole carbon sources by producing methanol dehydrogenase. The selected isolates showed various morphotypes indicating no specific morphological character in oxydoreductase-producing bacteria.
Two oxydoreductases from selected isolates were selected to be analyzed further in second part this thesis. Those enzymes were examined for their possibility to have intracellular PQQ cofactor. Those enzymes were obtained from isolate G1H1D30 (glucose dehydrogenase) and isolate A1H2D60 (ethanol dehydrogenase). Native-PAGE result confirmed that crude extract fraction, dialyzed fraction and elution of open column chromatography of isolate G1H1D30 can produce glucose dehydrogenase and isolate A1H2D60 can produce ethanol dehdyrogenase. The molecular weight of glucose dehydrogenase subunit is about 46 kDa using SDS-PAGE.
SDS-PAGE of ethanol dehydrogenase did not show any protein band in acrylamide gel. We assumed that the amount of protein extracted from cell cytoplasm was not sufficient enough to be detected in SDS-PAGE. Cell of isolate A1H2D60 should be treated by other destruction method such as French pressure or ultrasonicator since this isolate is Gram positive bacteria which had thicker peptydoglycan layer than isolate G1H1D30 which is Gram negative bacteria.
Other characterization performed was addition of PQQ as the cofactor to investigate its effect on enzymes activity. Glucose dehydrogenase from isolate G1H1D30 was known to be PQQ dependent enzymes from its activity increased after addition of PQQ. The addition of PQQ raised the indicating no specific morphological character in oxydoreductase-producing bacteria.
Two oxydoreductases from selected isolates were selected to be analyzed further in second part this thesis. Those enzymes were examined for their possibility to have intracellular PQQ cofactor. Those enzymes were obtained from isolate G1H1D30 (glucose dehydrogenase) and isolate A1H2D60 (ethanol dehydrogenase). Native-PAGE result confirmed that crude extract fraction, dialyzed fraction and elution of open column chromatography of isolate G1H1D30 can produce glucose dehydrogenase and isolate A1H2D60 can produce ethanol dehdyrogenase. The molecular weight of glucose dehydrogenase subunit is about 46 kDa using SDS-PAGE.
SDS-PAGE of ethanol dehydrogenase did not show any protein band in acrylamide gel. We assumed that the amount of protein extracted from cell cytoplasm was not sufficient enough to be detected in SDS-PAGE. Cell of isolate A1H2D60 should be treated by other destruction method such as French pressure or ultrasonicator since this isolate is Gram positive bacteria which had thicker peptydoglycan layer than isolate G1H1D30 which is Gram negative bacteria.
Other characterization performed was addition of PQQ as the cofactor to investigate its effect on enzymes activity. Glucose dehydrogenase from isolate G1H1D30 was known to be PQQ dependent enzymes from its activity increased after addition of PQQ. The addition of PQQ raised theindicating no specific morphological character in oxydoreductase-producing bacteria.
Two oxydoreductases from selected isolates were selected to be analyzed further in second part this thesis. Those enzymes were examined for their possibility to have intracellular PQQ cofactor. Those enzymes were obtained from isolate G1H1D30 (glucose dehydrogenase) and isolate A1H2D60 (ethanol dehydrogenase). Native-PAGE result confirmed that crude extract fraction, dialyzed fraction and elution of open column chromatography of isolate G1H1D30 can produce glucose dehydrogenase and isolate A1H2D60 can produce ethanol dehdyrogenase. The molecular weight of glucose dehydrogenase subunit is about 46 kDa using SDS-PAGE.
SDS-PAGE of ethanol dehydrogenase did not show any protein band in acrylamide gel. We assumed that the amount of protein extracted from cell cytoplasm was not sufficient enough to be detected in SDS-PAGE. Cell of isolate A1H2D60 should be treated by other destruction method such as French pressure or ultrasonicator since this isolate is Gram positive bacteria which had thicker peptydoglycan layer than isolate G1H1D30 which is Gram negative bacteria.
Other characterization performed was addition of PQQ as the cofactor to investigate its effect on enzymes activity. Glucose dehydrogenase from isolate G1H1D30 was known to be PQQ dependent enzymes from its activity increased after addition of PQQ. The addition of PQQ raised theenzyme activity to eight fold from 0.102 U/mL to 0.94 U/mL of crude enzyme extract. In contrast, addition of PQQ did not give significant effect to EDH enzyme activity (activity of crude enzyme remain 0.082 U/mL in the presence and absence of PQQ). However, further study should be performed to analyze the real cofactor of EDH from isolate A1H2D60. EDH differs from GDH since it had disulphide ring which stabilize PQQ bound to its enzyme.
Hence, PQQ could remain bound to EDH as purification procedure performed. PQQ-GDH do not have any disulphide ring which could stabilize PQQ bound. This fact implicated unstable PQQ bound to GDH while isolation and purification performed."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2008
T39491
UI - Tesis Open  Universitas Indonesia Library
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Winna Putri Meirita
"Telah dilakukan penelitian mengenai identifikasi protein alergen serbuk sari akasia (Acacia auriculiformis dan Acacia mangium) dan kelapa sawit (Elaeis guineensis Jacq.). Tujuan penelitian adalah mengidentifikasi protein alergen serbuk sari tanaman Acacia auriculiformis, Acacia mangium, dan kelapa sawit. Ekstrak protein sampel serbuk sari menunjukkan hasil negatif pada uji dot blotting karena konsentrasi protein sampel rendah. Protein serbuk sari kelapa sawit dengan berat molekul (BM) 31 kDa diduga sebagai alergen utama karena bereaksi positif terhadap > 80% serum individu alergi maupun individu normal. Individu normal bereaksi positif terhadap protein tersebut diduga karena faktor atopi.

The research was about identification of allergenic pollen protein from acacia (Acacia auriculiformis and Acacia mangium) and oil palm (Elaeis guineensis Jacq.). The aim of the research was to identify allergenic pollen protein from Acacia auriculiformis, Acacia mangium, and oil palm. Protein extract of pollen sample which was extracted by phenol extract method showed negative result in dot blotting assay because protein concentration of sample was low. Oil palm pollen protein with 31 kDa molecular weight was suspected as major allergen because it showed positive reaction to >80% of serum either allergy or normal individual. Normal individual which showed positive reaction to the protein was suspected cause of atopy."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2012
S43078
UI - Skripsi Open  Universitas Indonesia Library
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Rizky Priambodo
"ABSTRAK
Kelapa sawit merupakan tanaman perkebunan yang banyak dibudidayakan di Indonesia, dengan luas sekitar 11 juta hektar pada tahun 2014. Serbuk sari kelapa sawit memiliki potensi alergi yang cukup besar, karena memiliki ukuran relatif kecil, berjumlah relatif banyak, dan bersifat anemofili.
Penelitian ini bertujuan untuk mengetahui karakter kandidat protein alergen serbuk sari kelapa sawit melalui metode SDS-PAGE dan Western Blotting, serta mengetahui aktivitas IgA, IgE, IgG, IgM, dan IFN-γ pada sel Peripheral Blood Mononuclear Cell (PBMC) terhadap induksi protein serbuk sari kelapa sawit yang dilakukan secara in vitro. Penelitian diawali dengan ekstraksi protein serbuk sari kelapa sawit, yang berasal dari beberapa wilayah di Indonesia. Berat molekul protein dianalisis dengan metode SDS-PAGE, serta uji kealergenikan kandidat protein alergen diuji dengan menggunakan 21 serum pasien alergi melalui metode Western Blotting. Protein serbuk sari kelapa sawit juga diinduksikan pada kultur sel PBMC. Proses pendeteksian IgA, IgE, IgG, IgM, dan IFN-γ dilakukan menggunakan metode ELISA. Berat molekul protein serbuk sari kelapa sawit diketahui berukuran 10?80 kDa.
Hasil uji kealergenikan protein tersebut pada Western Blotting menunjukkan kandidat protein alergen memiliki ukuran 14 kDa, 15 kDa, 20 kDa dan 31 kDa. Aktivitas beberapa immunoglobulin dan sitokin berhasil terdeteksi. Konsentrasi IgA didapatkan sebesar 0,022 pg/ml, IgE sebesar 9,655 pg/ml, IgG sebesar 39,856 pg/ml, IgM sebesar 10,369 pg/ml, dan IFN-γ sebesar 2.617,240 pg/ml.

ABSTRACT
Oil palm is a plant that widely cultivated in Indonesia, with an area of about 11 million hectares in 2014. Oil palm pollen is potential to caused allergy, because it has a small size, much in amount, and was dispersed by wind.
This study aims to determine the character of the allergen protein candidate from oil palm pollen by using SDS-PAGE and Western Blotting, and also to know the activity of IgA, IgE, IgG, IgM, and IFN-γ against exposure to oil palm pollen protein performed in vitro on Peripheral Blood Mononuclear Cell (PBMC). The study begins with the protein extraction from oil palm pollen, which is derived from several regions in Indonesia. The molecular weight of these proteins are analyzed using SDS-PAGE. Allergenic test of allergen protein candidates were tested using 21 serum of allergic patients through Western Blotting method. Oil palm pollen protein also induced in PBMC cultures. The detection of IgA, IgE, IgG, IgM, and IFN-γ were performed using ELISA. The molecular weight of oil palm pollen protein is about 10?80 kDa.
Allergenic test results through Western Blotting showed the allergen protein candidates have a size of 14 kDa, 15 kDa, 20 kDa and 31 kDa. Immunoglobulin and cytokine activity successfully detected. The IgA concentrations obtained 0.022 pg/ml, IgE obtained 9.655 pg/ml, IgG obtained 39.856 pg/ml, IgM obtained 10.369 pg/ml, and IFN-γ obtained 2,617.240 pg /ml.
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Depok: Universitas Indonesia, 2015
T44879
UI - Tesis Membership  Universitas Indonesia Library