PubMed İndeksli Yayınlar Koleksiyonu / PubMed Indexed Publications Collection

Permanent URI for this collectionhttps://hdl.handle.net/11147/7645

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  • Article
    Citation - WoS: 11
    Türkiye’de Kutanöz Leyşmanyazis Etkeni Leishmania Tropica’da Antimon Direnç Mekanizmasının Belirlenme
    (Ankara Mikrobiyoloji Derneği, 2020) Özbilgin, Ahmet; Zeyrek, Fadile Yıldız; Güray, Melda Zeynep; Çulha, Gülnaz; Akyar, Işın; Harman, Mehmet; Gündüz, Cumhur
    Dünya Sağlık Örgütü, yaklaşık bir milyar insanın endemik bölgelerde risk altında olduğunu, son beş yıl içinde bir milyon kutanöz leyşmanyazis (KL) olgusunun ve yılda yaklaşık 300.000 viseral leyşmanyazis (VL) olgusunun olduğunu bildirmektedir. Her yıl yaklaşık 20.000 kişinin VL’ye bağlı öldüğü bilinmektedir. Türkiye’de Leishmania tropica’nın ve Leishmania infantum’un neden olduğu KL’de yılda 2500 civarında olgu bildirilmektedir. Başta Akdeniz ve Ege Bölgesi illerinde olmak üzere diğer birçok ilde son yıllarda ortaya çıkan olgu ve odaklarda önemli oranda artış görülmesi önümüzdeki yıllarda enfeksiyon hızının yükseleceğini göstermektedir. Ülkemizdeki KL’nin ana etkeni L.tropica olup tedavide meglumin antimonat kullanılmaktadır. Bu çalışmada, antimona dirençli ve dirençli olmayan L.tropica izolatlarının gen ve protein ekspresyonları karşılaştırılarak L.tropica’ya özgü antimon direnç genlerinin saptanması amaçlanmıştır. Ülkemizin Ege, Akdeniz ve Güneydoğu bölgelerinden antimonat direnci bulunmayan 3 KL hastasından elde edilmiş L.tropica izolatlarında, laboratuvar ortamında meglumin antimonata karşı 3 dirençli izolat geliştirilmiştir. Bu izolatların mikroarray yöntemi ile gen ekspresyon değişimleri, 2 boyutlu jel elektroforezi ile protein profilleri ve MALDI-TOF/TOF MS ile ilgili proteinleri tanımlanarak birbirleriyle karşılaştırma yapılmıştır. Antimon tedavisine yanıt vermemiş 10 KL hastasından elde edilmiş L.tropica izolatlarına antimon bileşiklerine yönelik direnç testleri uygulanmış ve direnç gelişiminden sorumlu genlerin ekspresyonlarını saptamak amacıyla kantitatif gerçek zamanlı polimeraz zincir reaksiyonu uygulanmıştır. Ayrıca, protein profilleri karşılaştırılarak antimon direnci olan ve olmayan izolatlardaki protein ekspresyon düzeylerindeki farklılıklar belirlenmiş ve farklılık saptanan proteinlerin tanımlanması gerçekleştirilmiştir. Bu çalışmalar sonucunda, L.tropica izolatlarının antimon bileşiklerine karşı direnç geliştirilen izolatlarında, direnç geliştirmesinde enolaz, “Elongation factor-2 (EF-2)”, “Heat shock protein 70 (HSP 70)”, tripanotyon redüktaz, protein kinaz C ve metalo-peptidaz proteinlerinin rol oynadığı saptanmış ve hastalardan alınan doğal dirençli izolatlarda da benzer ekspresyon değişimi gösterilmiştir. Sonuç olarak, ülkemizdeki L.tropica izolatlarının deneysel olarak çok kısa sürede meglumin antimonata (Glucantime®) karşı direnç kazandığı saptanmıştır. Ülkemizde yaşayan ve yurt dışından ülkemize giriş yapan KL hastalarının yetersiz ve eksik tedavi görmesi durumunda, dirençli suşların ve olgu sayısının hızla artabileceği ve dirençli leyşmanyazis odaklarının oluşabileceği öngörülmektedir.
  • Article
    Citation - WoS: 2
    Türkiye’de Kutanöz Leyşmanyazis Hastalarından Elde Edilen Leishmania İzolatlarındaki Farklılıklar ve Bunların Fare Modeline Klinik Yansıması
    (Ankara Microbiology Society, 2020) Özbilgin, Ahmet; Çulha, Gülnaz; Güray, Melda Zeynep; Zeyrek, Fadile Yıldız; Akyar, Işın; Toz, Seray; Gündüz, Cumhur
    Although asexual reproduction has been attributed to Leishmania species, genetic exchange has recently been demonstrated, which helped emerging of hybrid isolates. Situated on the crossroads between three continents, Leishmania hybrids may be present in Turkey. In Turkey, visceral leishmaniasis caused by Leishmania infantum is less common, while cutaneous leishmaniasis (CL) caused by Leishmania tropica and L.infantum could reach 2500 reported cases a year. Our aim was to investigate genetic variability of local Leishmania species and presence of hybrid Leishmania strains in Turkey. Twenty CL patients from Sanliurfa and Hatay, where only L.tropica and both L.tropica and L.infantum cause CL, respectively, were registered equally. All isolates were assessed with real-time polymerase chain reaction (Rt-PCR), isoenzyme analysis, gene sequencing, two-dimensional gel electrophoresis (2D-PAGE) and MALDI-TOF/TOF-MS followed by in vivo analyses on mouse model. Identification of differentially expressed proteins was performed. These proteins were confirmed by sequence analysis. All isolates from Sanliurfa were found to be L.tropica which caused cutaneous infection in mice. However, one of 10 isolates from Hatay was found as Leishmania major which caused cutaneous infection. Five isolates were found as L.tropica with Rt-PCR and gene sequencing, one of which had one different protein from the reference L.tropica strain and caused cutaneous infection. Four of the five isolates had five different proteins compared to reference strain and caused both cutaneous and visceral infections. Remaining four isolates showed double melting curves in Rt-PCR, which were concordant with L.tropica and L.infantum. Their sequencing and isoenzyme analyses indicated them as L.infantum. They had six different proteins compared to reference L.infantum strain and caused cutaneous and visceral infections. It is concluded that the isolates with different proteins were hybrid Leishmania species. In the present study, outcomes of the proteomics, genomics, clinical manifestations and tissue tropism on animal models were evaluated together for the first time. In addition to L. tropica and L.infantum, L.major was identified as a causative agent for CL and hybrids of Linfantum/tropica were also shown to be present.
  • Article
    Citation - WoS: 21
    Citation - Scopus: 23
    Mass Spectrometry of Intact Proteins Reveals +98 U Chemical Artifacts Following Precipitation in Acetone
    (American Chemical Society, 2017) Güray, Melda Zeynep; Zheng, Shi; Doucette, Alan A.
    Protein precipitation in acetone is frequently employed ahead of mass spectrometry for sample preconcentration and purification. Unfortunately, acetone is not chemically inert; mass artifacts have previously been observed on glycine-containing peptides when exposed to acetone under acidic conditions. We herein report a distinct chemical modification occurring at the level of intact proteins when incubated in acetone. This artifact manifests as one or more satellite peaks in the MS spectrum of intact protein, spaced 98 u above the mass of the unmodified protein. Other artifacts (+84, +112 u) also appear upon incubation of proteins or peptides in acetone. The reaction is pH-sensitive, being suppressed when proteins are exposed to acetone under acidic conditions. The +98 u artifact is speculated to originate through an intermediate product of aldol condensation of acetone to form diacetone alcohol and mesityl oxide. A +98 u product could originate from nucleophilic attack on mesityl oxide or through condensation with diacetone alcohol. Given the extent of modification possible upon exposure of proteins to acetone, particularly following overnight solvent exposure or incubation at room temperature, an awareness of the variables influencing this novel modification is valued by proteomics researchers who employ acetone precipitation for protein purification.
  • Article
    Citation - WoS: 2
    Citation - Scopus: 2
    Observation of the Side Chain O-Methylation of Glutamic Acid or Aspartic Acid Containing Model Peptides by Electrospray Ionization-Mass Spectrometry
    (Elsevier Ltd., 2017) Atik, Ahmet Emin; Güray, Melda Zeynep; Yalçın, Talat
    O-methylation of the side chains of glutamic acid (E) and aspartic acid (D) residues is generally observed modification when an acidified methanol/water (MeOH/dH2O) mixture is used as a solvent system during sample preparation for proteomic research. This chemical modification may result misidentification with endogenous protein methylation; therefore, a special care should be taken during sample handling prior to mass spectrometric analysis. In the current study, we systematically examined the extent of E/D methylation and C-terminus carboxyl group of synthetic model peptides in terms of different incubation temperatures, storage times, and added acid types as well as its percentages. To monitor these effects, C-terminus amidated and free acid forms of synthetic model peptides comprised of E or D residue(s) have been analyzed by electrospray ionization-mass spectrometry (ESI-MS). Additionally, LC–MS/MS experiments were performed to confirm the formation of methylated peptide product. The results showed that the rate of methylation was increased as the temperature increases along with prolong incubation times. Moreover, the extent of methylation was remarkably high when formic acid (FA) used as a protonation agent instead of acetic acid (AA). In addition, it was found that the degree of methylation was significantly decreased by lowering acid percentages in ESI solution. More than one acidic residue containing model peptides have been also used to explore the extent of multiple methylation reaction. Lastly, the ethanol (EtOH) and isopropanol (iPrOH) have been substituted separately with MeOH in sample preparation step to investigate the extent of esterification reaction under the same experimental conditions. However, in the positive perspective of view, this method can be used as a simple, rapid and cheap method for methylation of acidic residues under normal laboratory conditions.