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Giardia intraflagellar transport protein 88 is involved in flagella formation video
Hye Rim Yeo, Mee Young Shin, Juri Kim, Soon-Jung Park
Parasites Hosts Dis 2025;63(1):12-24.
Published online February 25, 2025
DOI: https://doi.org/10.3347/PHD.24064
Intraflagellar transport (IFT) particles, a multi-protein apparatus composed of complex A and B, are known to be involved in homeostasis of flagella formation. IFT particles have recently become an interesting topic in Giardia lamblia, which has 4 pairs of flagella. In this experiment, we examined the function of giardial IFT components. When 7 components (IFT121, 140, 20, 46, 52, 81, and 88) of IFT were expressed in Giardia trophozoites as a tagged form with mNeonGreen, all of them were found in both flagella pores and cytoplasmic axonemes. In addition, motor proteins for IFT particles (kinesin-13 and kinesin-2b), were localized to a median body and cytoplasmic flagella, respectively. The CRISPRi-mediated knockdown of IFT88 significantly affected the lengths of all 4 flagella compared to the control cells, Giardia expressing dead Cas9 using control guide RNA. Decreased expression of kinesin-2b also resulted in shortening of flagella, excluding the ventral flagella. Live Giardia cells expressing IFT88-mNeonGreen clearly demonstrated fluorescence in flagella pores and cytoplasmic axonemes. These results on IFT88 and kinesin-2b indicate that IFT complex plays a role in maintenance of G. lamblia flagella.

Citations

Citations to this article as recorded by  Crossref logo
  • Identification and confirmation of SUMOylation-modified proteins in Giardia trophozoites
    Hye Rim Yeo, Mee Young Shin, Juri Kim, Soon-Jung Park
    Parasites, Hosts and Diseases.2025; 63(3): 264.     CrossRef
  • 2,319 View
  • 261 Download
  • 1 Web of Science
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Kinesin-13, a Motor Protein, is Regulated by Polo-like Kinase in Giardia lamblia
Eun-Ah Park, Juri Kim, Mee Young Shin, Soon-Jung Park
Korean J Parasitol 2022;60(3):163-172.
Published online June 30, 2022
DOI: https://doi.org/10.3347/kjp.2022.60.3.163
Kinesin-13 (Kin-13), a depolymerizer of microtubule (MT), has been known to affect the length of Giardia. Giardia Kin-13 (GlKin-13) was localized to axoneme, flagellar tips, and centrosomes, where phosphorylated forms of Giardia polo-like kinase (GlPLK) were distributed. We observed the interaction between GlKin-13 and GlPLK via co-immunoprecipitation using transgenic Giardia cells expressing Myc-tagged GlKin-13, hemagglutinin-tagged GlPLK, and in vitro-synthesized GlKin-13 and GlPLK proteins. In vitro-synthesized GlPLK was demonstrated to auto-phosphorylate and phosphorylate GlKin-13 upon incubation with [γ-32P]ATP. Morpholino-mediated depletion of both GlKin-13 and GlPLK caused an extension of flagella and a decreased volume of median bodies in Giardia trophozoites. Our results suggest that GlPLK plays a pertinent role in formation of flagella and median bodies by modulating MT depolymerizing activity of GlKin-13.

Citations

Citations to this article as recorded by  Crossref logo
  • Giardia intraflagellar transport protein 88 is involved in flagella formation
    Hye Rim Yeo, Mee Young Shin, Juri Kim, Soon-Jung Park
    Parasites, Hosts and Diseases.2025; 63(1): 12.     CrossRef
  • In silico characterisation of a mitotic kinesin-related protein from Leishmania donovani KE16
    Suad Gazi AL Kufi, Amjed Qays Ibrahim Alqaisi, Mohammad Mahmoud Farhan Al- Halbosiy, Ikhlass Ali Hussain AlHilaly
    Asia Pacific Journal of Molecular Biology and Biotechnology.2025; : 62.     CrossRef
  • Optimization of 18 S rRNA metabarcoding for the simultaneous diagnosis of intestinal parasites
    Dongjun Kang, Jun Ho Choi, Myungjun Kim, Sohyeon Yun, Singeun Oh, Myung-hee Yi, Tai-Soon Yong, Young Ah Lee, Myeong Heon Shin, Ju Yeong Kim
    Scientific Reports.2024;[Epub]     CrossRef
  • Functional Differentiation of Cyclins and Cyclin-Dependent Kinases in Giardia lamblia
    Juri Kim, Eun-Ah Park, Mee Young Shin, Soon-Jung Park, Björn F. C. Kafsack
    Microbiology Spectrum.2023;[Epub]     CrossRef
  • Tubulin as a potential molecular target for resveratrol in Giardia lamblia trophozoites, in vitro and in silico approaches
    José Roberto Vargas-Villanueva, Filiberto Gutiérrez-Gutiérrez, Mariana Garza-Ontiveros, Sendar Daniel Nery-Flores, Lizeth Guadalupe Campos-Múzquiz, Dagoberto Vazquez-Obregón, Raul Rodriguez-Herrera, Lissethe Palomo-Ligas
    Acta Tropica.2023; 248: 107026.     CrossRef
  • 5,408 View
  • 187 Download
  • 4 Web of Science
  • Crossref
Case Reports
Cochlosoma Infection in a Turkey in Iran
Mohammad Javad Gharagozlou, Omid Dezfoulian
Korean J Parasitol 2009;47(4):393-395.
Published online December 1, 2009
DOI: https://doi.org/10.3347/kjp.2009.47.4.393

Cochlosoma sp. infection was identified in a single case among 60 stunted diarrheic native turkey poults, Meleagris galopavo. A large number of the flagellated parasites was found free or within the intervillous spaces of the jejunum, ileum and cecum. Moderate enteritis was associated with the parasites. In TEM studies of the parasagittal sections of the parasite, a prominent ventral sucker like disc and flagella emerging from an opening on the ventrodorsal surface of the pyriform uninuclear parasite were found. The morphological characteristics of this protozoan match with those described for Cochlosoma anatis. The parasite could be considered as an intestinal pathogenic protozoan causing stunting and diarrhea in turkeys in Iran.

Citations

Citations to this article as recorded by  Crossref logo
  • Infection with Cochlosoma anatis in early brooding leads to poor health outcomes in turkey poults
    Justin H Lowery, Chongxiao Chen, Catherine G Fudge, Christina Sigmon, Robert B Beckstead, Lin L Walker
    Journal of Applied Poultry Research.2026; 35(1): 100637.     CrossRef
  • 8,579 View
  • 116 Download
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Megaselia scalaris (Diptera: Phoridae) is one of the medically important insects. Maggots from a urine sample of a 5-year-old Saudi girl were examined microscopically for identification. These maggots were cultured to become adult flies. Larvae and adults were identified using standard keys. Protozoan flagellates were obtained from the gut of the larvae. This is the first report of M. scalaris as a causative agent of urinary human myiasis in Saudi Arabia.

Citations

Citations to this article as recorded by  Crossref logo
  • Neglected Tropical Diseases (NTDs) in Saudi Arabia: Systematic Review and Meta-analysis
    Najm Z. Alshahrani, Abdullah M. Alarifi, Abdullah M. Assiri
    Journal of Epidemiology and Global Health.2025;[Epub]     CrossRef
  • Furuncular myiasis caused by Wohlfahrtia magnifica in a healthy child: A case report
    Aysun Yahşi, Ömer Orkun, Filiz Demirel Kaya, Elif Emel Erten
    Asian Pacific Journal of Tropical Medicine.2025; 18(10): 471.     CrossRef
  • Native parasitoids of the fall webworm, Hyphantria cunea (Drury, 1773) (Lepidoptera, Erebidae), an invasive alien pest in northern Iran
    Amene Karami, Ali Asghar Talebi, Ebrahim Gilasian, Yaghoub Fathipour, Mohammad Mehrabadi
    Journal of Insect Biodiversity and Systematics.2023; 9(1): 81.     CrossRef
  • The Price of Hospital Reshaping: Nasal Myiasis Caused by Flesh Fly (Diptera: Sarcophagidae) in Reallocated COVID-19 Intensive Care Unit
    Vladimir Dolinaj, Jasmina Grujić, Davor Križanović, Aleksandar Potkonjak, Thomas Pape, Pavle Banović
    Healthcare.2023; 11(11): 1533.     CrossRef
  • A complete morphological characterization of all life stages of the phorid fly Megaselia scalaris
    Jayakumar Pallavi, Harshita Snehal, Rakshita Sukruth Kolipakala, Daniela Salazar, Mrunal Hanbar, Larina Bejoy Chiramel, Khushi Alok Jha, Sai Bhumica Lakshmi Venkatesh, Tanishka Dayanand Shetty, Navya Madhusudan, Amrutha Mohan, Amulia John, Naomi Deep D’so
    Scientific Reports.2023;[Epub]     CrossRef
  • Utilizing Ecological Modeling to Follow the Potential Spread of Honey Bee Pest (Megaselia scalaris) from Nearby Countries towards Saudi Arabia under Climate Change Conditions
    Areej A. Alkhalaf
    Diversity.2022; 14(4): 261.     CrossRef
  • The scuttle flies (Diptera: Phoridae) of Iran with the description of Mahabadphora aesthesphora as a new genus and species
    Roya Namaki-Khameneh, Samad Khaghaninia, R. Henry L. Disney, Naseh Maleki-Ravasan, Feng ZHANG
    PLOS ONE.2021; 16(10): e0257899.     CrossRef
  • Occurrence of human urogenital myiasis due to neglected personal hygiene: a review
    Amandeep Singh, Jasneet Kaur
    Transactions of The Royal Society of Tropical Medicine and Hygiene.2019; 113(1): 4.     CrossRef
  • Human urogenital myiasis: A systematic review of reported cases from 1975 to 2017
    Roghiyeh Faridnia, Masoud Soosaraei, Hamed Kalani, Mahdi Fakhar, Pikka Jokelainen, Reza Zolfaghari Emameh, Elham Sadat Banimostafavi, Hajar Ziaei Hezarjaribi
    European Journal of Obstetrics & Gynecology and Reproductive Biology.2019; 235: 57.     CrossRef
  • Prevalence and Salient Morphological Features of Myiasis Causing Dipteran Flies in Jeddah, Saudi Arabia
    Masroor Alikhan, K. Al Ghamdi, Fahad S Al Zahrani, Emad I Khater, Ahmad M Allam
    Biosciences, Biotechnology Research Asia.2018; 15(1): 101.     CrossRef
  • Morphological and Molecular Characteristic of Megaselia scalaris (Diptera: Phoridae) Larvae as the Cause of Urinary Myiasis
    R. Solgi, N. Dinparast Djadid, A. Eslamifar, A. Raz, S. Zakeri
    Journal of Medical Entomology.2017; 54(3): 781.     CrossRef
  • A case of uncomplicated urinary myiasis in a healthy female
    Olugbemisola Oredein McCoy, Andrew Rabley, Michaella M Prasad, Eric S Rovner
    BMJ Case Reports.2016; 2016: bcr2016214783.     CrossRef
  • Pupal age estimation of forensically important Megaselia scalaris (Loew) (Diptera: Phoridae)
    Dian-Xing Feng, Guang-Chun Liu
    Forensic Science International.2014; 236: 133.     CrossRef
  • Laboratory Identification of Arthropod Ectoparasites
    Blaine A. Mathison, Bobbi S. Pritt
    Clinical Microbiology Reviews.2014; 27(1): 48.     CrossRef
  • Human urinary myiasis due to larvae of Clogmia (Telmatoscopus) albipunctata Williston (Diptera: Psychodidae) first report in Egypt
    AymanA El-Badry, HosniKhairy Salem, YusufAbd El-Aziz Edmardash
    Journal of Vector Borne Diseases.2014; 51(3): 247.     CrossRef
  • Interaction effects of temperature and food on the development of forensically important fly, Megaselia scalaris (Loew) (Diptera: Phoridae)
    Raja Muhammad Zuha, Tasnim Abdul Razak, Nazni Wasi Ahmad, Baharudin Omar
    Parasitology Research.2012; 111(5): 2179.     CrossRef
  • Morphology of immature stages of Megaselia spiracularis Schmitz (Diptera: Phoridae)
    Feng Dian‐Xing, Liu Guang‐Chun
    Microscopy Research and Technique.2012; 75(9): 1297.     CrossRef
  • Myiasis
    Fabio Francesconi, Omar Lupi
    Clinical Microbiology Reviews.2012; 25(1): 79.     CrossRef
  • Megaselia scalaris reared on Rhipicephalus (Boophilus) microplus laboratory cultures
    E. MIRANDA‐MIRANDA, R. COSSIO‐BAYUGAR, F. MARTINEZ‐IBAÑEZ, C. R. BAUTISTA‐GARFIAS
    Medical and Veterinary Entomology.2011; 25(3): 344.     CrossRef
  • 12,437 View
  • 107 Download
  • Crossref