دورية أكاديمية

Giardia intestinalis coiled-coil cytolinker protein 259 interacts with actin and tubulin.

التفاصيل البيبلوغرافية
العنوان: Giardia intestinalis coiled-coil cytolinker protein 259 interacts with actin and tubulin.
المؤلفون: Rojas-Gutiérrez O; Departamento de Zoología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Carpio y Plan de Ayala S/N, C.P. 11340, Ciudad de México, Mexico., Pérez-Rangel A; Departamento de Biología Celular, CINVESTAV, IPN, Av. IPN 2508, C.P. 07300, Ciudad de México, Mexico., Castillo-Romero A; Departamento de Microbiología y Patología, Centro Universitario de Ciencias de la Salud, Universidad de Guadalajara, Guadalajara, Jalisco, Mexico., Tapia-Ramírez J; Departamento de Genética y Biología Molecular, CINVESTAV, IPN, Av. IPN 2508, C.P. 07300, Ciudad de México, Mexico., Ríos-Castro E; Unidad de Genómica, Proteómica y Metabolómica, LaNSE, CINVESTAV-IPN, Av. IPN 2508, C.P. 07300, Ciudad de México, Mexico., Camacho-Nuez M; Posgrado en Ciencias Genómicas, Universidad Autónoma de la Ciudad de México, San Lorenzo 290, C.P. 03100, Ciudad de México, Mexico., Giono-Cerezo S; Departamento de Microbiología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Carpio y Plan de Ayala S/N, C.P. 11340, Ciudad de México, Mexico., Nogueda-Torres B; Departamento de Parasitología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Carpio y Plan de Ayala S/N, C.P. 11340, Ciudad de México, Mexico., León-Avila G; Departamento de Zoología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Carpio y Plan de Ayala S/N, C.P. 11340, Ciudad de México, Mexico. leonavila60@yahoo.com.mx., Hernández JM; Departamento de Biología Celular, CINVESTAV, IPN, Av. IPN 2508, C.P. 07300, Ciudad de México, Mexico. manolo@cell.cinvestav.mx.
المصدر: Parasitology research [Parasitol Res] 2021 Mar; Vol. 120 (3), pp. 1067-1076. Date of Electronic Publication: 2021 Jan 30.
نوع المنشور: Journal Article
اللغة: English
بيانات الدورية: Publisher: Springer International Country of Publication: Germany NLM ID: 8703571 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1432-1955 (Electronic) Linking ISSN: 09320113 NLM ISO Abbreviation: Parasitol Res Subsets: MEDLINE
أسماء مطبوعة: Original Publication: Berlin : Springer International, c1987-
مواضيع طبية MeSH: Actins/*metabolism , Giardia lamblia/*metabolism , Plakins/*metabolism , Tubulin/*metabolism, Actins/chemistry ; Amino Acid Sequence ; Animals ; Ankyrins/chemistry ; Base Sequence ; Blotting, Western ; Computational Biology ; Consensus Sequence ; Cytoplasm/chemistry ; Cytoskeleton/chemistry ; Cytoskeleton/physiology ; Cytoskeleton/ultrastructure ; Dynamins/analysis ; Female ; Fluorescent Antibody Technique ; Giardia lamblia/chemistry ; Giardia lamblia/ultrastructure ; Humans ; Immunoprecipitation ; Mice ; Mice, Inbred BALB C ; Microscopy, Confocal ; Plakins/chemistry ; Sequence Alignment ; Tubulin/chemistry
مستخلص: Giardia intestinalis is a human parasite that causes a diarrheal disease in developing countries. G. intestinalis has a cytoskeleton (CSK) composed of microtubules and microfilaments, and the Giardia genome does not code for the canonical CSK-binding proteins described in other eukaryotic cells. To identify candidate actin and tubulin cross-linking proteins, we performed a BLAST analysis of the Giardia genome using a spectraplakins consensus sequence as a query. Based on the highest BLAST score, we selected a 259-kDa sequence designated as a cytoskeleton linker protein (CLP259). The sequence was cloned in three fragments and characterized by immunoprecipitation, confocal microscopy, and mass spectrometry (MS). CLP259 was located in the cytoplasm in the form of clusters of thick rods and colocalized with actin at numerous sites and with tubulin in the median body. Immunoprecipitation followed by mass spectrometry revealed that CLP259 interacts with structural proteins such as giardins, SALP-1, axonemal, and eight coiled-coils. The vesicular traffic proteins detected were Mu adaptin, Vacuolar ATP synthase subunit B, Bip, Sec61 alpha, NSF, AP complex subunit beta, and dynamin. These results indicate that CLP259 in trophozoites is a CSK linker protein for actin and tubulin and could act as a scaffold protein driving vesicular traffic.
References: Acosta-Virgen C-MB, Talamás-Lara D, Lagunes-Guillén A, Martínez-Higuera A, Lazcano A, Espinosa-Cantellano M (2018) Giardia lamblia: identification of peroxisomal-like proteins. Exp Parasitol 191:36–43. (PMID: 10.1016/j.exppara.2018.06.006)
Castillo-Romero A, Leon-Avila G, Wang CC, Rangel A, Camacho-Nuez M, Tovar CG, Hernandez JM (2010) Rab11 and actin cytoskeleton participate in Giardia lamblia encystation, guiding the specific vesicles to the cyst wall. PLoS Negl Trop Dis 4:e697. (PMID: 10.1371/journal.pntd.0000697)
Díaz-Barriga F, Carrizales YL, Hernández JM, Domínguez Robles MC, Palmer E, Saborío JL (1989) Interaction of cadmium with actin microfilaments in vitro. Toxicol in Vitro 3:277–284. (PMID: 10.1016/0887-2333(89)90034-9)
Einarsson E, Ma’ayeh S, Svärd SG (2016) An up-date on Giardia and giardiasis. Curr Opin Microbiol 34:47–52. (PMID: 10.1016/j.mib.2016.07.019)
Elmendorf HG, Rohrer SC, Khoury RS, Bouttenot RE, Nash TE (2005) Examination of a novel head-stalk protein family in Giardia lamblia characterised by the pairing of ankyrin repeats and coiled-coil domains. Int J Parasit 35(9):1001–1011.
Goodson HV, Jonasson EM (2018) Microtubules and microtubule-associated proteins. Cold Spring Harb Perspect Biol 10:a022608. (PMID: 10.1101/cshperspect.a022608)
Harterink M, Edwards S, de Haan B, Yau KW, van den Heuvel S, Kapitein LC, Hoogenraad CC (2018) Local microtubule organization promotes cargo transport in C. elegans dendrites. J Cell Sci 131:jcs223107. (PMID: 10.1242/jcs.223107)
Hohmann T, Dehghani F (2019) The cytoskeleton—a complex interacting meshwork. Cells 8(4):362. (PMID: 10.3390/cells8040362)
Kim J, Park SJ (2016) Identification of a novel microtubule-binding protein in Giardia lamblia. Korean J Parasitol 54:461–469. (PMID: 10.3347/kjp.2016.54.4.461)
King SA, Liu H, Wu X (2019) Biomedical potential of mammalian spectraplakin proteins: progress and prospect. Exp Biol Med 244:313. (PMID: 10.1177/1535370219864920)
Lalle M, Camerini S, Cecchetti S, Sayadi A, Crescenzi M, Pozio E (2012) Interaction network of the 14-3-3 protein in the ancient protozoan parasite Giardia duodenalis. J Proteome Res 11:2666–2683. (PMID: 10.1021/pr3000199)
Lauwaet T, Davids BJ, Reiner DS, Gillin FD (2007) Encystation of Giardia lamblia: a model for other parasites. Curr Opin Microbiol 10:554–559. (PMID: 10.1016/j.mib.2007.09.011)
Lauwaet T, Smith AJ, Reiner DS, Romijn EP, Wong CC, Davids BJ, Gillin FD (2011) Mining the Giardia genome and proteome for conserved and unique basal body proteins. Int J Parasitol 41:1079–1092. (PMID: 10.1016/j.ijpara.2011.06.001)
Lourenço D, da Silva AI, Terra LL, Guimarães PR, Zingali RB, de Souza W (2012) Proteomic analysis of the ventral disc of Giardia lamblia. BMC Res Notes 5:41. (PMID: 10.1186/1756-0500-5-41)
Martino F, Perestrelo AR, Vinarský V, Pagliari S, Forte G (2018) Cellular mechanotransduction: from tension to function. Front Physiol 9:824. (PMID: 10.3389/fphys.2018.00824)
Morrison HG, McArthur AG, Gillin FD, Aley SB, Adam RD,  Olsen GJ, Best AA, Cande WZ, Chen F, Cipriano MJ, Davids BJ, Dawson SC, Elmendorf HG, Hehl AB, Holder ME, Huse SM, Kim UU, Lasek-Nesselquist E, Manning G, Nigam A, Nixon JEJ, Palm D, Passamaneck NE, Prabhu A, Reich CI, Reiner DS, Samuelson J, Svard SG, Sogin ML (2007) Genomic minimalism in the early diverging intestinal parasite giardia lamblia. Science 317(5846):1921–1926.
Mukhopadhyay A, Quiroz JA, Wolkoff AW (2014) Rab1a regulates sorting of early endocytic vesicles. Am J Physiol Gastrointest Liver Physiol 306:G412–G424. (PMID: 10.1152/ajpgi.00118.2013)
Nosala C, Scott C, Dawson SC (2015) The critical role of the cytoskeleton in the pathogenesis of Giardia. Curr Clin Microbiol Rep 2:155–162. (PMID: 10.1007/s40588-015-0026-y)
Nosala C, Hagen KD, Hilton N, Chase TM, Jones K, Loudermilk R, Nguyen K, Dawson SC (2020) Disc-associated proteins (DAPs) mediate the unusual hyperstability of Giardia’s ventral disc. J Cell Sci 133:jcs227355. (PMID: 10.1242/jcs.227355)
Paredez AR, Assaf ZJ, Sept D, Timofejeva L, Dawson SC, Wang CJR, Cande WZ (2011) An actin cytoskeleton with evolutionarily conserved functions in the absence of canonical actin-binding proteins. Proc Natl Acad Sci U S A 108:6151–6156. (PMID: 10.1073/pnas.1018593108)
Paredez AR, Nayeri A, Xu JW, Krtková J, Cande WZ (2014) Identification of obscure yet conserved actin-associated proteins in Giardia lamblia. Eukaryot Cell 13:776–784. (PMID: 10.1128/EC.00041-14)
Stefanic S, Palm D, Svärd SG, Hehl AB (2006) Organelle proteomics reveals cargo maturation mechanisms associated with Golgi-like encystation vesicles in the early-diverged protozoan Giardia lamblia. J Biol Chem 281:7595–7604. (PMID: 10.1074/jbc.M510940200)
Soh YM, Bürmann F, Shin H-C, Oda T, Jin KS, Toseland CP, Kim C, Lee H, Kim SJ, Kong M-S, Durand-Diebold ML, KimnY-G, Kim HM, Lee NK, Sato M, Oh B-H, Gruber S (2015) Molecular basis for SMC rod formation and its dissolution upon DNA binding. Mol Cell 57(2):290–303.
Sun D, Leung CL, Liem RKH (2000) Characterization of the microtubule binding domain of microtubule actin crosslinking factor (MACF): identification of a novel group of microtubule associated proteins. J Cell Sci 114:161–172.
Svitkina T (2018) The actin cytoskeleton and actin-based motility. Cold Spring Harb Perspect Biol 10:a018267. (PMID: 10.1101/cshperspect.a018267)
Touz MC, Zamponi N (2017) Sorting without a Golgi complex. Traffic 18:637–645. (PMID: 10.1111/tra.12500)
Wampfler PB, Tosevski V, Nanni P, Spycher C, Hehl AB (2014) Proteomics of secretory and endocytic organelles in Giardia lamblia. PLoS One 9:e94089. (PMID: 10.1371/journal.pone.0094089)
Wickstead B, Gull K (2011) The evolution of the cytoskeleton. J Cell Bio 194(4):513–525.
Winkler C, Denker K, Wortelkamp S, Sickmann A (2007) Silver- and Coomassie-staining protocols: Detection limits and compatibility with ESI MS. ELECTROPHORESIS 28(12):2095–2099.
Zamponi N, Zamponi E, Mayol GF, Lanfredi-Rangel A, Svärd SG, Touz MC (2017) Endoplasmic reticulum is the sorting core facility in the Golgi-lacking protozoan Giardia lamblia. Traffic 18:604–621. (PMID: 10.1111/tra.12501)
Zumthor JP, Cernikova L, Rout S, Kaech A, Faso C, Hehl AB (2016) Static clathrin assemblies at the peripheral vacuole—plasma membrane interface of the parasitic protozoan Giardia lamblia. PLoS Pathog 12:e1005756. (PMID: 10.1371/journal.ppat.1005756)
معلومات مُعتمدة: 180016 CONACyT; 20200344 SIP-IPN
فهرسة مساهمة: Keywords: Coiled-coil; Cytoskeleton; Giardia intestinalis; Vesicular traffic
المشرفين على المادة: 0 (Actins)
0 (Ankyrins)
0 (Plakins)
0 (Tubulin)
EC 3.6.5.5 (Dynamins)
تواريخ الأحداث: Date Created: 20210130 Date Completed: 20210622 Latest Revision: 20210622
رمز التحديث: 20231215
DOI: 10.1007/s00436-021-07062-6
PMID: 33515065
قاعدة البيانات: MEDLINE
الوصف
تدمد:1432-1955
DOI:10.1007/s00436-021-07062-6