• Title/Summary/Keyword: Transmembrane domain

Search Result 128, Processing Time 0.03 seconds

Intercellular Adhesion Molecule-1 (ICAM-1)의 분자구조와 기능

  • 전창덕
    • The Zoological Society Korea : Newsletter
    • /
    • v.18 no.2
    • /
    • pp.33-37
    • /
    • 2001
  • Intercellular adhesion molecule-1 (ICAM-1)은 T 세포의 활성이나 면역세포가 염증작용이 일어나고 있는 곳으로 옮겨갈 때 중요한 역할을 수행하는 당단백질 (glycoprotein)으로서 2-integrin 계열의 분자인 leukocyte function associated antigen-1(LFA-1)이나 Mac-1의 수용체이며 세포의 막에 homodimer인 상태로 발현되어진다. ICAM-1은 5개의 세포외 domain과 transmembrane domain(TM) 및 짧은 cytoplasmic domain을 갖고 있으며, dimerization motif는 domain 5 또는 TM인 것으로 알려져 있다. 최근의 crystal 구조분석 결과에 의하면 domain 1에도 dimerization motif가 있는 것으로 추정되어지지만 정확한 실험적인 뒷받침이 되어져 있지 않다. 본 연구에서는domain 1에 dimer를 형성할 수 있는 motif가 존재하는 지에 대한 실험적인 증명과 함께 ICAM-1이 세포의 막에서 어떠한 구조를 갖고 있는지에 대한 최근의 연구성과를 보고하고자 한다.

  • PDF

Identification of Transmembrane Domain of a Membrane Associated Protein NS5 of Dendrolimus punctatus Cytoplasmic Polyhedrosis Virus

  • Chen, Wuguo;Zhang, Jiamin;Dong, Changjin;Yang, Bo;Li, Yanqiu;Liu, Chuanfeng;Hu, Yuanyang
    • BMB Reports
    • /
    • v.39 no.4
    • /
    • pp.412-417
    • /
    • 2006
  • We examined the intracellular localization of NS5 protein of Dendrolimus punctatus cytoplasmic polyhedrosis virus (DpCPV) by expressing NS5-GFP fusion protein and proteins from deletion mutants of NS5 in baculovirus recombinant infected insect Spodoptera frugiperda (Sf-9) cells. It was found that the NS5 protein was present at the plasma membrane of the cells, and that the N-terminal portion of the protein played a key role in the localization. A transmembrane region was identified to be present in the N-terminal portion of the protein, and the detailed transmembrane domain (SQIHMVWVKSGLVFF, 57-71aa) of N-terminal portion of NS5 was further determined, which was accorded with the predicted results, these findings suggested that NS5 might have an important function in viral life cycle.

Cancer Research Advances Regarding the CKLF-like MARVEL Transmembrane Domain Containing Family

  • Lu, Jia;Wu, Qian-Qian;Zhou, Ya-Bo;Zhang, Kai-Hua;Pang, Bing-Xin;Li, Liang;Sun, Nan;Wang, Heng-Shu;Zhang, Song;Li, Wen-Jian;Zheng, Wei;Liu, Wei
    • Asian Pacific Journal of Cancer Prevention
    • /
    • v.17 no.6
    • /
    • pp.2741-2744
    • /
    • 2016
  • The CKLF-like MARVEL transmembrane domain-containing family (CMTM) is a novel family of genes first reported at international level by Peking University Human Disease Gene Research Center. The gene products act between chemokines and the transmembrane-4 superfamily. Located in several human chromosomes, the CMTMs CKLF and CMTM1 to CMTM8 may be unregulated in tumors and act as potential tumor suppressor genes with important roles in the immune, male reproductive and hematopoietic systems. In-depth studies in recent years established a close relation between CMTMs and tumorigenesis and metastasis. The CMTM family has a significant clinical value in diagnosis and treatment of diseases linked to tumors and the immune system.

Chimeric Protein of CD8a Extracellular Domain and CD4 Transmembrane and Cytoplasmic Domain Binds More Efficiently to p561ck than CD8a

  • Young Il Choi;Sang Dai Park;Rho Hyun Seong
    • Animal cells and systems
    • /
    • v.3 no.3
    • /
    • pp.331-336
    • /
    • 1999
  • p56$^{Ick}$, a cytoplasmic protein tyrosine kinase of the src family, is non-covalently associated with the cell surface coreceptors CD4 and CD8, which are expressed on thymocytes and mature T cells. The coreceptor protein plays an important role during the differentiation of thymocytes and the activation of T cells. DNA constructs were designed to study the roles of CD4 and CD8 during the differentiation of thymocytes. One is a chimeric cDNA which consists of coding regions for the extracellular domain of CD8a and the transmembrane and cytoplasmic domain of CD4. The other is the same chimeric cDNA but with a point mutation converting Cys to Ala in the Ick-binding site to disrupt the association. We confirmed that the CD8a/CD4 chimeric molecule bound to Ick more efficiently than the wild type CD8a protein. However, the chimeric protein with the Cys$leftrightarro$Ala mutation did not associate with Ick. The results suggest a possibility that the CD8a/CD4 chimeric protein may behave like a CD4 protein in associating with Ick and that it may deliver a signal inside the cell in a similar manner, Analysing effects of the mutant CD8a/CD4 chimeric protein expression in developing thymocytes will elucidate the role of Ick during the determination of CD4/CD8 cell lineages.

  • PDF

Transmembrane Helix of Novel Oncogene with Kinase-Domain (NOK) Influences Its Oligomerization and Limits the Activation of RAS/MAPK Signaling

  • Li, Ying-Hua;Wang, Yin-Yin;Zhong, Shan;Rong, Zhi-Li;Ren, Yong-Ming;Li, Zhi-Yong;Zhang, Shu-Ping;Chang, Zhi-Jie;Liu, Li
    • Molecules and Cells
    • /
    • v.27 no.1
    • /
    • pp.39-45
    • /
    • 2009
  • Ligand-dependent or independent oligomerization of receptor protein tyrosine kinase (RPTK) is often an essential step for receptor activation and intracellular signaling. The novel oncogene with kinase-domain (NOK) is a unique RPTK that almost completely lacks an ectodomain, expresses intracellularly and activates constitutively. However, it is unknown whether NOK can form oligomer or what function oligomerization would have. In this study, two NOK deletion mutants were generated by either removing the ectodomain ($NOK{\Delta}ECD$) or including the endodomain (NOK-ICD). Co-immunoprecipitation demonstrated that the transmembrane (TM) domain of NOK was essential for its intermolecular interaction. The results further showed that NOK aggregated more closely as lower order oligomers (the dimer- and trimer-sized) than either deletion mutant did since NOK could be crosslinked by both Sulfo-EGS and formaldehyde, whereas either deletion mutant was only sensitive to Sulfo-EGS. Removing the NOK TM domain (NOK-ICD) not only markedly promoted higher order oligomerization, but also altered the subcellular localization of NOK and dramatically elevated the NOK-mediated constitutive activation of extracellular signal-regulated kinase (ERK). Moreover, NOK-ICD but not NOK or $NOK{\Delta}ECD$ was co-localized with the upstream signaling molecule RAS on cell membrane. Thus, TM-mediated intermolecular contacting may be mainly responsible for the constitutive activation of NOK and contribute to the autoinhibitory effect on RAS/MAPK signaling.

Expression of Taurine Transporter in Cell Lines and Murine Organs (세포주와 마우스 조직에서 타우린수송체의 발현분석)

  • 김하원;안희창;안혜숙;현진원;이은방
    • Biomolecules & Therapeutics
    • /
    • v.10 no.2
    • /
    • pp.78-84
    • /
    • 2002
  • Taurine (2-ethaneaminosulfonic acid, $^+{NH}_3{CH_2}{CH_2}{SO_3^{-}}$) is endogenous amino acid with functions as modulator of osmoregulation, antioxidation, detoxification, transmembrane calcium transport, and a free radical scavenger in mammalian tissues. Taurine transporter(TAUT) contains 12 transmembrane helices, which are typical of the $Na^+$- and $Cl^-$-dependent transporter gene family, and has been cloned recently from several species and tissues. To analyze the expression of TAUT mRNA, one step RT-PCR was performed from human and mouse cultured cell lines and from various mouse tissues. The primers were designed to encode highly conserved amino acid sequences at the second transmembrane domain and at the fourth and fifth intracellular domains. RT-PCR analysis showed both of the human intestine HT-29 and mouse macrophage RAW264.7 cell lines expressed mRNA of TAUT. To define the expression patterns of the TAUT mRNA in the murine organs, RT-PCR was performed to detect cDNA representing TAUT mRNA from seven different mouse tissues. The TAUT was detected in all of the mouse tissues analyzed such as heart, lung, thymus, kidney, liver, spleen and brain. A large amount of transcript was fecund from heart, liver, spleen, kidney, and brain, while lung contained a very small amount of transcript.

Structural Change in Transmembrane Region of Syndecan-4 by Mutation

  • Choi, Sung-Sub;Kim, Ji-Sun;Jeong, Ji-Ho;Kim, Yongae
    • Journal of the Korean Magnetic Resonance Society
    • /
    • v.20 no.4
    • /
    • pp.129-137
    • /
    • 2016
  • Transmembrane(TM) proteins are closely related to transport, channel formation, signaling, cell to cell interaction, so they are the crucial target of modern medicinal drugs. In order to study the structure and function of these TM proteins, it is important to prepare reasonable amounts of proteins. However, their preparation is seriously difficult and time-consuming due to insufficient yields and low solubility of TM proteins. We tried to produce large amounts of Syndecan-4 containing TM domain(SDC4-TM) that is related to the wound healing and tumor. Also, mutated SDC4-TM was studied to investigate structural change by modification of dimerization motif. We performed the structure determination by the Polarity Index at Slanted Angle (PISA) wheel pattern analysis based on $^{15}N-^1H$ 2D SAMPI-4 solid-state NMR of SDC4-TM and computational modeling using Discovery Studio 2016.

Ubiquitin Fusion System for Recombinant Peptide Expression and Purification: Application to the Cytoplasmic Domain of Syndecan-4

  • Chae, Young-Kee;Lee, Ha-Yan;Lee, Weon-Tae
    • Bulletin of the Korean Chemical Society
    • /
    • v.28 no.9
    • /
    • pp.1549-1552
    • /
    • 2007
  • The cytoplasmic domain of syndecan-4, a type I transmembrane heparan sulfate proteoglycan, was overexpressed as a fused form with the ubiquitin molecule in Escherichia coli, and the fusion protein was purified using immobilized metal affinity chromatography (IMAC). The cytoplasmic domain was released from its fusion partner by using yeast ubiquitin hydrolase (YUH), and subsequently purified by reverse phase chromatography. The integrity of the resulting peptide fragment was checked by MALDI-TOF and NMR spectroscopy. The yield of the peptide was 3.0-1.5 mg per liter in LB or minimal medium, respectively. The recombinant expression and purification of this domain will enable us its structural and functional studies using multidimensional NMR spectroscopy.

Soluble Expression of Recombinant Olive Flounder Hepcidin I Using a Novel Secretion Enhancer

  • Lee, Sang Jun;Park, In Suk;Han, Yun Hee;Kim, Young Ok;Reeves, Peter R.
    • Molecules and Cells
    • /
    • v.26 no.2
    • /
    • pp.140-145
    • /
    • 2008
  • Expression of olive flounder hepcidin I (HepI) fused with truncated OmpA signal peptides ($OmpASP_{tr}$) as directional signals does not produce soluble fusion proteins. However, by inserting amino acid segments (xxx) varying in pI and hydrophobicity/hydrophilicity into a leader sequence containing a truncated OmpASP ($OmpASP_{tr}$) and a factor Xa cleavage site (Xa) [$OmpASP_{tr}{\mid}(xxx){\mid}Xa$], we were able in some cases to express soluble recombinant HepI. Soluble expression of the recombinant protein strongly correlated with (xxx) insertions of high pI and hydrophilicity. Therefore, we modified the $OmpASP_{tr}{\mid}(xxx){\mid}Xa$ sequence by inserting Arg and Lys into (xxx) to increase the hydrophilicity of the signal peptide region. These modifications enhanced the expression of soluble recombinant HepI. Hydropathic profile analysis of the $OmpASP_{tr}{\mid}(xxx){\mid}Xa$ HepI fusion proteins revealed that the transmembrane-like domains derived from the $OmpASP_{tr}{\mid}(xxx){\mid}Xa$ sequence were larger than the internal positively charged domain native to HepI. It should therefore be possible to overcome the obstacle of internal positively charged domains to obtain soluble expression of recombinant proteins by monitoring the hydrophilicity and hydropathic profile of the signal peptide region using a computer program.

Three-Dimensional Structure Prediction of Follicle-Stimulating Hormone Receptor Transmembrane Domain by Homology Modelling

  • Priya dharshini B
    • Journal of Integrative Natural Science
    • /
    • v.16 no.1
    • /
    • pp.33-38
    • /
    • 2023
  • The follicle stimulating hormone receptor (FSHR) is a glycoprotein hormone, that belongs to the GPCR superfamily. FSHR plays a major role in reproduction. The aberrant activation of FHS receptor leads to infertility and several reproductive disorders. The recently recognized roles of the FSHR in diverse extragonadal tissues is also closely related to Alzheimer's disease and cancers. Analysing the structural characteristics of the receptor is important in understanding the pathophysiology of diseases associated with the receptor. In this present study, homology modelling of FSHR-TM domain was developed using four different templates. Totally 20 models were developed using single template-based approach and selected three based on the validation of RC plot, RMSD, ProSA, QMEAN and ERRAT values. The developed models would be useful for further research on the structural characteristics and binding characteristics of the FSHR-TM domain.