• 제목/요약/키워드: ILK1

검색결과 11건 처리시간 0.031초

Phosphorylation of $Ser^{246}$ Residue in Integrin-linked Kinase 1 by Serum- and Glucocorticoid-induced Kinase 1 is Required to Form a Protein-protein Complex with 14-3-3

  • Chun, Jae-Sun;Kang, Sang-Sun
    • Animal cells and systems
    • /
    • 제9권3호
    • /
    • pp.161-171
    • /
    • 2005
  • Integrin-linked kinase 1 (ILK1) regulates several protein kinases, including PKB/Akt kinase and glycogen synthase kinase ${\beta}$. ILK1 is also involved distinctively in the cell morphological and structural functions by interacting with the components of the extracellular matrix or integrin. According to the information of serum- and glucocorticoid-induced kinase 1 (SGK1) substrate specificity (R-X-R-X-X(S/T)-${\phi};{\phi}$ indicates a hydrophobic amino acid), two putative phosphorylation sites, $Thr^{181}\;and\;Ser^{246}$, were found in ILK1. We showed that ILK1 fusion protein and two fluorescein-labeled ILK1 peptides, $FITC-^{174}RTRPRNGTLN^{183}$ and $FITC-^{239}CPRLRIFSHP^{248}$, were phosphorylated by SGK1 in vitro. We also identified that 14-3-3 ${\theta}\;{\varepsilon}\;and\;{\xi}$, among several 143-3 isotypes $({\beta},\;{\gamma},\;{\varepsilon},\;{\eta},\;{\sigma},\;{\theta},\;{\tau}\;and\;{\xi})$ formed protein complex with ILK1 in COS-1 cells. Furthermore, the phosphorylation of $Ser^{246}$ by SGK1 induced the binding with 14-3-3. It was also demonstrated that 14-3-3-bound ILK1 has reduced kinase activity. Thus, these data suggest that SGK1 phosphorylates $Thr^{181}\;and\;Ser^{246}$ of ILK1 and the phosphorylation of its $Ser^{246}$ makes ILK1 bind to 14-3-3, resulting in the inhibition of ILK1 kinase activity.

Role of Integrin-Linked Kinase in Multi-drug Resistance of Human Gastric Carcinoma SGC7901/DDP Cells

  • Song, Wei;Jiang, Rui;Zhao, Chun-Ming
    • Asian Pacific Journal of Cancer Prevention
    • /
    • 제13권11호
    • /
    • pp.5619-5625
    • /
    • 2012
  • Gastric carcinoma is a leading cause of cancer death in the world and multi-drug resistance (MDR) is an essential aspect of gastric carcinoma chemotherapy failure. Recent studies have shown that integrin-linked kinase (ILK) is involved in metastasis of human tumors, expression silencing of ILK inhibiting the metastasis of several types of cultured human cancer cells. However, the role and potential mechanism of ILK to reverse the multi-drug resistance in human gastric carcinoma is not fully clear. In this report, we focused on roles of expression silencing of ILK in multi-drug resistance reversal of human gastric carcinoma SGC7901/DDP cells, including increased drug sensitivity to cisplatin, cell apoptosis rates, and intracellular accumulation of Rhodamine-123, and decreased mRNA and protein expression of multi-drug resistance gene (MDR1), multi-drug resistance-associated protein (MRP1), excision repair cross-complementing gene 1 (ERCC1), glutathione S-transferase -${\pi}$ (GST-${\pi}$) and RhoE, and transcriptional activation of AP-1 and NF-${\kappa}B$ in ILK silenced SGC7901/DDP cells. We also found that there was a decreased level of p-Akt and p-ERK. The results indicated that ILK might be used as a potential therapeutic strategy to combat multi-drug resistance through blocking PI3K-Akt and MAPK-ERK pathways in human gastric carcinoma.

Integrin-linked Kinase Functions as a Tumor Promoter in Bladder Transitional Cell Carcinoma

  • Wang, De-Lin;Lan, Jian-Hua;Chen, Liang;Huang, Biao;Li, Zeng;Zhao, Xiu-Min;Ma, Qiang;Sheng, Xia;Li, Wen-Bin;Tang, Wei-Xue
    • Asian Pacific Journal of Cancer Prevention
    • /
    • 제13권6호
    • /
    • pp.2799-2806
    • /
    • 2012
  • The aim of this study was to elucidate the role of the integrin-linked kinase (ILK) gene in development of human bladder transitional cell carcinoma (BTCC). Expression of ILK protein and ILK mRNA in 56 cases of human BTCC tissue and in 30 cases of adjacent normal bladder tissue was detected by immunohistochemistry S-P and reverse transcription polymerase chain reaction (RT-PCR), respectively. Four specific miRNA RNAi vectors targeting human ILK were synthesized and transfected into BIU-87 cells by liposome to obtain stable expression cell strains. The influence of ILK on proliferation of BTCC was detected by MTT, FCM on athymic mouse tumorigenesis. The positive rate of ILK protein in BTCC tissue (53.6%) was much higher than adjacent normal bladder tissue (10.0%) (p<0.05). Similarly, expression of ILK mRNA in BTCC tissue ($0.540{\pm}0.083$) was significantly higher than in adjacent normal bladder tissue ($0.492{\pm}0.070$) (p<0.05). MTT showed that the proliferation ability of miRNA-ILK transfected group was clearly decreased (p<0.05), the cell cycle being arrested in G0/G1-S, an tumorigenesis in vivo was also significantly reduced (p<0.05). ILK gene transcription and protein expression may be involved in the development of BTCC, so that ILK might be the new marker for early diagnosis and the new target for gene treatment.

Nephrin phosphorylation regulates podocyte adhesion through the PINCH-1-ILK-α-parvin complex

  • Zha, Dongqing;Chen, Cheng;Liang, Wei;Chen, Xinghua;Ma, Tean;Yang, Hongxia;van Goor, Harry;Ding, Guohua
    • BMB Reports
    • /
    • 제46권4호
    • /
    • pp.230-235
    • /
    • 2013
  • Nephrin, a structural molecule, is also a signaling molecule after phosphorylation. Inhibition of nephrin phosphorylation is correlated with podocyte injury. The PINCH-1-ILK-${\alpha}$-parvin (PIP) complex plays a crucial role in cell adhesion and cytoskeleton formation. We hypothesized that nephrin phosphorylation influenced cytoskeleton and cell adhesion in podocytes by regulating the PIP complex. The nephrin phosphorylation, PIP complex formation, and F-actin in Wistar rats intraperitoneally injected with puromycin aminonucleoside were gradually decreased but increased with time, coinciding with the recovery from glomerular/podocyte injury and proteinuria. In cultured podocytes, PIP complex knockdown resulted in cytoskeleton reorganization and decreased cell adhesion and spreading. Nephrin and its phosphorylation were unaffected after PIP complex knockdown. Furthermore, inhibition of nephrin phosphorylation suppressed PIP complex expression, disorganized podocyte cytoskeleton, and decreased cell adhesion and spreading. These findings indicate that alterations in nephrin phosphorylation disorganize podocyte cytoskeleton and decrease cell adhesion through a PIP complex-dependent mechanism.

Ceriporia lacerata 배양액과 고정화 Lactobacillus plantarum K154를 이용한 감마아미노뷰티르산 생산 최적화 (Optimization of γ-Aminobutyric Acid (GABA) Production Using Immobilized Lactobacillus plantarum K154 in Submerged Culture of Ceriporia lacerata)

  • 이은지;이삼빈
    • 한국식품과학회지
    • /
    • 제47권4호
    • /
    • pp.438-445
    • /
    • 2015
  • L. plantarum K154 고정화와 C. lacerata 균사체 배양물을 이용한 혼합발효를 통해서 다당류, ${\beta}$-glucan과 같은 생리활성물질과 기능성 GABA 생산을 최적화 하고자 하였다. C. lacerata 균사체의 최적 배양 조건으로 glucose 3%, soybean flour 3%, $MgSO_4$ 0.15%를 혼합하여 배지로 사용하였고, 5 L jar fermentor를 이용하여 $25^{\circ}C$에서 7일간 진탕 배양하였다. 배양물은 균사체 함량 29.7 g/L, 다당류 함량 3.1 g/L, ${\beta}$-glucan 2% (w/w), protease 활성 68.96 unit/mL, ${\alpha}$-amylase 활성 10.37 unit/mL로 매우 높게 나타났다. C. lacerata 균사체 배양물을 이용하여 젖산세균 고정화에 의한 혼합발효물의 생균수를 측정한 결과, 배양 1일 째 비드 내에서 젖산세균의 수는 $3.13{\time}10^9CFU/mL$로 높게 나타났고, 배지에 유리된 젖산세균의 수는 배양기간 동안 $1.48{\time}10^8CFU/mL$로 유지하였다. 알지네이트 1.5%를 사용하여 비드를 제조하였을 때, GABA 함량을 측정한 결과 배양 7일 째 비드 내에서 6.30 mg/mL, 배지에서 9.96 mg/mL로 높게 나타났다. 젖산세균 고정화의 재사용 가능성을 확인하기 위해 고정화 비드를 5회간 재사용하여 $30^{\circ}C$에서 15일간 혼합발효한 결과, GABA 생산이 급격히 증가하여 배양 기간 동안 유지하였다. 결론적으로 C. lacerata 균사체 배양물로부터 고정화된 젖산세균을 이용한 혼합발효는 고농도 GABA를 포함된 기능성 소재를 생산할 수 있었으며, 이는 식품 및 생물 산업의 원료로 활용이 기대된다.

한우 등심조직 내 인슐린 조절 유전자의 발현이 도체중에 미치는 영향에 관한 연구 (Association of Insulin-related Genes Expression with Carcass Weight in Loin Muscle of Korean Cattle (Hanwoo))

  • 임다정;조용민;채한화;이승환;최봉환;김남국
    • 생명과학회지
    • /
    • 제25권1호
    • /
    • pp.8-15
    • /
    • 2015
  • PPAR signaling pathway는 지방대사와 지방세포 분화를 조절하는 대표적인 대사회로이기 때문에 가축에 있어서 주로 육질과의 연관성 연구가 진행되었다. 하지만, 최근 들어 육량(체중)과 관련이 있다는 연구결과가 보고되고 있다. 본 논문에서는 PPAR signaling pathway에 존재하는 48개 유전자 중에서, pathway 분석을 통하여 체중에 가장 영향을 주는 인슐린 대사 호르몬에 의해 조절 받는 16개 유전자를 선별하여 거세 한우 20두에서 유전자 발현을 조사하였다. 유전자 발현과 도체중과의 관련성 분석을 위하여 회귀분석을 수행하였으며, 3개 유전자(ACSL6, FADS2, ILK)가 통계적으로 유의한 결과(p<0.05)를 보였다. 마지막으로, pathway 분석을 통하여 한우의 도체중과 관련이 있는 3개 유전자를 공통적으로 조절하는 포도당(D-glucose)이 존재함을 확인하였다.

Antioxidative and antiproliferative effects of propolis-reduced silver nanoparticles

  • Tan, Gamze;Ilk, Sedef;Foto, Fatma Z.;Foto, Egemen;Saglam, Necdet
    • Advances in nano research
    • /
    • 제10권2호
    • /
    • pp.139-150
    • /
    • 2021
  • In this study, phytochemicals present in Propolis Extract (PE) were employed as reducing and stabilizing reagents to synthesize silver nanoparticles. Three propolis-reduced silver nanoparticles (P-AgNPs1-3) were synthesized using increasing amounts of PE. P-AgNPs were treated with different cancer cells-lung (A549), cervix (HeLa) and colon (WiDr) - for 24, 48 and 72 h to evaluate their anti-proliferative activities. A non-cancerous cell type (L929) was also used to test whether suppressive effects of P-AgNPs on cancer cell proliferation were due to a general cytotoxic effect. The characterization results showed that the bioactive contents in propolis successfully induced particle formation. As the amount of PE increased, the particle size decreased; however, the size distribution range expanded. The antioxidant capacity of the particles increased with increased propolis amounts. P-AgNP1 exhibited almost equal inhibitory effects across all cancer cell types; however, P-AgNP2 was more effective on HeLa cells. P-AgNPs3 showed greater inhibitory effects in almost all cancer cells compared to other NPs and pure propolis. Consequently, the biological effects of P-AgNPs were highly dependent on PE amount, NP concentration, and cell type. These results suggest that AgNPs synthesized utilizing propolis phytochemicals might serve as anti-cancer agents, providing greater efficacy against cancer cells.

Interaction between a Blood Vessel-Inducing Protein Angiogenin and Its Binding Protein Actin

  • Chang, Soo-Ik;Paik, Seung-Bum;So, Seung-Ho;Ahn, Byung-Cheol
    • BMB Reports
    • /
    • 제29권4호
    • /
    • pp.353-358
    • /
    • 1996
  • Bovine angiogenin (bAng) is a potent blood vessel inducing protein purified from cow In ilk. fluorescence spectroscopy has been used to study the interaction of bAng with actin in 50 mM Tris-HCl pH 7.5, and 1 mM $CaCl_2$ at $25^{\circ}C$. Actin contains four tryptophans but bAng contains no tryptophans. A 50% decrease in intrinsic fluorescence accompanied formation of the bAng/actin complex. By contrast, the interaction of RNase A, a homologous protein to bAng, with actin results in about 10% quenching of the fluorescence. Fluorescence titration experiments were performed by adding increasing concentrations of bAng (0~1.0 ${\mu}M$) to a constant concentration of actin (0.1 ${\mu}M$), and the dissociation constant $K_d$ for the bAng/actin complex and the stoichiometry n were measured as $20{\pm}1$ nM and $1.0{\pm}0.1$ respectively. These results suggest that the interaction between bAng with actin is specific and that quenching of actin fluorescence has occurred in the bAng/actin complex. The bAng binding sites of actin are discussed in the results of this study, and we propose that Trp-80 in the small domain of bovine actin is responsible for the bAng/actin binding.

  • PDF

자궁경부암의 방사선치료 및 방사선항암화학 병용치료에 따른 유전자발현 조절양상 (Gene Expression Profiles in Cervical Cancer with Radiation Therapy Alone and Chemo-radiation Therapy)

  • 이규찬;김명곤;김주영;황유진;최명선;김철용
    • Radiation Oncology Journal
    • /
    • 제21권1호
    • /
    • pp.54-65
    • /
    • 2003
  • 목적 : 동시에 대량으로 유전자발현 양상을 검사할 수 있는 cDNA microarray 기법을 이용하여 자궁경부암에서 특징적으로 나타나는 유전자발현 양상을 알아보고, 방사선치료 및 방사선 항암화학요법 병용치료시의 유전자발현 변화양상을 파악하고자 하였다. 대상 및 방법 :자궁경부 편평상피암으로 확진된 후 근치목적 방사선치료를 단독으로 시행한 8명과 항암화학요법을 병행한 8명에서 채취한 종양조직을 대상으로 하고, 정상 자궁경부 3례를 대조군으로 하였다 조직 생검은 치료 전과 외부 방사선치료 16.2$\~$27 Gy에 두 번하였다. 항암화학요법을 병용한 경우, 5-FU 1,000 mg/m$^{2}$을 제 1일부터 5일까지 정주하고, clsplatin 60 mg/m$^{2}$을 제 1일에 정주하였다. cDNA microarray는 종양조직에서 추출한 total RNA를 역전사(reverse transcription)방법을 이용하여 (P-33)을 표지한 cDNAS를 제작, nylon membrane에 hybridization하였다. 이후 membrane을 phosphor-imager screens에 옮겨 1$\~$5일 동안 노출시킨 후 이미지를 스캔하였다. 유전자의 발현정도는 각 스팟(spot)들의 방사능 강도로 나타나는데, 각 스팟의 픽셀(pixel)을 Arrayguage를 사용하여 산출한 후 엑셀파일로 저장하였다. 유전자의 발현정도 비교는 원 자료(original data)를 Z-변환을 통해 보정(normalized)한 후 Z-ratio값을 산출하여 시행하였다. 결과 : 대조군에 비해 자궁경부암에서 Z-ratio 2.0 이상으로 유의한 발현증가를 보인 유전자들은 integrin-linked kinase, CDC28 protein kinase 2, Spry 2, ERK 3 등 15개로 주로 세포성장과 증식, 세포주기, 신호전달 등에 관련된 유전자들이었으며, Z-ratio -2.0 이하의 유의한 발현감소는 G protein-coupled receptor kinase 6외 6개였다. 방사선 단독치료를 시행한 후 Z-ratio 2.0 이상 발현이 증가한 것은 cyclic nucleotlde gated channel외 3개의 Expressed sequence tags (EST)들이었고, Z-ratio -2.0 이하의 발현감소를 보인 것들에는 치료전 종양세포에서 발현이 증가되었던 세포성장과 증식, 세포주기, 신호전달 등에 관련된 유전자들이 포함되었다 방사선치료와 항암화학요법을 병용했을 때는 방사선 단독치료에 비하여 세포성장과 증식 및 신호전달 관련 유전자들이 상대적으로 높게 발현되었으며, 이외에도 혈관형성(angiopoietin-2), 면역반응(formyl peptide receptor-like 1), DNA 손상회복에 관련된 유전자(CAMP phosphodiesterase)의 발현은 증가되고 세포고사(death associated protein kinase)에 관련된 유전자는 발현 감소를 보였다. 결론 : 자궁경부암에서분열과 증식 및 신호전달에 관여하는 여러 종류의 유전자들 발현이 동시다발적으로 증가되어 있다는 것과 방사선치료를 시행하면 이들 유전자의 발현이 감소하여 종양세포의 분열과 증식이 저해된다는 것을 확인하였다. 방사선 단독치료와 항암화학요법 병용치료를 비교하면 그 유전자 발현양상이 다르므로 향후 이번연구에서 나타난 유전자들에 대한 추가 연구가 필요하며, 이는 개별화된 맞춤형 치료법을 개발하는데 기초자료로 사용될 수 있을 것으로 기대된다.