본 연구의 목적은 알츠하이머질환(Alzheimer’s disease: AD) 동물 모델을 대상으로 트레드밀 운 동(Treadmill exercise: TE)과 환경강화(environmental enrichment: EE) 처치가 인지기능, 근 기능, 및 밀 착연접 단백질 발현에 미치는 영향을 확인하는데 있다. AD 동물 모델을 제작하기 위해 aluminum chloride(AlCl3)를 90일간(40mg/kg/하루) 투여 하였으며 동시에 TE(10-12m/min, 40-60min/day) 혹은 EE에 노출시켰다. 그 결과 AlCl3 투여에 의한 인지기능 저하와 근 기능 감소가 TE와 EE에 의해 완화된 것 으로 나타났다. 또한, TE와 EE는 AD 질환에서 나타나는 β-amyloid(Aβ), alpha-synuclein 및 tumor necrosis factor-α(TNF-α) 단백질의 발현 증가를 감소시킨 것으로 나타났다. 게다가 TE와 EE는 AlCl3 투여에 의해 감소된 밀착연접 단백질(Occludin, Claudin-5 및 ZO-1)의 발현을 통계적으로 유의하게 증가시킨 것으로 나타났다. 마지막으로 Aβ 단백질과 밀착연접 단백질과의 상관분석을 실시한 결과 부적 상 관관계(Occludin: r=-0.853, p=0.001; Claudin-5 : r=-0.352, p=0.915; ZO-1 : r=-0.424, p=0.0390) 로 나타났다. 따라서 이를 종합해 보면 TE 혹은 EE 처치는 AD에 나타나는 병리학적 특징들을 일부 완화 시켜 인지기능과 근 기능을 일부 개선 시킬 수 있는 효과적인 운동 방법이라고 생각된다.
Traf4 (Tumor necrosis factor Receptor Associated Factor 4) is a member of the tumor necrosis factor receptor (TNFR) - associated factors (TRAFs) family. TRAF4 is overexpressed in tumor cells such as breast cancer and associated with cytoskeleton and membrane fraction. Interestingly, TRAF4 was localized with tight junctions (TJs) proteins including OCLN and TJP1 in mammary epithelial cells. However, the expression patterns and biological function of Traf4 were not examined in preimplantation mouse embryos although Traf4-deficient mouse showed embryonic lethality or various dramatic malformation. In this study, we examined the temporal and spatial expression patterns of mouse Traf4 during preimplantation development by qRT-PCR and immunostaining, and its biological function by using siRNA injection. We found upregulation of Traf4 from the 8-cell stage onwards and apical region of cell – cell contact sites at morula and blastocyst embryos. Moreover, Traf4 knockdown led to defective TJs without alteration of genes associated with TJ assembly but elevated p21 expression at the KD morula. Taken together, Traf4 is required for TJs assembly and cell proliferation during morula to blastocyst transition.
Recent studies showed that tight junctions (TJs) integrity and assembly are required for blastocyst development in mouse and pig models. However, the biological functions of TJs associated with embryo implantation and maintenance of pregnancy were not investigated yet. To examine whether disrupted TJs affect further embryo development, we employed RNAi approach and inhibitor treatment. The embryos were injected with Cxadr (Coxsackievirus and adenovirus receptor) siRNA for knock down (KD) and treated with Adam10 (A Disintegrin and Metalloproteinase specific inhibitor 10; GI254023X; SI). We compared blastocyst development and paracellular sealing assay using FITC dextran uptake between control and KD or SI embryos. Finally, we transferred control and Cxadr KD or Adam 10 SI treated blastocyst to uteri of recipients. Cxadr KD and Adam 10 SI showed lower blastocyst development and more permeable to FITC-dextran. Moreover, we observed that half of KD and inhibited embryos failed to maintain pregnancies after the second trimester. Our findings suggested that TJs integrity is required for the maintenance of pregnancy and can be used as a selective marker for the successful application of assisted reproduction technologies.
Establishment of the Adherens junction (AJ) and Tight junction (TJ) are important steps in terms of morphological formation during preimplantation develoment. Particularly, TJ complex is crucial for cavitation in blastocyst. So far, many TJ protein/genes are revealed. However, the biological function and regulation of TJ were not elucidated during post implantation. We depleted several TJ and TJ associated genes using RNA interference, and examined preimplantation development with TJ. We tested functionality of paracellular sealing to determine integrity of TJ formation and examined TE differentiation indirectly using outgrowth assay in vitro. We observed defect of paracellular permeability in the TJ related genes knockdown(KD) blastocyst and abnormal outgrowth. Particularly, trophoblast cells were not stretched out in the KD groups. Finally, we did embryo transfer using the TJ genes KD and control blastocysts into surrogate mothers. We found lower of the implantation rates/ maintenance of pregnancy in the TJ KD groups (less than 40%) than in the controls (about 80%). In conclusion, TJ integrity is can be used as a selective marker for developmentally competent embryos and successful pregnancy.
밀착연접(tight junction, TJ)은 인접하는 표피 세포 사이를 서로 연결 및 접합하여 전해질과 수분의 이동을 조절할 뿐만 아니라 세포 내 신호를 전달하고 세포분열을 조절하는 등 다양한 기능을 갖고 있는 것으로 알려졌다. 또한 최근 연구에 따르면 TJ 관련 단백질들의 비정상적 발현은 암 발생 및 진행과 밀접한 관련이 있는 것으로 보고되었으며, TJ 구성 단백질의 발현 조절은 피부 장벽 강화 및 보습 조절과 연관된 것으로 알려졌다. 본 연구에서는 세포 장벽 조절을 통해 피부 보습 조절에 관여하는 새로운 화장품 소재를 발굴하기 위해 여러 가지 소재들에 대한 스크리닝을 수행하였다. 이 중 인공 감미료 소재로 널리 사용되는 스테비올 및 당 유도체(스 테비오사이드)의 미백 및 주름 개선 등의 효능에 대한 기존 보고에 따라, 이들에 의한 TJ 조절 메커니즘을 확인 하기 위해 다양한 세포 활성 기능 시험을 수행하였다. MTS (3-(4,5-dimethylthiazol-2-yl)-5-(3- carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium, inner salt)를 이용한 실험을 통하여 스테 비올은 human keratinocyte cell line인 HaCaT 세포에 250 μ M 까지 독성을 나타내지 않음을 확인하였다. Quantitative real-time PCR을 이용한 TJ 관련 단백질들의 mRNA 발현 변화를 통하여 스테비올에 의한 TJ 조절 기능을 확인하였다. 그 결과, 스테비올은 TJ 관련 단백질 중 특이적으로 claudin 8을 대조군 대비 30% 수준까지 감소시키는 것을 관찰하였다. 또한, 세포이동에 의한 영향을 관찰한 결과 스테비올 처리에 의해 세포이 동이 현저히 저해되는 것을 확인하였다. 마지막으로 세포 장벽의 투과성 변화를 관찰하기 위해 표피세포 피부저 항(transepithelial electric resistance, TEER) 분석 결과 스테비올에 의한 세포투과성(cell permeability) 또 한 증가되는 것을 관찰하였다. 이에 반해, 스테비올 유도체(스테비오사이드, 리바우디오사이드)에서는 1000 μ M까지 세포 독성이 거의 나타나지 않을 뿐만 아니라 claudin 8 발현 억제 및 세포이동 저해현상도 관찰되지 않았다. 스테비올은 HaCaT 세포의 세포 독성, claudin 8 발현 억제, 그리고 세포 이동의 저해효과를 보이는 반면 스테비올 당 유도체인 스테비오사이드, 리바우디오사이드는 세포 독성 및 세포이동에 영향이 없는 것으로 나타난 본 연구 결과들은 스테비올 당 유도체가 향후 화장품 원료로써 스테비올보다 적합한 소재임을 시사한다
Previously we have shown that human abdominal adipose derived-stem cells (ADSCs) could aggregate during the high-density culture in the presence of human serum (HS). In the present study, we observed that human cord blood serum (CBS) and follicular fluid (HFF) also induced aggregation. Similarly, porcine serum could induce aggregation whereas bovine and sheep sera induced little aggregation. qRT-PCR analyses demonstrated that, compared to FBS-cultured ADSCs, HScultured cells exhibited higher level of mRNA expression of CLDN3, -6, -7, -15, and -16 genes among the tight junction proteins. ADSCs examined at the time of aggregation by culture with HS, BSA, HFF, CBS, or porcine serum showed significantly higher level of mRNA expression of JAM2 among JAM family members. In contrast, cells cultured in FBS, bovine serum or sheep serum, showed lower level of JAM2 expression. Immunocytochemical analyses demonstrated that the aggregates of HS-cultured cells (HS-Agg) showed intense staining against the anti-JAM2 antibody whereas neither nonaggregated cells (HS-Ex) nor FBS-cultured cells exhibited weak staining. Western blot results showed that HS-Agg expressed JAM2 protein more prominently than HS-Ex and FBS-cultured cells, both of latter reveled weaker intensity. These results suggest that the aggregation property of ADSCs during high-density culture would be dependent on the specific components of serum, and that JAM2 molecule could play a role in the animal sera-induced aggregation in vitro.
Testicular expression of CLDN11 (claudin-11), a tight junction protein was examined together with spermatogenesis and circulating testosterone levels in Korean soft-shelled turtle (Pelodiscus maackii). Spermatogenesis started during the breeding season in May and peaked in August when the breeding season ended. Spermiation started in July and peaked in October, showing the typical pattern of spermatogenesis in temperate zone reptiles. Deduced amino acid sequences of P. maackii CLDN11 was highly homologous to those of avian and mammals, suggesting the conserved nature of CLDN11 in amniotes. During the non-breeding season when the spermatogenesis was active and circulating testosterone levels elevated, testicular CLDN11 mRNA and protein (19kDa) levels were high. Strong, wavy CLDN11 immunoreactive strands run parallel to basement membrane in the basal part of the seminiferous epithelium, delaminating the spermatogonia and early spermatocytes in the open compartment. Otherwise, CLDN11 was found beneath the early spermatocytes and in the Sertoli cell cytoplasm perpendicular to basement membrane. In double labeling experiment, punctate ZO-1 immunoreactivity was found within the CLDN11 strands run parallel to the basement membrane as well as at the most periphery of seminiferous epithelium where ZO-1 and CLDN11 in Sertoli cells were mostly cytoplasmic and perpendicular to basement membrane. Together, recruit of CLDN11 and ZO-1 to the inter-Sertoli TJs was tightly coupled with spermatogenic stage. At the breeding season when the circulating testosterone levels and spermatogenic activity remained low, testicular CLDN11 mRNA and protein levels were low. CLDN11 was found at apicolateral contacts between adjacent Sertoli cells devoid of the postmeiotic germ cells, suggesting that CLDN11 between adjacent Sertoli cells also participates in the maintenance of seminiferous lumen. In P. maackii testis, CLDN11 as a structural element of the blood-testis barrier dynamically changed according to spermatogenic activity and circulating androgen levels. This is the first study on the CLDN TJs at the BTB in reptilian testis.
In an effort to uncover the spermatogenic impairment by the polychlorinated biphenyls (PCBs), the expression of tight junctions (TJs) genes important for the formation of the blood testis barrier (BTB) were examined following the 3,3',4,4',5-pentachloro biphenyl (PCB126) treatment in cultured neonatal testis in mice. At 4 days (D4) after 10 and 100 nM PCB126 treatment the expression of claudin-11 was significantly increased when compared with vehicle control. In contrast no difference in occludin and claudin-1 expression was found among the experimental group. On D8, 100 nM PCB126 significantly increased the expression of claudin-11 but not occludin and claudin-1. 1 uM PCB126 treatment significantly decreased expressions of occludin and ciaudin -1, suggesting the general toxic effect on the Sertoli cell. Because PCB126 does not alter the proliferative activity of spermatogenic cells and Sertoli cells in neonatal testis, it is likely that increase in the expression of claudin-11 by low dose of PCB126 may attribute to the alteration of the Sertoli cells differentiation in testis. It also emphasized that PCB126 might have differentially affected the transcription of TJ genes in Sertoli cells. In conclusion, this result suggests that the structure of TJ may be targeted by PCB126 in neonatal testis in mice and that co-PCB is potentially harmful to spermatogenesis by alteration of the development of BTB.