• 제목/요약/키워드: L-type amino acid transporter 1

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Physiological, Pharmacological and Toxicological Implications of Heterodimeric Amino Acid Transporters

  • Kanai, Yoshikatsu;Endou, Hitoshi
    • The Korean Journal of Physiology and Pharmacology
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    • 제8권3호
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    • pp.117-127
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    • 2004
  • The heterodimeric amino acid transporter family is a subfamily of SLC7 solute transporter family which includes 14-transmembrane cationic amino acid transporters and 12-transmembrane heterodimeric amino acid transporters. The members of heterodimeric amino acid transporter family are linked via a disulfide bond to single membrane spanning glycoproteins such as 4F2hc (4F2 heavy chain) and rBAT $(related\;to\;b^0,\;^+-amino\;acid\;transporter)$. Six members are associated with 4F2hc and one is linked to rBAT. Two additional members were identified as ones associated with unknown heavy chains. The members of heterodimeric amino acid transporter family exhibit diverse substrate selectivity and are expressed in variety of tissues. They play variety of physiological roles including epithelial transport of amino acids as well as the roles to provide cells in general with amino acids for cellular nutrition. The dysfunction or hyperfunction of the members of the heterodimeric amino acid transporter family are involved in some diseases and pathologic conditions. The genetic defects of the renal and intestinal transporters $b^{0,+}AT/BAT1\;(b^{0,+}-type\;amino\;acid\;transporter/b^{0,+}-type\;amino\;acid\;transporter\;1)$ and $y^+LAT1\;(y^+L-type\;amino\;acid\;transporter\;1)$ result in the amino aciduria with sever clinical symptoms such as cystinuria and lysin uric protein intolerance, respectively. LAT1 is proposed to be involved in the progression of malignant tumor. xCT (x-C-type transporter) functions to protect cells against oxidative stress, while its over-function may be damaging neurons leading to the exacerbation of brain damage after brain ischemia. Because of broad substrate selectivity, system L transporters such as LAT1 transport amino acid-related compounds including L-Dopa and function as a drug transporter. System L also interacts with some environmental toxins with amino acid-related structure such as cysteine-conjugated methylmercury. Therefore, these transporter would be candidates for drug targets based on new therapeutic strategies.

JPH203, a selective L-type amino acid transporter 1 inhibitor, induces mitochondria-dependent apoptosis in Saos2 human osteosarcoma cells

  • Choi, Dae Woo;Kim, Do Kyung;Kanai, Yoshikatsu;Wempe, Michael F.;Endou, Hitoshi;Kim, Jong-Keun
    • The Korean Journal of Physiology and Pharmacology
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    • 제21권6호
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    • pp.599-607
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    • 2017
  • Most normal cells express L-type amino acid transporter 2 (LAT2). However, L-type amino acid transporter 1 (LAT1) is highly expressed in many tumor cells and presumed to support their increased growth and proliferation. This study examined the effects of JPH203, a selective LAT1 inhibitor, on cell growth and its mechanism for cell death in Saos2 human osteosarcoma cells. FOB human osteoblastic cells and Saos2 cells expressed LAT1 and LAT2 together with their associating protein 4F2 heavy chain, but the expression of LAT2 in the Saos2 cells was especially weak. JPH203 and BCH, a non-selective L-type amino acid transporter inhibitor, potently inhibited L-leucine uptake in Saos2 cells. As expected, the intrinsic ability of JPH203 to inhibit L-leucine uptake was far more efficient than that of BCH in Saos2 cells. Likewise, JPH203 and BCH inhibited Saos2 cell growth with JPH203 being superior to BCH in this regard. Furthermore, JPH203 increased apoptosis rates and formed DNA ladder in Saos2 cells. Moreover, JPH203 activated the mitochondria-dependent apoptotic signaling pathway by upregulating pro-apoptotic factors, such as Bad, Bax, and Bak, and the active form of caspase-9, and downregulating anti-apoptotic factors, such as Bcl-2 and Bcl-xL. These results suggest that the inhibition of LAT1 activity via JPH203, which may act as a potential novel anti-cancer agent, leads to apoptosis mediated by the mitochondria-dependent intrinsic apoptotic signaling pathway by inducing the intracellular depletion of neutral amino acids essential for cell growth in Saos2 human osteosarcoma cells.

사람 골모세포 FOB에서 아미노산 수송계 L의 발현 및 역할 (Expression and Role of the System L Amino Acid Transporter in FOB Human Osteoblast Cells)

  • 김창현;박주철;김도경
    • 한국식품영양과학회지
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    • 제34권9호
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    • pp.1367-1374
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    • 2005
  • 사람의 정상 골모세포 FOB에서 아미노산 수송계 L의 발현 및 이들 수송계 L을 통한 아미노산 수송특성을 밝히기 위하여, FOB 세포에서 RT-PCR, western blot 분석 및 아미노산 uptake 실험 등을 수행하여 다음과 같은 결과들을 얻었다. FOB 세포에서 아미노산 수송계 L의 두 아형인 LAT1, LAT2및 그들의 보조인자 4F2hc의 발현을 확인할 수 있었다. FOB 세포에서 $_{L}-leucine$의 수송은 $Na^+$-비의존적이었다. FOB 세포에서 $_{L}-leucine$의 수송은 아미노산 수송계 L의 선택적 억제제인 BCH에 의해 완전히 차단되었다. FOB 세포에서 여러 아미노산들에 의한 L-leucine수송억제 실험결과는 Xenopus oocyte에서 시행되어 보고되어진 LAT1과 LAT2 수송억제 실험 결과의 특성을 모두 포함하였다. 본 연구의 결과로 사람의 정상 골모세포주인 FOB에서 는 세포성장 및 증식을 위한 중성 아미노산의 수송에 아미노산 수송계 L의 두 아형인 LAT1과 LAT2가 중요한 역할을 하고 있음을 확인할 수 있었다.

사람 암세포주들에서 아미노산 수송체 LAT1 mRNA 발현과 아미노산 L - Leucine 수송의 상관관계 (Correlation Between the Expression of Amino Acid Transporter LAT1 mRNA and the Amount of L - Leucine Transport in Human Cancer Cell Lines)

  • 김도경;송수근;김인진;국중기
    • 한국식품영양과학회지
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    • 제33권9호
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    • pp.1451-1456
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    • 2004
  • 사람의 여러 암세포주들에서 아미노산 수송체 LAT1 및 그 보조인자 4F2hc mRNA의 발현과 LAT1의 대표적 기질인 L-leucine 수송을 조사하여 이들 사이의 상관관계를 밝히기 위해, 암세포주들에서 northern blot analysis 및 uptake 실험 등을 시행하여 다음과 같은 결과를 얻었다. 조사한 26 종류의 사람 암 유래 세포주들에서 LAT1 mRNA의 뚜렷한 발현을 확인할 수 있었으나 그 발현양에는 차이가 있었다. 조사한 26종류의 사람 암 유래 세포주들에서 4F2hc mRNA의 뚜렷한 발현을 확인할 수 있었으며, LAT1의 경우에서와 같이 발현하는 정도가 조금씩 다름을 확인할 수 있었다. 사람의 암 유래 세포주들에서 아미노산 transporter에 의한 L-[$^{14}C$]leucine 수송을 확인할 수 있었다. 사람의 암세포주들에서 LAT1 mRNA의 발현정도가 높을수록 L-[$^{14}C$]leucine의 수송능력이 증가함을 알 수 있었다. 사람의 암세포주들에서 4F2hc mRNA의 발현정도가 높을수록 L-[$^{14}C$]leucine 수송 능력이 증가하는 경향은 보였으나, 통계적인 유의성은 없었다. 본 연구의 결과에 의해 사람 암세포주들에서 아미노산 transporter LAT1의 발현과 아미노산 L-leucine의 수송 사이와의 상관관계를 확인할 수 있었으며, 아미노산 transporter LAT1의 특이적 억제에 의한 암세포의 성장 억제에 관한 또 하나의 방향성을 제시할 수 있을 것으로 사료된다.

Reabsorption of Neutral Amino Acids Mediated by Amino Acid Transporter LAT2 and TAT1 in The Basolateral Membrane of Proximal Tubule

  • Park Sun Young;Kim Jong-Keun;Kim In Jin;Choi Bong Kyu;Jung Kyu Yong;Lee Seoul;Park Kyung Jin;Chairoungdua Arthit;Kanai Yoshikatsu;Endou Hitoshi;Kim Do Kyung
    • Archives of Pharmacal Research
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    • 제28권4호
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    • pp.421-432
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    • 2005
  • In order to understand the renal reabsorption mechanism of neutral amino acids via amino acid transporters, we have isolated human L-type amino acid transporter 2 (hLAT2) and human T-type amino acid transporter 1 (hTAT1) in human, then, we have examined and compared the gene structures, the functional characterizations and the localization in human kidney. Northern blot analysis showed that hLAT2 mRNA was expressed at high levels in the heart, brain, placenta, kidney, spleen, prostate, testis, ovary, lymph node and the fetal liver. The hTAT1 mRNA was detected at high levels in the heart, placenta, liver, skeletal muscle, kidney, pancreas, spleen, thymus and prostate. Immunohistochemical analysis on the human kidney revealed that the hLAT2 and hTAT1 proteins coexist in the basolateral membrane of the renal proximal tubules. The hLAT2 transports all neutral amino acids and hTAT1 transports aromatic amino acids. The basolateral location of the hLAT2 and hTAT1 proteins in the renal proximal tubule as well as the amino acid transport activity of hLAT2 and hTAT1 suggests that these transporters contribute to the renal reabsorption of neutral and aromatic amino acids in the basolateral domain of epithelial proximal tubule cells, respectively. Therefore, LAT2 and TAT1 play essential roles in the reabsorption of neutral amino acids from the epithelial cells to the blood stream in the kidney. Because LAT2 and TAT1 are essential to the efficient absorption of neutral amino acids from the kidney, their defects might be involved in the pathogenesis of disorders caused by a disruption in amino acid absorption such as blue diaper syndrome.

사람 두경부 편평세포암종 HEp2 세포에서 BCH에 의한 세포성장 억제기전 (Mechanism of Growth Inhibition by BCH in HEp2 Human Head and Neck Squamous Cell Carcinoma)

  • 최봉규;정규용;조선호;김춘성;김도경
    • 한국식품영양과학회지
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    • 제37권5호
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    • pp.555-560
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    • 2008
  • 사람 두경부 편평세포암종 HEp2 세포를 이용하여 아미노산 수송계 L 억제제인 BCH의 암세포 성장억제에 미치는 효과와 세포성장 억제기전을 밝히기 위해 HEp2 세포에서 uptake 실험, MTT 분석, DNA fragmentation 분석 및 immunoblotting 등을 시행하여 다음과 같은 결과를 얻었다. 아미노산 수송계 L 억제제인 BCH는 L-leucine uptake를 농도 의존적으로 억제하였으며, 그 $IC_{50}$$ 51.2{\pm}3.8{\mu}M$로 산출되었다. BCH는 HEp2 세포의 성장을 시간과 농도에 의존적으로 억제하였다. BCH를 처리한 실험군에서 DNA fragmentation 현상은 볼 수 없었다. BCH를 처리한 실험군에서 procaspase-3과 procaspase-7의 proteolytic cleavage 현상은 볼 수 없었다. 본 연구의 결과로서 사람 두경부 편평세포 암종 HEp2 세포에서 아미노산 수송계 L 억제제 BCH는 LAT1 활성을 억제하여 세포성장에 필수적인 L-leucine 등 중성아미노산의 세포 내 고갈을 유도함으로써 HEp2 세포의 성장억제를 유도할 가능성이 있는 것으로 사료된다.

사람 골육종 세포 Saos2에서 아미노산 수송계 L의 발현 및 기능적 특성 (EXPRESSION AND FUNCTIONAL CHARACTERIZATION OF AMINO ACID TRANSPORT SYSTEM L IN SAOS2 HUMAN OSTEOGENIC SARCOMA CELLS)

  • 김수관;김현호;김창현;김도경
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제32권3호
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    • pp.200-208
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    • 2006
  • Amino acids are required for protein synthesis and energy sources in all living cells. The amino acid transport system L is a major nutrient transport system that is responsible for $Na^+$-independent transport of neutral amino acids including several essential amino acids. In malignant tumors, the L-type amino acid transporter 1 (LAT1), the first isoform of system L, is highly expressed to support tumor cell growth. In the present study, the expression and functional characterization of amino acid transport system L were, therefore, investigated in Saos2 human osteogenic sarcoma cells. RT-PCR and western blot analyses have revealed that the Saos2 cells expressed the LAT1 and the L-type amino acid transporter 2 (LAT2), the second isoform of system L, together with their associating protein heavy chain of 4F2 antigen (4F2hc) in the plasma membrane, but the expression of LAT2 was very weak. The uptakes of [${14}^C$]L-leucine by Saos2 cells were $Na^+$-independent and were completely inhibited by the system L selective inhibitor, 2-aminobicyclo-(2,2,1)-heptane-2-carboxylic acid (BCH). The affinity of [${14}^C$]L-leucine uptake and the inhibition profiles of [${14}^C$]L-leucine uptake by various amino acids in the Saos2 cells were comparable with those for the LAT1 expressed in Xenopus oocytes. The majority of [${14}^C$]L-leucine uptake is, therefore, mediated by LAT1 in the Saos2 cells. These results suggest that the transports of neutral amino acids including several essential amino acids into Saos2 human osteogenic sarcoma cells are for the most part mediated by LAT1. Therefore, the Saos2 human osteogenic sarcoma cells are excellent tools for examine the properties of LAT1. Moreover, the specific inhibition of LAT1 in tumor cells might be a new rationale for anti-tumor therapy.

치주인대섬유모세포의 분화과정에서 아미노산 수송계 L의 발현 (Expression of amino acid transport system L in the differentiation of periodontal ligament fibroblast cells)

  • 황규영;김도경;김창현;장현선;박주철;최성미;김병옥
    • Journal of Periodontal and Implant Science
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    • 제36권3호
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    • pp.783-796
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    • 2006
  • The periodontium is a topographically complex organ consisting of epithelial tissue, soft and mineralized tissues. Structures comprising the periodontium include the gingiva, periodontal ligament (PDL) , cementum and the alveolar bone. The molecular mechanism of differentiation in PDL fibroblast cells remain unclear. Amino acid transporters play an important role in supplying nutrition to normal and cancer cells and for cell proliferation. Amino acid transport system L is a major nutrient transport system responsible for the Na+-independent transport of neutral amino acids including several essential amino acids. The system L is divided into two major subgroups, the L-type amino acid transporter 1 (LAT1) and the L-type amino acid transporter 2 (LAT2). In this study, the expression pattern of amino acid transport system L was, therefore, investigated in the differentiation of PDL fibroblast cells. To determine the expression level of amino acid transport system L participating in intracellular transport of amino acids in the differentiation of PDL fibroblast cells, it was examined by RT-PCR, observation of cell morphology, Alizaline red-S staining and uptake analysis after inducing experimental differentiation in PDL fibroblast cells isolated from mouse molar teeth. The results are as follows. 1. The LAT1 mRNA was expressed in the early stage of PDL fibroblast cell differentiation. This expression level was gradually reduced by differentiation- inducing time and it was not observed after the late stage. 2. The expression level of LAT2 mRNA was increased in time-dependent manner during differentiation induction of PDL fibroblast cells. 3. There was no changes in. the expression level of 4F2hc mRNA, the cofactor of LAT1 and LAT2, during differentiation of PDL fibroblast cells. 4. The expression level of ALP mRNA was gradually increased and the expression level of Col I mRNA was decreased during differentiation of PDL fibroblast cells. 5. The L-leucine transport was reduced by time from the early stage to the late stage in PDL fibroblast cell differentiation. As the results, it is considered that among neutral ammo acid transport system L in differentiation of PDL fibroblast cells, the LATl has a key role in cell proliferation in the early stage of cell differentiation and the LAT2 has an important role in the late stage of cell differentiation for providing cells with neutral amino acids including several essential amino acids.

구강 편평세포암종 KB세포에서 아미노산 수송억제제 BCH에 의한 세포성장 억제 (Induction of Growth Inhibition by BCH in KB Human Oral Epidermoid Carcinoma Cells)

  • 윤정훈;김윤배;김도경
    • 한국식품영양과학회지
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    • 제32권5호
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    • pp.758-763
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    • 2003
  • 구강 편평 세포암종 KB 세포를 이용하여 아미노산 수송계 L억제제인 BCH의 세포 성장억제에 미치는 효과를 밝히기 위해, KB세포에서 uptake실험, MTT분석 및 DNA frag-mentation분석 등을 시행하여 다음과 같은 결과를 얻었다. KB 세포에서는 아미노산 수송계 L 중에서 LAT1과 그 보조인자 4F2hc를 통해 BCH및 중성 아미노산들이 수송되었다. BCH는 시간과 농도에 의존적으로 KB세포의 성장을 억제시켰다. BCH를 처리한 실험군에서 DNA fragmentation 현상은 볼 수 없었다. 본 연구의 결과로서 구강암 세포주인 구강 편평세포암종 KB 세포에서 LAT1과 그 보조인자 4F2hc를 통해 BCH및 중성 아미노산의 수송이 이루어지고 있다는 것을 확인할 수 있었으며 BCH는 이 LAT1을 차단하여 중성 아미노산들의 세포 내 고갈을 유도함으로서 KB 세포 성장의 억제를 유도하는 것으로 사료된다.

아미노산 수송체 TAT1에 의한 방향족 아미노산의 수송특성 (Transport Properties of Aromatic Amino Acids by Amino Acid Transporter TAT1)

  • 김윤배;김명수;윤정훈;박주철;국중기;정해만;최봉규;정규용;김종근
    • 한국식품영양과학회지
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    • 제31권5호
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    • pp.775-781
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    • 2002
  • hTATl에 의해 수송되는 방향족 아미노산들의 수송특성을 밝히기 위해 hTATl의 cRNA를 미세주입한 Xenopus laevis oocyte에서 hTATl에 의 해 유도되는 방향족 아미노산의 up-take를 여러 조건 하에서 관찰하였긴. hTATl은 L-[$^{14}$ C]tryp-tophan의 uptake를 유도하였으며, 그 uptake는 $Na^{+}$-과 Cl$^{-}$-비 의존적이었다. hTATl은 L-($^{14}$ C)tryptophan의 uptake를 시간의 존적으로 유도함을 알 수 있었다. hTATl에 의한 L-($^{14}$ C) tryptophan의 uptake는 방향족 아미노산인 phenylalanine, tyrosine 및 tryptophan에 의해서 억제되었으며 , hTATl에 의한 아미노산들의 uptake 실험에서 L-($^{14}$ C)phenylalanine, L-($^{14}$ C)tyrosine 및 L-($^{14}$ C)tryptophan의 수송을 확인하였다 hTATl에 의 한 L-($^{14}$ C)tryptophan의 uptake는 포화되었으며, Km치는 452.2$\pm$27.8 UM, V$_{max}$ 값은 2.1 $\pm$0.3 pmol/oocyte/min 이었다. L-($^{14}$ C)tyrosine 및 L-[$^{14}$ C]phenylalanine의 Km치는 각각 636.3$\pm$59.4 UM과 740.5$\pm$96.7 HM이었다. 실험용액의 pH 5.5에서 8.5까지의 변화는 hTATl에 의한 L-[$^{14}$ C]tfpto- phan의 uptake에 별다른 영향을 미치지 못하였다. hTATl의 CRNA를 미 세주입한 oocyte에서 배양시간 의존적 인 L-($^{14}$ C) tryptophan의 efflux를 볼 수 있었으며, 이 efflux는 oocyte 외 용액의 tryptophan존재 유무에는 영향을 받지 않았다. 따라서 본 연구의 결과로 hTATl이 상피세포로부터 혈류로의 방향족 아미노산의 수송에 중요한 역할을 할 것으로 사료된다.