• 제목/요약/키워드: Non-specific immune functions

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Role of RIN4 in Regulating PAMP-Triggered Immunity and Effector-Triggered Immunity: Current Status and Future Perspectives

  • Ray, Sujit Kumar;Macoy, Donah Mary;Kim, Woe-Yeon;Lee, Sang Yeol;Kim, Min Gab
    • Molecules and Cells
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    • 제42권7호
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    • pp.503-511
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    • 2019
  • As sessile organisms, plants have developed sophisticated system to defend themselves against microbial attack. Since plants do not have specialized immune cells, all plant cells appear to have the innate ability to recognize pathogens and turn on an appropriate defense response. The plant innate immune system has two major branches: PAMPs (pathogen associated molecular patterns)-triggered immunity (PTI) and effector-triggered immunity (ETI). The ability to discriminate between self and non-self is a fundamental feature of living organisms, and it is a prerequisite for the activation of plant defenses specific to microbial infection. Arabidopsis cells express receptors that detect extracellular molecules or structures of the microbes, which are called collectively PAMPs and activate PTI. However, nucleotidebinding site leucine-rich repeats (NB-LRR) proteins mediated ETI is induced by direct or indirect recognition of effector molecules encoded by avr genes. In Arabidopsis, plasmamembrane localized multifunctional protein RIN4 (RPM1-interacting protein 4) plays important role in both PTI and ETI. Previous studies have suggested that RIN4 functions as a negative regulator of PTI. In addition, many different bacterial effector proteins modify RIN4 to destabilize plant immunity and several NB-LRR proteins, including RPM1 (resistance to Pseudomonas syringae pv. maculicola 1), RPS2 (resistance to P. syringae 2) guard RIN4. This review summarizes the current studies that have described signaling mechanism of RIN4 function, modification of RIN4 by bacterial effectors and different interacting partner of RIN4 in defense related pathway. In addition, the emerging role of the RIN4 in plant physiology and intercellular signaling as it presents in exosomes will be discussed.

한우에서 임신 초기 발현 차이 혈장 단백질의 단백질체학적 분석 (Proteomic Analysis of Differentially Expressed Plasma Proteins during Early Pregnancy in Hanwoo)

  • 김평희;권대진;오건봉;이휘철;양병철;임기순;민관식;윤종택;진동일;박수봉;황성수
    • Reproductive and Developmental Biology
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    • 제34권3호
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    • pp.235-240
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    • 2010
  • This study was performed to comprehend the plasma proteins expressed specifically during early pregnancy in pregnant or non-pregnant Hanwoo using proteomic analysis technique. Plasma samples (0, 2, 3, 4, 7, and 11 weeks after AI) were obtained from pregnant (P, n=3) or non-pregnant (NP, n=4) Hanwoo, respectively. To evaluate proteins differentially expressed, 2-dimensional electrophoresis (2DE) was conducted. Normalized protein spots were selected for the significant expression variation deviated over two fold in its expression level between two groups; Molecular functions of the proteins were DNA binding, protein binding, hemoglobin binding, ferrochelatase and transporter activity and arylestera, respectively. According to western blotting, haptoglobin was specifically expressed only in NP group during early pregnancy; however, paraoxonase 1 was highly expressed in pregnant group. Based on these results, pregnancy was maintained successfully by the activation of specific plasma proteins associated with immune system and antioxidant regulation during early pregnancy in Hanwoo.

Mannose-binding lectin의 선천성 면역과 질병에 대한 역할 (Roles of Mannose-Binding Lectin on Innate Immunity and Disease)

  • 장호정;박정혜;정경태
    • 생명과학회지
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    • 제20권9호
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    • pp.1420-1425
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    • 2010
  • 선천성 면역이란 감염성 질환에 대응하는 분자들의 네트워크가 반응하는 숙주의 첫 번째 방어 메카니즘이다. 간에서 만들어져 혈액에 존재하는 Mannose-binding lectin (MBL)은 선천성 면역에 관여하는 단백질군인 collectin에 속하는 분자로서 감염성 질병을 유발하는 다양한 세균, 바이러스, 효모, 곰팡이 및 원생동물의 표면에 존재하는 특징적인 당쇄를 인식한다. 이런 감염성 인자들의 표면에 드러난 당쇄의 공통적인 패턴을 MBL이 인식하여 자기(self)와 비자기(non-self)를 구분하기 때문에 MBL을 패턴 인식 분자(pattern recognition molecule)라고 한다. MBL은 MBL2 유전자에 의해 만들어지며, MBL2 유전형은 여러 가지 다형성(polymorphisms)이 있는 것으로 나타났다. MBL2 유전자의 변이는 상당히 많은 사람에서 나타나며, MBL 결여의 원인이다. MBL 결여는 감염성 질환에 대한 감수성을 증가시키므로, MBL의 유전적 변이와 임상적 중요성에 대해 많은 연구가 진행 되어져 왔다. 이 총설은 현재 우리가 알고 있는 MBL의 구조와 기능에 대해 전반적으로 논의하고자 한다.

MicroRNAs in Human Diseases: From Cancer to Cardiovascular Disease

  • Ha, Tai-You
    • IMMUNE NETWORK
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    • 제11권3호
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    • pp.135-154
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    • 2011
  • The great discovery of microRNAs (miRNAs) has revolutionized current cell biology and medical science. miRNAs are small conserved non-coding RNA molecules that post-transcriptionally regulate gene expression by targeting the 3' untranslated region of specific messenger RNAs for degradation or translational repression. New members of the miRNA family are being discovered on a daily basis and emerging evidence has demonstrated that miRNAs play a major role in a wide range of developmental process including cell proliferation, cell cycle, cell differentiation, metabolism, apoptosis, developmental timing, neuronal cell fate, neuronal gene expression, brain morphogenesis, muscle differentiation and stem cell division. Moreover, a large number of studies have reported links between alterations of miRNA homeostasis and pathological conditions such as cancer, psychiatric and neurological diseases, cardiovascular disease, and autoimmune disease. Interestingly, in addition, miRNA deficiencies or excesses have been correlated with a number of clinically important diseases ranging from cancer to myocardial infarction. miRNAs can repress the gene translation of hundreds of their targets and are therefore well-positioned to target a multitude of cellular mechanisms. As a consequence of extensive participation in normal functions, it is quite logical to ask the question if abnormalities in miRNAs should have importance in human diseases. Great discoveries and rapid progress in the past few years on miRNAs provide the hope that miRNAs will in the near future have a great potential in the diagnosis and treatment of many diseases. Currently, an explosive literature has focussed on the role of miRNA in human cancer and cardiovascular disease. In this review, I briefly summarize the explosive current studies about involvement of miRNA in various human cancers and cardiovascular disease.

MicroRNAs in Autoimmune Sjögren's Syndrome

  • Cha, Seunghee;Mona, Mahmoud;Lee, Kyung Eun;Kim, Dong Hee;Han, Kyudong
    • Genomics & Informatics
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    • 제16권4호
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    • pp.19.1-19.11
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    • 2018
  • MicroRNAs (miRNAs), small non-coding RNAs, have been implicated in various diseases and cellular functions as microregulators of gene expression. Although the history of miRNA investigation in autoimmune $Sj{\ddot{o}}gren^{\prime}s$ syndrome (SjS) is fairly short, a substantial amount of data has already been accumulated. These findings clearly indicate potential clinical implications of miRNAs, such as autoantigen expression and autoantibody production, viral miRNAs regulating the calcium signaling pathway, and aberrant immune cell regulation and cytokine production. Research endeavors in the field are currently underway to select disease-specific diagnostic and prognostic biomarkers by utilizing different types of tissues or biological specimens of SjS patients. Various techniques for miRNA analysis with different stringencies have been applied, with the most recent one being next-generation sequencing. This review compiles and highlights differentially-expressed miRNAs in various samples collected from SjS patients and their potential implications in the pathogenesis of SjS. To facilitate the development of miRNA-targeted personalized therapy in the future, we urge more follow-up studies that confirm these findings and elucidate the immunopathological roles of differentially-expressed miRNAs. Furthermore, improved diagnostic criteria for the disease itself will minimize sampling errors in patient recruitment, preventing the generation of inconsistent data.

폐흡충(Paragonimus Tuestermani) 피낭유충에 대한 대식세포의 세포독성에 있어서 항체 및 보체가 미치는 영향 (The effects of antibodies and complement in macrophage-mediated cytotoxicity on metacercariae of the lung fluke, Paragonimus westeymani)

  • 민득영;안명희
    • Parasites, Hosts and Diseases
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    • 제28권2호
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    • pp.91-100
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    • 1990
  • 폐흡충(Paragonimus Tuestermani) 피낭유충을 흰쥐(Wistar) 및 고양이에 감염시키고 감염 힐청이나 분회분리된 IgG또는 보체가 정상 또는 감염 흰쥐 복강 대식세포의 폐흡충 유충 살충에 어떠한 영향을 미치는지 부착 실험 (adherence assay) 및 세포독성을 통하여 관찰하였다. 폐흡충 감염은 복강 대식세포를 비특이적으로 활성화시퍼 대식세포의 유충에 대한 부착률 및 세포독성을 증가시켰으며, 감염 혈청을 첨가하였을 때 항체-의존 세포매개성 세포독성에 의해 배양 6시간 후에 세포 부착률 및 세포독성이 가장 강하였다. 감염 혈청을 56℃에서 30분간 가열하였을 때 IgG 항체 변성에 의해 세포독성이 저하되었다. IgG 및 보체를 첨가한 경우 세포 부착률은 낮았으나 24시간 후에는 유충이 사멸하였다. 그러나 보체의 단독적인 역할은 이 실험에서 알 수 없었다.

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