Abstract
Fibroblastic reticular cells (FRC)는 림프절 T세포 지역에 구조적 골격 형성을 하며 유입 T 세포의 안내길을 제공한다. FRC는 림프절에서 T세포 생물학 발달에 기여한다. 따라서, 이것이 FRC와 T세포 사이에서 FRC의 세포생물학적 근본 기능을 알아보게 하였다. FRC 배양 상등액은 T세포 사멸을 저해하였다. FRC 상등액은 doxorubicin에 대하여 T세포에 Bcl-xL의 발현을 증가시켰다. FRC와 T세포의 공배양은 FRC의 액틴 골격의 변화와 형태적 변화를 유도하였다. 또한, FRC와 T세포의 공배양은 T 세포가 FRC 단일층에 부착하는 결과를 유도하였고 막결합형 intercellular adhesion molecule (ICAM)-1 단백질의 발현은 약간 증가한 반면 용해성 ICAM-1 (sICAM-1) 발현은 시간 의존적으로 드라마틱하게 증가하였다. FRC는 T세포에 의해 분비되는 tumor necrosis factor (TNF) 패밀리들에 의해 CCL5, CXCL1, CXCL5, CXCL16, CCL8, CXCL13와 같은 케모카인들과 ICAM-1 그리고 MMPs의 발현량을 증가시켰다. <TEX>$TNF{\alpha}$</TEX>가 FRC에 처리 되었을때 <TEX>$NF{\kappa}B$</TEX> canonical pathway의 RelA는 핵으로 전좌 되었지만, agonistic anti-<TEX>$LT{\beta}R$</TEX> antibody로 처리된 FRC에서 non-canonical <TEX>$NF{\kappa}B$</TEX> pathway의 RelB의 카운터 파트너인 p100의 분해산물 p52는 핵주변부로 축적되었다. 결론적으로 FRC는 FRC와 T세포 양방향 협력을 통해 T세포 생물학적 기능을 증진한다. 이러한 상호협력 관계는 면역반응 동안 조직의 통합성과 기능을 유지하는데 도움을 줄 것으로 사료된다. Fibroblastic reticular cells (FRCs) form the structural backbone of the T zone provide a guidance path for immigrating T cells in the lymph node (LN). FRCs may contribute directly to developing T-cell biology in the LN and allow analyses of fundamental aspects of FRC biology related to T cells. FRCs inhibited T-cell apoptosis, and FRC culture supernatants strongly induced the expression of Bcl-xL in T cells against doxorubicin. Coculture of FRC and T cells resulted in rearrangements of the actin cytoskeleton, as well as global changes in the morphology of the FRCs. In addition, when cocultured, the T cells adhered to the FRC monolayer, and the membrane intercellular adhesion molecule (ICAM)-1 was slightly increased by day-dependent manner. In contrast, the expression of soluble ICAM-1 was dramatically increased in a day-dependent manner. Several chemokines, such as CCL5, CXCL1, CXCL5, CXCL16, CCL8, CXCL13, and ICAM-1, and MMPs were expressed in FRCs sensed by tumor necrosis factor (TNF) families. Nuclear factor kappa B (<TEX>$NF{\kappa}B$</TEX>)-RelA of the <TEX>$NF{\kappa}B$</TEX> canonical pathway was translocated into FRC nuclear by <TEX>$TNF{\alpha}$</TEX>. In contrast, p52 proteolyzed from p100, a counterpart of RelB of the noncanonical <TEX>$NF{\kappa}B$</TEX> pathway, accumulated in the peripheral FRC nucleus by agonistic anti-<TEX>$LT{\beta}R$</TEX> antibody. In summary, we propose a model in which FRCs engage in bidirectional crosstalk to increase the efficiency of T-cell biology. This cooperative feedback loop may help to maintain tissue integrity and function during immune responses.
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