Peripheral Tolerance
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immunology Immunology is a branch of biology and medicine that covers the study of Immune system, immune systems in all Organism, organisms. Immunology charts, measures, and contextualizes the Physiology, physiological functioning of the immune system in ...
, peripheral tolerance is the second branch of immunological tolerance, after central tolerance. It takes place in the immune periphery (after T and
B cell B cells, also known as B lymphocytes, are a type of the lymphocyte subtype. They function in the humoral immunity component of the adaptive immune system. B cells produce antibody molecules which may be either secreted or inserted into the plasm ...
s egress from primary lymphoid organs). Its main purpose is to ensure that self-reactive T and B cells which escaped central tolerance do not cause
autoimmune disease An autoimmune disease is a condition that results from an anomalous response of the adaptive immune system, wherein it mistakenly targets and attacks healthy, functioning parts of the body as if they were foreign organisms. It is estimated tha ...
. Peripheral tolerance can also serve a purpose in preventing an immune response to harmless food
antigen In immunology, an antigen (Ag) is a molecule, moiety, foreign particulate matter, or an allergen, such as pollen, that can bind to a specific antibody or T-cell receptor. The presence of antigens in the body may trigger an immune response. ...
s and
allergen An allergen is an otherwise harmless substance that triggers an allergic reaction in sensitive individuals by stimulating an immune response. In technical terms, an allergen is an antigen that is capable of stimulating a type-I hypersensitivi ...
s. Self reactive cells are subject to clonal deletion or clonal diversion. Both processes of peripheral tolerance control the presence and production of self reactive immune cells. Deletion of self-reactive T cells in the thymus is only 60-70% efficient, and naive T cell repertoire contains a significant portion of low-avidity self-reactive T cells. These cells can trigger an autoimmune response, and there are several mechanisms of peripheral tolerance to prevent their activation. Antigen-specific mechanisms of peripheral tolerance include persistent of T cell in quiescence, ignorance of antigen and direct inactivation of effector T cells by either clonal deletion, conversion to
regulatory T cell The regulatory T cells (Tregs or Treg cells), formerly known as suppressor T cells, are a subpopulation of T cells that modulate the immune system, maintain immune tolerance, tolerance to self-antigens, and prevent autoimmune disease. Treg  ...
s (Tregs) or induction of anergy. Tregs, which are also generated during thymic T cell development, further suppress the effector functions of conventional lymphocytes in the periphery.
Dendritic cell A dendritic cell (DC) is an antigen-presenting cell (also known as an ''accessory cell'') of the mammalian immune system. A DC's main function is to process antigen material and present it on the cell surface to the T cells of the immune system ...
s (DCs) participate in the negative selection of autoreactive T cells in the thymus, but they also mediate peripheral immune tolerance through several mechanisms. Dependence of a particular antigen on either central or peripheral tolerance is determined by its abundance in the organism. B Cells have a lower probability that they will express cell surface markers to pose the threat of causing an autoimmune attack. Peripheral tolerance of B cells is largely mediated by B cell dependence on T cell help. However, B cell peripheral tolerance is much less studied.


Cells mediating peripheral tolerance


Regulatory T cells

Tregs are the central mediators of immune suppression and they play a key role in maintaining peripheral tolerance. The master regulator of Treg phenotype and function is Foxp3. Natural Tregs (nTregs) are generated in the thymus during the negative selection. TCR of nTregs shows a high affinity for self-peptides, Induced Tregs (iTreg) develop from conventional naive helper T cells after antigen recognition in presence of TGF-β and IL-2. iTregs are enriched in the gut to establish tolerance to commensal microbiota and harmless food antigens. Regardless of their origin, once present Tregs use several different mechanisms to suppress autoimmune reactions. These include depletion of IL-2 from the environment, secretion of anti-inflammatory cytokines IL-10, TGF-β and IL-35 and induction of apoptosis of effector cells.
CTLA-4 Cytotoxic T-lymphocyte associated protein 4, (CTLA-4) also known as CD152 ( cluster of differentiation 152), is a protein receptor that functions as an immune checkpoint and downregulates immune responses. CTLA-4 is constitutively expressed in ...
is a surface molecule present on Tregs which can prevent
CD28 CD28 (Cluster of Differentiation 28) is a protein expressed on T cells that provides essential co-stimulation, co-stimulatory signals required for T cell activation and survival. When T cells are stimulated through CD28 in conjunction with the T- ...
mediated costimulation of T cells after TCR antigen recognition.  


Tolerogenic DCs

DCs are a major cell population responsible for the initiation of the adaptive immune response. They present short peptides on MHCII, which are recognized by specific TCR. After encountering an antigen with recognition danger or pathogen-associated molecular patterns, DCs start the secretion of proinflammatory cytokines, express costimulatory molecules
CD80 The Cluster of differentiation 80 (also CD80 and B7-1) is a B7, type I membrane protein in the immunoglobulin superfamily, with an extracellular immunoglobulin constant-like domain and a variable-like domain required for receptor binding. It is c ...
and
CD86 Cluster of Differentiation 86 (also known as CD86 and B7-2) is a protein constitutively expressed on dendritic cells, Langerhans cells, macrophages, B-cells (including memory B-cells), and on other antigen-presenting cells. Along with CD80, CD ...
and migrate to the
lymph node A lymph node, or lymph gland, is a kidney-shaped organ of the lymphatic system and the adaptive immune system. A large number of lymph nodes are linked throughout the body by the lymphatic vessels. They are major sites of lymphocytes that includ ...
s to activate naive T cells.  However, immature DCs (iDCs) are able to induce both CD4 and CD8 tolerance. The immunogenic potential of iDCs is weak, because of the low expression of costimulatory molecules and a modest level of MHCII. iDCs perform endocytosis and phagocytosis of foreign antigens and apoptotic cells, which occurs physiologically in peripheral tissues. Antigen-loaded iDCs migrate to the lymph nodes, secrete IL-10, TGF-β and present antigen to the naive T cells without costimulation. If the T cell recognizes the antigen, it is turned into the anergic state, depleted or converted to Treg. iDCs are more potent Treg inducers than lymph node resident DCs. BTLA is a crucial molecule for DCs mediated Treg conversion. Tolerogenic DCs express FasL and
TRAIL A trail, also known as a path or track, is an unpaved lane or a small paved road (though it can also be a route along a navigable waterways) generally not intended for usage by motorized vehicles, usually passing through a natural area. Ho ...
to directly induce apoptosis of responding T cells. They also produce indoleamine 2,3-dioxygenase (IDO) to prevent T cell proliferation. Retinoic acid is secreted to support iTreg differentiation, too. Nonetheless, upon maturation (for example during the infection) DCs largely lose their tolerogenic capabilities.


LNSCs

Aside from dendritic cells, additional cell populations were identified that are able to induce antigen-specific T cell tolerance. These are mainly the members of lymph node stromal cells (LNSCs). LNSCs are generally divided into several subpopulations based on the expression of gp38 ( PDPN) and CD31 surface markers. Among those, only fibroblastic reticular cells and lymphatic endothelial cells (LECs) were shown to play a role in peripheral tolerance. Both of those populations are able to induce CD8 T cell tolerance by the presentation of the endogenous antigens on MHCI molecules. LNSCs lack expression of the
autoimmune regulator The autoimmune regulator (AIRE) is a protein that in humans is encoded by the ''AIRE'' gene. It is a 13Kilo-base pair, kbp gene on chromosome 21q22.3 that encodes 545 amino acids. AIRE is a transcription factor expressed in the Thymus#Medulla, me ...
, and the production of autoantigens depends on transcription factor Deaf1. LECs express
PD-L1 Programmed death-ligand 1 (PD-L1) also known as cluster of differentiation 274 (CD274) or B7 homolog 1 (B7-H1) is a protein that in humans is encoded by the ''CD274'' gene. Programmed death-ligand 1 (PD-L1) is a 40kDa type 1 transmembrane prote ...
to engage
PD-1 Programmed cell death protein 1 (PD-1), (CD279 cluster of differentiation 279). PD-1 is a protein encoded in humans by the ''PDCD1'' gene. PD-1 is a cell surface receptor on T cells and B cells that has a role in regulating the immune system's re ...
on CD8 T cells to restrict self-reactivity. LNSCs can drive the CD4 T cell tolerance by the presentation of the peptide-MHCII complexes, which they acquired from the DCs. On the other hand, LECs can serve as a self-antigen reservoir and can transport self-antigens to DCs to direct self-peptide-MHCII presentation to CD4 T cells. In
mesenteric lymph nodes The superior mesenteric lymph nodes may be divided into three principal groups: * mesenteric lymph nodes * ileocolic lymph nodes * mesocolic lymph nodes Structure Mesenteric lymph nodes The mesenteric lymph nodes or mesenteric glands are one of ...
(mLN), LNSCs can induce Tregs directly by secretion of TGF-β or indirectly by imprinting mLN-resident DCs.


Intrinsic mechanisms of T cell peripheral tolerance

Although the majority of self-reactive T cell clones are deleted in the thymus by the mechanisms of central tolerance, low affinity self-reactive T cells continuously escape to the immune periphery. Therefore, additional mechanisms exist to prevent self-reactive and unrestained T cells responses.


Quiescence

When naive T cells exit the
thymus The thymus (: thymuses or thymi) is a specialized primary lymphoid organ of the immune system. Within the thymus, T cells mature. T cells are critical to the adaptive immune system, where the body adapts to specific foreign invaders. The thymus ...
, they are in a quiescent state. That means they are in the non-proliferative, G0 stage of the
cell cycle The cell cycle, or cell-division cycle, is the sequential series of events that take place in a cell (biology), cell that causes it to divide into two daughter cells. These events include the growth of the cell, duplication of its DNA (DNA re ...
and they have low metabolic, transcriptional and translational activities, but still retain the capacity to enter the cell cycle. Quiescence can prevent naive T cell activation after tonic signaling, meaning that T cells may be constitutively activated when not in the presence of a ligand. After antigen exposure and costimulation, naive T cells start the process called quiescence exit, which results in proliferation and effector differentiation. Naive cells must enter and exit a quiescent state at the proper timing in their life cycle. If T cells exit a quiescence prematurely there is a lack of tolerance to potential self-reactive cells. T cells rely on negative regulators to keep them in a quiescence state until they are ready for exit, the down regulation of negative regulators increases T cell activation. Premature and over activation of T cells can lead to harmful down stream responses and possibly trigger an autoimmune response. As cells exit a quiescent state they will up regulate enzymes that are responsible for production of essential pathways (nucleic acids, proteins, carbohydrates, etc.). At this stage the T cell will enter the cell cycle and continue to be metabolically active.


Ignorance

When self-reactive T cells escape thymic deletion they may enter an ignorant state. Self-reactive T cells can fail to initiate immune response after recognition of self-antigen. These T cells are not classified as dysfunctional members of the immune response, rather they are antigen-inexperienced naive cells that will remain in circulation. These cells remain the ability to become activated if in the presence of the correct stimuli. Ignorance can be seen in situations where there is not a high enough concentration of antigen to trigger activation. The intrinsic mechanism of ignorance is when the affinity of TCR to antigen is too low to elicit T cell activation. There is also an extrinsic mechanism. Antigens, which are present in generally low numbers, can´t stimulate T cells sufficiently. Additionally, there are anatomical barriers that prohibit the activation of these T cells. These specialized mechanisms ensuring ignorance by the immune system have developed in so-called immune privileged organs. T cells can overcome ignorance through a sufficient signal from signaling molecules (cytokines, infection, inflammatory stimuli, etc.) and induce an autoimmune response. In the inflammatory context, T cells can override ignorance and induce autoimmune disease.


Anergy

Anergy is a state of functional unresponsiveness induced upon self antigen recognition. T-cells can be made non-responsive to antigens presented if the T-cell engages an MHC molecule on an antigen presenting cell (signal 1) without engagement of costimulatory molecules (signal 2). Co-stimulatory molecules are upregulated by cytokines (signal 3) in the context of acute inflammation. Without pro-inflammatory cytokines, co-stimulatory molecules will not be expressed on the surface of the antigen presenting cell, and so anergy will result if there is an MHC-TCR interaction between the T cell and the APC.  TCR stimulation leads to translocation of
NFAT Nuclear factor of activated T-cells (NFAT) is a family of transcription factors shown to be important in immune response. One or more members of the NFAT family is expressed in most cells of the immune system. NFAT is also involved in the developme ...
into the nucleus. In the absence of costimulation, there is no
MAPK A mitogen-activated protein kinase (MAPK or MAP kinase) is a type of serine/threonine-specific protein kinases involved in directing cellular responses to a diverse array of stimuli, such as mitogens, osmotic stress, heat shock and proinflamm ...
signaling in T cells and translocation of transcription factor AP-1 into the nucleus is impaired. This disbalance of transcription factors in T cells results in the expression of several genes involved in forming an anergic state.  Anergic T cells show long-lasting epigenetic programming that silences effector cytokine production. Anergy is reversible and T cells can recover their functional responsiveness in the absence of the antigen.  


Peripheral deletion

Before release into the periphery T cells are subjected to thymic deletion if they prove to have the capacity to react with self. Peripheral deletion is the disposal of potential self reactive T cells that escaped thymic deletion. After T cell response to co-stimulation-deficient antigen, a minor population of T cells develop anergy and a large proportion of T cells are rapidly lost by apoptosis. This cell death can be mediated by intrinsic pro-apoptotic family member
BIM Building information modeling (BIM) is an approach involving the generation and management of digital representations of the physical and functional characteristics of buildings or other physical assets and facilities. BIM is supported by vario ...
. The balance between proapoptotic BIM and the antiapoptotic mediator
BCL-2 Bcl-2, encoded in humans by the ''BCL2'' gene, is the founding member of the Bcl-2 family of regulator proteins. BCL2 blocks programmed cell death (apoptosis) while other BCL2 family members can either inhibit or induce it. It was the first a ...
determine the eventual fate of the tolerized T cell.  There are also extrinsic mechanisms of deletion mediated by the cytotoxic activity of Fas/FasL or TRAIL/ TRAILR interaction. Cell death can be mediated by intrinsic of extrinsic methods as mentioned. In most instances there is an up regulation of death markers or the presence of Bcl-2 proteins, which are proteins that are essential in facilitating programmed cell death.


Immunoprivileged organs

Immunopriviledged organs evolved mechanisms in which specialized tissue cells and immune cells can mount an appropriate response without disturbing the specialized tissue. Immunopathogenic disturbances are not present in a variety of specialized organs such as; the eyes, reproductive organs and the central nervous system. These areas are protected by several mechanisms: Fas-ligand expression binds Fas on lymphocytes inducing apoptosis, anti-inflammatory cytokines (including TGF-beta and
interleukin 10 Interleukin 10 (IL-10), also known as human cytokine synthesis inhibitory factor (CSIF), is an anti- inflammatory cytokine. In humans, interleukin 10 is encoded by the ''IL10'' gene. IL-10 signals through a receptor complex consisting of two IL- ...
) and blood-tissue-barrier with
tight junctions Tight junctions, also known as occluding junctions or ''zonulae occludentes'' (singular, ''zonula occludens''), are multiprotein junctional complexes between epithelial cells, sealing and preventing leakage of solutes and water. They also play a ...
between endothelial cells.


Split tolerance

Split tolerance describes how some antigens can trigger an immune response in one aspect of the immune system and the same antigen could not trigger a response in another set of immune cells. Since many pathways of immunity are interdependent, they do not all need to be tolerized. For example, tolerized T cells will not activate auto-reactive B cells. Without this help from CD4 T cells, the B cells will not be activated.


References

{{Immune system Immune system Immunology