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Schaffer, E.

Publications and source records attributed to Schaffer, E..

4 recordsLinked to original sources

Tissue-specific tolerance mechanisms and lymph node co-drainage converge to shape T cell immunity in the upper digestive system and regulate pancreatic cancer progression

The liver, pancreas, and duodenum share lymph nodes (LNs), providing a unique system to examine how tissue origin of self-antigens shapes T cell fate. Comparing mice expressing ovalbumin (OVA) from distinct subcellular compartments, we found that cytosolic OVA from liver or pancreas, but not gut, was immunologically ignored. High-dose hepatic secreted OVA triggered antigen-specific T cell deletion, whereas secreted pancreatic and intestinal OVA induced regulatory T (Treg) cells, revealing immunological ignorance, clonal deletion and Treg cell generation as tissue-specific tolerance mechanisms. Of these, LN co-drainage only influenced Treg cell induction, establishing gut-pancreas-liver axes: Intestinal viral infection rendered hepatocyte- and exocrine pancreas-specific T cells inflammatory; liver injury promoted pancreas- and gut-directed responses. These self-reactive T cells caused tissue destruction but enhanced pancreatic tumor control when neoantigen OVA was secreted but not cytosolic. Thus, LN co-drainage and tissue-specific tolerance mechanisms jointly shape immune homeostasis and disease susceptibility in the upper digestive system.

immunology↗

T cell fate is dictated by different antigen presenting cells in response to dietary versus gut epithelial self-antigen

We investigated whether T cell responses and antigen-presenting cell (APC) requirements in gut-draining lymph nodes differ by antigen source, diet versus epithelium. Using mice fed ovalbumin (OVA) or expressing secreted (s), cytosolic (c), or transmembrane (tm) epithelial OVA, we compared OVA-specific T cell fates. At baseline and after reovirus infection, T cell responses were comparable across models. However, helminth infection induced Th2 cell polarization in sOVA and tmOVA but not cOVA or OVA-fed mice. BATF3 APCs were indispensable for CD4 T cell proliferation only in cOVA mice yet drove Treg cell differentiation across all epithelial OVA models. In contrast, antigen presentation by ROR{gamma}tMHC-II APCs was exclusively required for Treg cell induction by dietary OVA. These distinct APC dependencies correlated with susceptibility to pathology elicited by dietary versus epithelial self-antigens. Thus, antigen origin and presentation context are integrated to shape T cell fate, a new framework for predicting gut immune outcomes.

immunology↗

Coordinated Tbx3 / Tbx5 transcriptional control of the adult ventricular conduction system

The cardiac conduction system (CCS) orchestrates the electrical impulses that enable coordinated contraction of the cardiac chambers. The T-box transcription factors TBX3 and TBX5 are required for cardiac conduction system development and associated with overlapping and distinct human cardiac conduction system diseases. We evaluated the coordinated role of Tbx3 and Tbx5 in the murine ventricular conduction system (VCS). We engineered a compound Tbx3:Tbx5 conditional knockout allele for both genes located in cis on mouse chromosome 5. Conditional deletion of both T-box transcriptional factors in the ventricular conduction system, using the VCS-specific MinK:Cre, caused loss of VCS function and molecular identity. Combined Tbx3 and Tbx5 deficiency in the adult VCS led to conduction defects, including prolonged PR and QRS intervals and elevated susceptibility to ventricular tachycardia. These electrophysiological defects occurred prior to detectable alterations in cardiac contractility or histologic morphology, indicative of a primary conduction system defect. Tbx3:Tbx5 double knockout VCS cardiomyocytes revealed a transcriptional shift towards non-CCS-specialized working myocardium, indicating a change to their cellular identity. Furthermore, optical mapping revealed a loss of VCS-specific conduction system propagation. Collectively, these findings indicate that Tbx3 and Tbx5 coordinate to control VCS molecular fate and function, with implications for understanding cardiac conduction disorders in humans.

developmental biology↗

Behavioral fingerprinting of the naked mole-rat uncovers signatures of eusociality and social touch

The East African naked mole-rat (Heterocephalus glaber) lives in cooperative subterranean colonies and displays a capacity to recognize social novelty, rank, and identity. The sensory cues used for social recognition remain poorly understood, especially because many of their senses are either lost or greatly reduced in comparison to other mammals. Here, we found that naked mole-rats actively touch faces 100% of the time they encounter one another in a tunnel test, followed by milliseconds speed determination of the rank of the other animal. Even in an open arena, naked mole-rats engage in face-to-face touch hundreds of times in a 10-minute social pairing and colonies do so tens of thousands of times over a 24-hour period in their home environment. To demonstrate the prominence of face touch at a molecular level, we show that social housing conditions lead to widespread activation of mechanosensory ion channels, including Piezo2, in neurons that innervate the face, but not the body. Lastly, to determine the ethological relevance of face touch, we reduced its capacity with facial whisker trimming and revealed an apparent inability for animals to recognize colony members. Together, these findings uncover face touch as a prominent social behavior in naked mole-rats that is intimately linked to social recognition.

neuroscience↗