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CD11c 调控应激状态下的造血干/祖细胞。

CD11c regulates hematopoietic stem and progenitor cells under stress.

机构信息

Cardiac Anesthesia Division, Department of Anesthesiology, Critical Care and Pain Medicine, Boston Children's Hospital, Boston, MA.

Department of Anaesthesia and.

出版信息

Blood Adv. 2020 Dec 22;4(24):6086-6097. doi: 10.1182/bloodadvances.2020002504.

Abstract

β2 integrins are well-known leukocyte adhesion molecules consisting of 4 members: CD11a-d. Their known biological functions range widely from leukocyte recruitment, phagocytosis, to immunological synapse formation, but the studies have been primarily focused on CD11a and CD11b. CD11c is 1 of the 4 members and is extremely homologous to CD11b. It has been well known as a dendritic cell marker, but the characterization of its function has been limited. We found that CD11c was expressed on the short-term hematopoietic stem cells and multipotent progenitor cells. The lack of CD11c did not affect the number of hematopoietic stem and progenitor cells (HSPCs) in healthy CD11c knockout mice. Different from other β2 integrin members, however, CD11c deficiency was associated with increased apoptosis and significant loss of HSPCs in sepsis and bone marrow transplantation. Although integrins are generally known for their overlapping and redundant roles, we showed that CD11c had a distinct role of regulating the expansion of HSPCs under stress. This study shows that CD11c, a well-known dendritic cell marker, is expressed on HSPCs and serves as their functional regulator. CD11c deficiency leads to the loss of HSPCs via apoptosis in sepsis and bone marrow transplantation.

摘要

β2 整合素是众所周知的白细胞黏附分子,由 4 个成员组成:CD11a-d。其已知的生物学功能范围广泛,从白细胞募集、吞噬作用到免疫突触形成,但研究主要集中在 CD11a 和 CD11b 上。CD11c 是这 4 个成员之一,与 CD11b 极其同源。它一直被认为是树突状细胞的标志物,但对其功能的描述有限。我们发现 CD11c 在短期造血干细胞和多能祖细胞上表达。在健康的 CD11c 敲除小鼠中,CD11c 的缺失并不影响造血干细胞和祖细胞(HSPCs)的数量。然而,与其他 β2 整合素成员不同的是,CD11c 缺乏与脓毒症和骨髓移植中 HSPCs 的凋亡增加和显著丢失有关。尽管整合素通常因其重叠和冗余的作用而闻名,但我们表明 CD11c 在应激下调节 HSPCs 的扩增中具有独特的作用。这项研究表明,作为一种众所周知的树突状细胞标志物,CD11c 表达于 HSPCs 上,并作为其功能调节剂。CD11c 缺乏会导致 HSPCs 在脓毒症和骨髓移植中通过凋亡丢失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7116/7757003/b1c145aa1d9a/advancesADV2020002504absf1.jpg

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