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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Lamin B receptor regulates the growth and maturation of myeloid progenitors via its sterol reductase domain: implications for cholesterol biosynthesis in regulating myelopoiesis.
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Lamin B receptor regulates the growth and maturation of myeloid progenitors via its sterol reductase domain: implications for cholesterol biosynthesis in regulating myelopoiesis.

机译:Lamin B受体通过其固醇还原酶结构域调节髓样祖细胞的生长和成熟:对胆固醇生物合成的调控,对骨髓生成的影响。

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摘要

Lamin B receptor (LBR) is a bifunctional nuclear membrane protein with N-terminal lamin B and chromatin-binding domains plus a C-terminal sterol Delta(14) reductase domain. LBR expression increases during neutrophil differentiation, and deficient expression disrupts neutrophil nuclear lobulation characteristic of Pelger-Huet anomaly. Thus, LBR plays a critical role in regulating myeloid differentiation, but how the two functional domains of LBR support this role is currently unclear. We previously identified abnormal proliferation and deficient functional maturation of promyelocytes (erythroid, myeloid, and lymphoid [EML]-derived promyelocytes) derived from EML-ic/ic cells, a myeloid model of ichthyosis (ic) bone marrow that lacks Lbr expression. In this study, we provide new evidence that cholesterol biosynthesis is important to myeloid cell growth and is supported by the sterol reductase domain of Lbr. Cholesterol biosynthesis inhibitors caused growth inhibition of EML cells that increased in EML-derived promyelocytes, whereas cells lacking Lbr exhibited complete growth arrest at both stages. Lipid production increased during wild-type neutrophil maturation, but ic/ic cells exhibited deficient levels of lipid and cholesterol production. Ectopic expression of a full-length Lbr in EML-ic/ic cells rescued both nuclear lobulation and growth arrest in cholesterol starvation conditions. Lipid production also was rescued, and a deficient respiratory burst was corrected. Expression of just the C-terminal sterol reductase domain of Lbr in ic/ic cells also improved each of these phenotypes. Our data support the conclusion that the sterol Delta(14) reductase domain of LBR plays a critical role in cholesterol biosynthesis and that this process is essential to both myeloid cell growth and functional maturation.
机译:Lamin B受体(LBR)是具有N末端Lamin B和染色质结合结构域加上C末端固醇Delta(14)还原酶结构域的双功能核膜蛋白。 LBR表达在中性粒细胞分化过程中增加,表达不足会破坏Pelger-Huet异常的中性粒细胞核小叶形成。因此,LBR在调节骨髓分化中起关键作用,但是目前尚不清楚LBR的两个功能域如何支持这一作用。我们先前发现源自EML-ic / ic细胞(缺乏Lbr表达的鱼鳞病(ic)骨髓的骨髓模型)的髓母细胞(类红细胞,髓样和淋巴样[EML]衍生的髓样细胞)异常增殖和功能成熟不足。在这项研究中,我们提供了新的证据,证明胆固醇的生物合成对髓样细胞的生长很重要,并受Lbr的固醇还原酶结构域的支持。胆固醇生物合成抑制剂导致EML来源的早幼粒细胞中EML细胞的生长受到抑制,而缺少Lbr的细胞在两个阶段均表现出完全的生长停滞。在野生型中性粒细胞成熟期间,脂质产生增加,但是ic / ic细胞显示出不足的脂质和胆固醇产生水平。全长Lbr在EML-ic / ic细胞中的异位表达在胆固醇饥饿的情况下挽救了核小叶和生长停滞。还挽救了血脂的产生,纠正了呼吸不足的爆发。 ic / ic细胞中Lbr的C末端固醇还原酶结构域的表达也改善了这些表型。我们的数据支持以下结论:LBR的固醇Delta(14)还原酶结构域在胆固醇生物合成中起关键作用,并且该过程对于髓样细胞生长和功能成熟都是必不可少的。

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