核膜封闭(由 ESCRT-III 介导)
中文名称
通路描述
在末期,由分裂期内质网形成的双膜核膜被封闭,以重新建立核质通透性屏障(参见 Otsuka 和 Ellenberg 2018)。一些在重组核膜上的孔洞在形成核孔复合体(NPC)时闭合。其他孔洞由丝状 ESCRT-III 组装体的形成及其由 AAA+ ATP 酶 VPS4(VPS4A/VPS4B)的解聚而封闭(参见 Schoneberg 等人 2017)。ESCRT-III/VPS4 机器具有“反向拓扑”膜裂解的一般作用(即涉及细胞质膜表面的融合,参见 Schoneberg 等人 2017)。与这些事件协同作用,连接着着丝粒和其他染色质区域的微管被切断(参见 Schoneberg 等人 2017)。
英文描述
Degradation of the extracellular matrix Matrix metalloproteinases (MMPs), previously referred to as matrixins because of their role in degradation of the extracellular matrix (ECM), are zinc and calcium dependent proteases belonging to the metzincin family. They contain a characteristic zinc-binding motif HEXXHXXGXXH (Stocker & Bode 1995) and a conserved Methionine which forms a Met-turn. Humans have 24 MMP genes giving rise to 23 MMP proteins, as MMP23 is encoded by two identical genes. All MMPs contain an N-terminal secretory signal peptide and a prodomain with a conserved PRCGXPD motif that in the inactive enzyme is localized with the catalytic site, the cysteine acting as a fourth unpaired ligand for the catalytic zinc atom. Activation involves delocalization of the domain containing this cysteine by a conformational change or proteolytic cleavage, a mechanism referred to as the cysteine-switch (Van Wart & Birkedal-Hansen 1990). Most MMPs are secreted but the membrane type MT-MMPs are membrane anchored and some MMPs may act on intracellular proteins. Various domains determine substrate specificity, cell localization and activation (Hadler-Olsen et al. 2011). MMPs are regulated by transcription, cellular location (most are not activated until secreted), activating proteinases that can be other MMPs, and by metalloproteinase inhibitors such as the tissue inhibitors of metalloproteinases (TIMPs). MMPs are best known for their role in the degradation and removal of ECM molecules. In addition, cleavage of the ECM and other cell surface molecules can release ECM-bound growth factors, and a number of non-ECM proteins are substrates of MMPs (Nagase et al. 2006). MMPs can be divided into subgroups based on domain structure and substrate specificity but it is clear that these are somewhat artificial, many MMPs belong to more than one functional group (Vise & Nagase 2003, Somerville et al. 2003).
所含基因
81 个基因
A2M
ACAN
ADAM10
ADAM15
ADAM8
ADAMTS1
ADAMTS16
ADAMTS18
ADAMTS4
ADAMTS5
ADAMTS8
ADAMTS9
BCAN
BMP1
BSG
CAPN1
CAPN10
CAPN11
CAPN12
CAPN13
CAPN14
CAPN15
CAPN2
CAPN3
CAPN5
CAPN6
CAPN7
CAPN8
CAPN9
CAPNS1
CAPNS2
CASP3
CAST
CD44
CDH1
CTSG
CTSK
CTSL
CTSL2
CTSS
DCN
ELANE
ELN
FBN1
FBN2
FBN3
FN1
HSPG2
HTRA1
KLK7
LAMA3
LAMA5
LAMB1
LAMB3
LAMC1
LAMC2
MMP1
MMP10
MMP11
MMP12
MMP13
MMP14
MMP15
MMP19
MMP2
MMP20
MMP3
MMP7
MMP8
MMP9
NCSTN
NID1
OPTC
PLG
PSEN1
SCUBE1
SCUBE3
SPP1
TLL1
TLL2
TMPRSS6